questionsmedicales.fr
Acides aminés, peptides et protéines
Protéines
Protéines de transport
Protéines AAA
ATPases associated with diverse cellular activities
ATP-dependent proteases
ATP-dependent proteases : Questions médicales fréquentes
Termes MeSH sélectionnés :
Diagnostic
5
Imagerie médicale
Protéases
Symptômes
5
Troubles neurologiques
Protéases
Maladies dégénératives
Inflammation
Douleurs musculaires
Protéines
Prévention
5
Prévention
Alimentation équilibrée
Exercice physique
Santé musculaire
Contrôles médicaux
Protéases
Traitements
5
Suppléments alimentaires
Protéases
Thérapie génique
Protéases
Médicaments anti-inflammatoires
Inflammation
Physiothérapie
Douleurs musculaires
Complications
5
Complications
Maladies dégénératives
Complications cardiovasculaires
Protéases
Système immunitaire
Infections
Troubles neurologiques
Complications
Facteurs de risque
5
Facteurs de risque
Maladies métaboliques
Maladies auto-immunes
Protéases
Stress chronique
Protéases
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"@type": "Question",
"name": "Comment diagnostiquer une dysfonction des protéases ATP-dépendantes ?",
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"text": "Des tests enzymatiques et des analyses protéomiques peuvent être utilisés."
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"@type": "Question",
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"@type": "Question",
"name": "Quels symptômes peuvent indiquer un problème avec ces enzymes ?",
"position": 4,
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"name": "Peut-on utiliser l'imagerie pour diagnostiquer des troubles liés aux protéases ?",
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"@type": "Question",
"name": "Quels sont les symptômes d'une déficience en protéases ATP-dépendantes ?",
"position": 6,
"acceptedAnswer": {
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"text": "Fatigue, troubles digestifs, et accumulation de protéines mal repliées peuvent se manifester."
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"@type": "Question",
"name": "Les troubles neurologiques sont-ils liés à ces protéases ?",
"position": 7,
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"name": "Comment la dégradation des protéines affecte-t-elle la santé ?",
"position": 8,
"acceptedAnswer": {
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"@type": "Question",
"name": "Y a-t-il des signes cutanés associés à ces troubles ?",
"position": 9,
"acceptedAnswer": {
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"text": "Des éruptions cutanées et des problèmes de cicatrisation peuvent être observés."
}
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"@type": "Question",
"name": "Les douleurs musculaires peuvent-elles être un symptôme ?",
"position": 10,
"acceptedAnswer": {
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"text": "Oui, des douleurs musculaires peuvent survenir en raison d'une dégradation protéique anormale."
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{
"@type": "Question",
"name": "Comment prévenir les troubles liés aux protéases ?",
"position": 11,
"acceptedAnswer": {
"@type": "Answer",
"text": "Une alimentation équilibrée et un mode de vie sain peuvent aider à maintenir leur fonction."
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"@type": "Question",
"name": "L'exercice physique joue-t-il un rôle préventif ?",
"position": 12,
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"name": "Les contrôles médicaux réguliers sont-ils importants ?",
"position": 13,
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"name": "Y a-t-il des vaccins pour prévenir ces troubles ?",
"position": 14,
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"name": "Le stress peut-il affecter la fonction des protéases ?",
"position": 15,
"acceptedAnswer": {
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"@type": "Question",
"name": "Quels traitements existent pour les troubles liés aux protéases ?",
"position": 16,
"acceptedAnswer": {
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}
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{
"@type": "Question",
"name": "Les suppléments alimentaires peuvent-ils aider ?",
"position": 17,
"acceptedAnswer": {
"@type": "Answer",
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{
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"name": "La thérapie génique est-elle une option ?",
"position": 18,
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"@type": "Question",
"name": "Les médicaments anti-inflammatoires sont-ils utiles ?",
"position": 19,
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"@type": "Question",
"name": "Comment la physiothérapie peut-elle aider ?",
"position": 20,
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"text": "La physiothérapie peut améliorer la fonction musculaire et réduire la douleur associée."
}
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"@type": "Question",
"name": "Quelles complications peuvent survenir avec des troubles protéolytiques ?",
"position": 21,
"acceptedAnswer": {
"@type": "Answer",
"text": "Des maladies dégénératives, des troubles métaboliques et des infections peuvent survenir."
}
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"@type": "Question",
"name": "Les complications cardiovasculaires sont-elles possibles ?",
"position": 22,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des déséquilibres protéolytiques peuvent contribuer à des maladies cardiovasculaires."
}
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{
"@type": "Question",
"name": "Comment les troubles protéolytiques affectent-ils le système immunitaire ?",
"position": 23,
"acceptedAnswer": {
"@type": "Answer",
"text": "Ils peuvent affaiblir le système immunitaire, rendant l'organisme plus vulnérable aux infections."
}
},
{
"@type": "Question",
"name": "Y a-t-il un risque accru de cancer ?",
"position": 24,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, des anomalies dans la dégradation des protéines peuvent être liées à certains cancers."
}
},
{
"@type": "Question",
"name": "Les troubles neurologiques peuvent-ils s'aggraver ?",
"position": 25,
"acceptedAnswer": {
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"text": "Oui, des troubles protéolytiques non traités peuvent aggraver les symptômes neurologiques."
}
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"@type": "Question",
"name": "Quels sont les facteurs de risque pour les troubles protéolytiques ?",
"position": 26,
"acceptedAnswer": {
"@type": "Answer",
"text": "L'âge avancé, des antécédents familiaux et des maladies métaboliques augmentent le risque."
}
},
{
"@type": "Question",
"name": "Le mode de vie influence-t-il ces risques ?",
"position": 27,
"acceptedAnswer": {
"@type": "Answer",
"text": "Oui, un mode de vie sédentaire et une mauvaise alimentation augmentent les risques."
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{
"@type": "Question",
"name": "Les maladies auto-immunes sont-elles un facteur de risque ?",
"position": 28,
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"text": "Oui, elles peuvