Titre : Conformation des protéines

Conformation des protéines : Questions médicales fréquentes

Questions fréquentes et termes MeSH associés

Diagnostic 5

#1

Comment diagnostiquer une anomalie de conformation protéique ?

Des techniques comme la spectroscopie RMN et la cristallographie aux rayons X sont utilisées.
Protéines Spectroscopie Cristallographie
#2

Quels tests sont utilisés pour évaluer la conformation des protéines ?

Les tests incluent la chromatographie et l'électrophorèse sur gel.
Électrophorèse Chromatographie Protéines
#3

Quels marqueurs biologiques indiquent des problèmes de conformation ?

Des biomarqueurs comme les protéines mal repliées peuvent être détectés dans le sang.
Biomarqueurs Protéines Maladies protéiques
#4

Peut-on utiliser l'imagerie pour diagnostiquer des anomalies protéiques ?

Oui, l'imagerie par résonance magnétique peut aider à visualiser des anomalies.
Imagerie par résonance magnétique Protéines Diagnostic
#5

Quels symptômes cliniques peuvent indiquer une anomalie de conformation ?

Des symptômes comme la fatigue, la douleur articulaire ou des troubles neurologiques peuvent survenir.
Symptômes Protéines Maladies

Symptômes 5

#1

Quels symptômes sont associés aux maladies de conformation protéique ?

Les symptômes varient, incluant troubles neurologiques, douleurs et fatigue.
Symptômes Maladies protéiques Troubles neurologiques
#2

Comment les anomalies de conformation affectent-elles le corps ?

Elles peuvent entraîner des dysfonctionnements cellulaires et des maladies dégénératives.
Dysfonctionnement cellulaire Maladies dégénératives Protéines
#3

Les troubles cognitifs peuvent-ils être liés à des anomalies protéiques ?

Oui, certaines maladies comme Alzheimer sont liées à des protéines mal repliées.
Alzheimer Protéines Troubles cognitifs
#4

Quels signes cliniques indiquent une maladie de prion ?

Des signes incluent des troubles neurologiques rapides et des changements de comportement.
Maladie de prion Troubles neurologiques Comportement
#5

Les douleurs musculaires peuvent-elles être causées par des anomalies protéiques ?

Oui, des maladies comme la myopathie peuvent résulter de protéines mal conformées.
Myopathie Douleurs musculaires Protéines

Prévention 5

#1

Comment prévenir les maladies liées à la conformation des protéines ?

Une alimentation équilibrée, l'exercice et l'évitement de toxines peuvent aider.
Prévention Alimentation Exercice
#2

Les tests génétiques peuvent-ils aider à prévenir des maladies protéiques ?

Oui, ils permettent d'identifier les prédispositions génétiques aux maladies protéiques.
Tests génétiques Prédispositions Maladies protéiques
#3

L'éducation sur les maladies protéiques est-elle importante ?

Oui, elle aide à reconnaître les symptômes précoces et à chercher un traitement.
Éducation Symptômes Traitement
#4

Les vaccinations peuvent-elles prévenir des maladies liées aux protéines ?

Certaines vaccinations peuvent réduire le risque d'infections qui affectent les protéines.
Vaccinations Infections Protéines
#5

Le stress peut-il influencer la conformation des protéines ?

Oui, le stress oxydatif peut perturber le repliement des protéines et causer des maladies.
Stress oxydatif Protéines Maladies

Traitements 5

#1

Quels traitements existent pour les maladies liées à la conformation protéique ?

Les traitements incluent des thérapies géniques, des médicaments et des approches symptomatiques.
Thérapie génique Médicaments Maladies protéiques
#2

Peut-on corriger la conformation des protéines par des médicaments ?

Oui, certains médicaments peuvent stabiliser ou corriger le repliement des protéines.
Médicaments Protéines Repliement
#3

Les thérapies biologiques sont-elles efficaces contre les anomalies protéiques ?

Oui, elles peuvent cibler des protéines spécifiques et améliorer la fonction cellulaire.
Thérapies biologiques Protéines Fonction cellulaire
#4

Quels rôles jouent les chaperonnes dans le traitement des maladies protéiques ?

Les chaperonnes aident à replier correctement les protéines, réduisant les agrégats.
Chaperonnes Protéines Agrégats
#5

Les approches diététiques peuvent-elles influencer la conformation des protéines ?

Oui, une alimentation riche en antioxydants peut aider à maintenir la santé protéique.
Alimentation Antioxydants Protéines

Complications 5

#1

Quelles complications peuvent survenir avec des anomalies protéiques ?

Des complications incluent des maladies neurodégénératives et des troubles métaboliques.
Complications Maladies neurodégénératives Troubles métaboliques
#2

Les maladies de prion entraînent-elles des complications graves ?

Oui, elles peuvent causer des démences rapides et des troubles neurologiques sévères.
Maladies de prion Démences Troubles neurologiques
#3

Comment les anomalies protéiques affectent-elles le système immunitaire ?

Elles peuvent altérer la réponse immunitaire, rendant l'organisme plus vulnérable.
Système immunitaire Anomalies protéiques Vulnérabilité
#4

Les complications cardiovasculaires sont-elles liées à des anomalies protéiques ?

Oui, certaines protéines mal conformées peuvent contribuer à des maladies cardiovasculaires.
Complications cardiovasculaires Protéines Maladies
#5

Les troubles métaboliques peuvent-ils résulter d'anomalies protéiques ?

Oui, des protéines mal repliées peuvent perturber le métabolisme et causer des troubles.
Troubles métaboliques Protéines Perturbation

Facteurs de risque 5

#1

Quels facteurs de risque sont associés aux maladies protéiques ?

Les facteurs incluent des prédispositions génétiques, l'âge et l'exposition à des toxines.
Facteurs de risque Prédispositions génétiques Toxines
#2

Le vieillissement est-il un facteur de risque pour les anomalies protéiques ?

Oui, le vieillissement peut affecter le repliement et la fonction des protéines.
Vieillissement Protéines Anomalies
#3

L'alimentation influence-t-elle le risque de maladies protéiques ?

Oui, une alimentation pauvre en nutriments essentiels peut augmenter le risque.
Alimentation Nutriments Risque
#4

Le stress environnemental peut-il affecter la conformation des protéines ?

Oui, des facteurs comme la pollution peuvent perturber le repliement des protéines.
Stress environnemental Pollution Protéines
#5

Les infections virales sont-elles un facteur de risque pour les maladies protéiques ?

Oui, certaines infections peuvent induire des modifications dans la conformation des protéines.
Infections virales Maladies protéiques Protéines
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"@type": "Question", "name": "Les troubles cognitifs peuvent-ils être liés à des anomalies protéiques ?", "position": 8, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines maladies comme Alzheimer sont liées à des protéines mal repliées." } }, { "@type": "Question", "name": "Quels signes cliniques indiquent une maladie de prion ?", "position": 9, "acceptedAnswer": { "@type": "Answer", "text": "Des signes incluent des troubles neurologiques rapides et des changements de comportement." } }, { "@type": "Question", "name": "Les douleurs musculaires peuvent-elles être causées par des anomalies protéiques ?", "position": 10, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des maladies comme la myopathie peuvent résulter de protéines mal conformées." } }, { "@type": "Question", "name": "Comment prévenir les maladies liées à la conformation des protéines ?", "position": 11, "acceptedAnswer": { "@type": "Answer", "text": "Une alimentation équilibrée, l'exercice et l'évitement de toxines peuvent aider." } }, { "@type": "Question", "name": "Les tests génétiques peuvent-ils aider à prévenir des maladies protéiques ?", "position": 12, "acceptedAnswer": { "@type": "Answer", "text": "Oui, ils permettent d'identifier les prédispositions génétiques aux maladies protéiques." } }, { "@type": "Question", "name": "L'éducation sur les maladies protéiques est-elle importante ?", "position": 13, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elle aide à reconnaître les symptômes précoces et à chercher un traitement." } }, { "@type": "Question", "name": "Les vaccinations peuvent-elles prévenir des maladies liées aux protéines ?", "position": 14, "acceptedAnswer": { "@type": "Answer", "text": "Certaines vaccinations peuvent réduire le risque d'infections qui affectent les protéines." } }, { "@type": "Question", "name": "Le stress peut-il influencer la conformation des protéines ?", "position": 15, "acceptedAnswer": { "@type": "Answer", "text": "Oui, le stress oxydatif peut perturber le repliement des protéines et causer des maladies." } }, { "@type": "Question", "name": "Quels traitements existent pour les maladies liées à la conformation protéique ?", "position": 16, "acceptedAnswer": { "@type": "Answer", "text": "Les traitements incluent des thérapies géniques, des médicaments et des approches symptomatiques." } }, { "@type": "Question", "name": "Peut-on corriger la conformation des protéines par des médicaments ?", "position": 17, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certains médicaments peuvent stabiliser ou corriger le repliement des protéines." } }, { "@type": "Question", "name": "Les thérapies biologiques sont-elles efficaces contre les anomalies protéiques ?", "position": 18, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elles peuvent cibler des protéines spécifiques et améliorer la fonction cellulaire." } }, { "@type": "Question", "name": "Quels rôles jouent les chaperonnes dans le traitement des maladies protéiques ?", "position": 19, "acceptedAnswer": { "@type": "Answer", "text": "Les chaperonnes aident à replier correctement les protéines, réduisant les agrégats." } }, { "@type": "Question", "name": "Les approches diététiques peuvent-elles influencer la conformation des protéines ?", "position": 20, "acceptedAnswer": { "@type": "Answer", "text": "Oui, une alimentation riche en antioxydants peut aider à maintenir la santé protéique." } }, { "@type": "Question", "name": "Quelles complications peuvent survenir avec des anomalies protéiques ?", "position": 21, "acceptedAnswer": { "@type": "Answer", "text": "Des complications incluent des maladies neurodégénératives et des troubles métaboliques." } }, { "@type": "Question", "name": "Les maladies de prion entraînent-elles des complications graves ?", "position": 22, "acceptedAnswer": { "@type": "Answer", "text": "Oui, elles peuvent causer des démences rapides et des troubles neurologiques sévères." } }, { "@type": "Question", "name": "Comment les anomalies protéiques affectent-elles le système immunitaire ?", "position": 23, "acceptedAnswer": { "@type": "Answer", "text": "Elles peuvent altérer la réponse immunitaire, rendant l'organisme plus vulnérable." } }, { "@type": "Question", "name": "Les complications cardiovasculaires sont-elles liées à des anomalies protéiques ?", "position": 24, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines protéines mal conformées peuvent contribuer à des maladies cardiovasculaires." } }, { "@type": "Question", "name": "Les troubles métaboliques peuvent-ils résulter d'anomalies protéiques ?", "position": 25, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des protéines mal repliées peuvent perturber le métabolisme et causer des troubles." } }, { "@type": "Question", "name": "Quels facteurs de risque sont associés aux maladies protéiques ?", "position": 26, "acceptedAnswer": { "@type": "Answer", "text": "Les facteurs incluent des prédispositions génétiques, l'âge et l'exposition à des toxines." } }, { "@type": "Question", "name": "Le vieillissement est-il un facteur de risque pour les anomalies protéiques ?", "position": 27, "acceptedAnswer": { "@type": "Answer", "text": "Oui, le vieillissement peut affecter le repliement et la fonction des protéines." } }, { "@type": "Question", "name": "L'alimentation influence-t-elle le risque de maladies protéiques ?", "position": 28, "acceptedAnswer": { "@type": "Answer", "text": "Oui, une alimentation pauvre en nutriments essentiels peut augmenter le risque." } }, { "@type": "Question", "name": "Le stress environnemental peut-il affecter la conformation des protéines ?", "position": 29, "acceptedAnswer": { "@type": "Answer", "text": "Oui, des facteurs comme la pollution peuvent perturber le repliement des protéines." } }, { "@type": "Question", "name": "Les infections virales sont-elles un facteur de risque pour les maladies protéiques ?", "position": 30, "acceptedAnswer": { "@type": "Answer", "text": "Oui, certaines infections peuvent induire des modifications dans la conformation des protéines." } } ] } ] }
Dr Olivier Menir

Contenu validé par Dr Olivier Menir

Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale


Validation scientifique effectuée le 25/02/2025

Contenu vérifié selon les dernières recommandations médicales

Sous-catégories

60 au total
└─

Éléments structuraux des protéines

Protein Structural Elements D000072416 - G02.111.570.820.709.275
└─

Structure quaternaire des protéines

Protein Structure, Quaternary D020836 - G02.111.570.820.709.550
└─

Structure secondaire des protéines

Protein Structure, Secondary D017433 - G02.111.570.820.709.600
└─

Structure tertiaire des protéines

Protein Structure, Tertiary D017434 - G02.111.570.820.709.610
└─└─└─

Motifs AT-hook

AT-Hook Motifs D024761 - G02.111.570.820.709.275.500.050
└─└─└─

Motifs de knottins

Cystine Knot Motifs D047168 - G02.111.570.820.709.275.500.127
└─└─└─

Motifs F-box

F-Box Motifs D044782 - G02.111.570.820.709.275.500.205
└─└─└─

Motifs à hélice-boucle-hélice

Helix-Loop-Helix Motifs D018257 - G02.111.570.820.709.275.500.360
└─└─└─

Motif d'activation de l'immunorécepteur dépendant de la tyrosine

Immunoreceptor Tyrosine-Based Activation Motif D061625 - G02.111.570.820.709.275.500.440
└─└─└─

Motif d'inhibition de l'immunorécepteur dépendant de la tyrosine

Immunoreceptor Tyrosine-Based Inhibition Motif D061626 - G02.111.570.820.709.275.500.480
└─└─└─

Motifs kazal

Kazal Motifs D000074161 - G02.111.570.820.709.275.500.490
└─└─└─

Glissières à leucine

Leucine Zippers D016350 - G02.111.570.820.709.275.500.520
└─└─└─

Motif de liaison au poly-ADP-ribose

Poly-ADP-Ribose Binding Motif D000075225 - G02.111.570.820.709.275.500.695
└─└─└─

Motifs de liaison à l'ARN

RNA-Binding Motifs D000071376 - G02.111.570.820.709.275.500.869
└─└─└─

Domaine AAA

AAA Domain D000074182 - G02.111.570.820.709.275.500.913
└─└─└─

Doigts de zinc

Zinc Fingers D016335 - G02.111.570.820.709.275.500.985
└─└─└─

Domaines C2

C2 Domains D000070538 - G02.111.570.820.709.275.750.125
└─└─└─

Modules de liaison au carbohydrate

Carbohydrate Binding Modules D000094342 - G02.111.570.820.709.275.750.157
└─└─└─

Domaine catalytique

Catalytic Domain D020134 - G02.111.570.820.709.275.750.188
└─└─└─

Domaine discoïdine

Discoidin Domain D000070822 - G02.111.570.820.709.275.750.219
└─└─└─

Domaines à boîtes HMG

HMG-Box Domains D024742 - G02.111.570.820.709.275.750.235
└─└─└─

Domaines immunoglobuline

Immunoglobulin Domains D000070557 - G02.111.570.820.709.275.750.250
└─└─└─

Kringles

Kringles D018082 - G02.111.570.820.709.275.750.375
└─└─└─

Domaine de liaison aux méthyl-CpG

Methyl CpG Binding Domain D000070593 - G02.111.570.820.709.275.750.438
└─└─└─

Domaines homologues de la pleckstrine

Pleckstrin Homology Domains D000070539 - G02.111.570.820.709.275.750.469
└─└─└─

Domaines PR-SET

PR-SET Domains D000074463 - G02.111.570.820.709.275.750.477
└─└─└─

Domaines de protéine riches en proline

Proline-Rich Protein Domains D055232 - G02.111.570.820.709.275.750.485
└─└─└─

Motifs et domaines d'intéraction protéique

Protein Interaction Domains and Motifs D054730 - G02.111.570.820.709.275.750.500
└─└─└─

Répétition ankyrine

Ankyrin Repeat D017089 - G02.111.570.820.709.275.875.030
└─└─└─

Répétition kelch

Kelch Repeat D000071776 - G02.111.570.820.709.275.875.273
└─└─└─

Répétition tétratricopeptide

Tetratricopeptide Repeat D000074436 - G02.111.570.820.709.275.875.394
└─└─└─

Répétitions WD40

WD40 Repeats D000071678 - G02.111.570.820.709.275.875.515
└─└─└─└─

Motifs EF Hands

EF Hand Motifs D020832 - G02.111.570.820.709.275.500.360.240
└─└─└─└─

Motifs à hélice-tour-hélice

Helix-Turn-Helix Motifs D019077 - G02.111.570.820.709.275.500.360.360
└─└─└─└─

Motif de liaison à l'ARN double brin

Double-Stranded RNA Binding Motif D000071241 - G02.111.570.820.709.275.500.869.250
└─└─└─└─

Motif de reconnaissance de l'ARN

RNA Recognition Motif D000071377 - G02.111.570.820.709.275.500.869.500
└─└─└─└─

Doigts de zinc CYS2-HIS2

CYS2-HIS2 Zinc Fingers D000070580 - G02.111.570.820.709.275.500.985.250
└─└─└─└─

Doigts de zinc PHD

PHD Zinc Fingers D000075925 - G02.111.570.820.709.275.500.985.438
└─└─└─└─

Domaine fibronectine de type III

Fibronectin Type III Domain D000071238 - G02.111.570.820.709.275.750.250.500
└─└─└─└─

Domaine B30.2-SPRY

B30.2-SPRY Domain D000071197 - G02.111.570.820.709.275.750.500.290
└─└─└─└─

Domaine BTB-POZ

BTB-POZ Domain D000071757 - G02.111.570.820.709.275.750.500.343
└─└─└─└─

Superfamille des domaines de mort

Death Domain Superfamily D000071458 - G02.111.570.820.709.275.750.500.395
└─└─└─└─

Domaines FERM

FERM Domains D000075926 - G02.111.570.820.709.275.750.500.422
└─└─└─└─

Domaines MYND

MYND Domains D000074608 - G02.111.570.820.709.275.750.500.474
└─└─└─└─

Domaines PDZ

PDZ Domains D054731 - G02.111.570.820.709.275.750.500.500
└─└─└─└─

Domaines à doigts de zinc de type RING

RING Finger Domains D054829 - G02.111.570.820.709.275.750.500.625
└─└─└─└─

Domaine d'homologie SRC

src Homology Domains D018909 - G02.111.570.820.709.275.750.500.750
└─└─└─└─

Motif stérile alpha

Sterile Alpha Motif D000071682 - G02.111.570.820.709.275.750.500.813
└─└─└─└─

Domaine Tudor

Tudor Domain D000071856 - G02.111.570.820.709.275.750.500.844
└─└─└─└─

Domaines WW

WW Domains D000074585 - G02.111.570.820.709.275.750.500.937
└─└─└─└─└─

Motif ETS

ETS Motif D000071419 - G02.111.570.820.709.275.500.360.360.500
└─└─└─└─└─

Domaine d'activation et de recrutement des caspases

Caspase Activation and Recruitment Domain D000071476 - G02.111.570.820.709.275.750.500.395.250
└─└─└─└─└─

Domaine de mort

Death Domain D000071459 - G02.111.570.820.709.275.750.500.395.500
└─└─└─└─└─

Domaine effecteur de mort

Death Effector Domain D000071461 - G02.111.570.820.709.275.750.500.395.750
└─└─└─└─└─

Domaine pyrine

Pyrin Domain D000071196 - G02.111.570.820.709.275.750.500.395.875
└─└─

Séquences répétées d'acides aminés

Repetitive Sequences, Amino Acid D020449 - G02.111.570.820.709.275.875
└─└─

Structure en hélice alpha

Protein Conformation, alpha-Helical D000072756 - G02.111.570.820.709.600.020
└─└─

Motifs d'acides aminés

Amino Acid Motifs D020816 - G02.111.570.820.709.600.500
└─└─

Structure en brin bêta

Protein Conformation, beta-Strand D000072757 - G02.111.570.820.709.600.750
└─└─

Domaines protéiques

Protein Domains D000072417 - G02.111.570.820.709.610.500

Auteurs principaux

Maria Silvina Fornasari

2 publications dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina.
Publications dans "Conformation des protéines" :

Diego Javier Zea

2 publications dans cette catégorie

Affiliations :
  • Structural Bioinformatics Unit, Fundación Instituto Leloir, CONICET, Buenos Aires, Argentina.
Publications dans "Conformation des protéines" :

Gustavo Parisi

2 publications dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina. gusparisi@gmail.com.
Publications dans "Conformation des protéines" :

Attila Gursoy

2 publications dans cette catégorie

Affiliations :
  • Computer Science and Engineering Department, Koc University, Istanbul, Turkey. agursoy@ku.edu.tr.

Ozlem Keskin

2 publications dans cette catégorie

Affiliations :
  • Chemical and Biological Engineering Department, Koc University, Istanbul, Turkey.

Ming Dong

2 publications dans cette catégorie

Affiliations :
  • Department of Chemistry, North Carolina Agricultural and Technical State University, Greensboro, NC, USA.
Publications dans "Conformation des protéines" :

David Baker

2 publications dans cette catégorie

Affiliations :
  • Department of Biochemistry, University of Washington, Seattle, WA 98105; dabaker@uw.edu so@fas.harvard.edu.
  • Institute for Protein Design, University of Washington, Seattle, WA 98105.
  • Howard Hughes Medical Institute, University of Washington, Seattle, WA 98105.
Publications dans "Conformation des protéines" :

Hao Tian

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Sian Xiao

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Peng Tao

2 publications dans cette catégorie

Affiliations :
  • Center for Research Computing, Center for Drug Discovery, Design, and Delivery (CD4), Department of Chemistry, Southern Methodist University, Dallas, TX, United States.
Publications dans "Conformation des protéines" :

Alexander Miguel Monzon

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes, CONICET, Bernal, Argentina.
Publications dans "Conformation des protéines" :

H A Scheraga

1 publication dans cette catégorie

Affiliations :
  • Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York, USA.
Publications dans "Conformation des protéines" :

S Rackovsky

1 publication dans cette catégorie

Affiliations :
  • Department of Chemistry and Chemical Biology, Baker Laboratory, Cornell University, Ithaca, New York, USA.
  • Department of Biochemistry and Biophysics, University of Rochester School of Medicine and Dentistry, Rochester, New York, USA.
Publications dans "Conformation des protéines" :

Avner Schlessinger

1 publication dans cette catégorie

Affiliations :
  • Department of Pharmacological Sciences, Icahn School of Medicine at Mount Sinai, New York, United States.
Publications dans "Conformation des protéines" :

Massimiliano Bonomi

1 publication dans cette catégorie

Affiliations :
  • Department of Structural Biology and Chemistry, Institut Pasteur, Université Paris Cité, Paris, France.
Publications dans "Conformation des protéines" :

Michael Assfalg

1 publication dans cette catégorie

Affiliations :
  • Department of Biotechnology, University of Verona, 37134 Verona, Italy.
Publications dans "Conformation des protéines" :

Diego S Vazquez

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Pamela L Toledo

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Alejo R Gianotti

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Mario R Ermácora

1 publication dans cette catégorie

Affiliations :
  • Departamento de Ciencia y Tecnología, Universidad Nacional de Quilmes and Grupo de Biología Estructural y Biotecnología, IMBICE, CONICET, Universidad Nacional de Quilmes, Argentina.
Publications dans "Conformation des protéines" :

Sources (10000 au total)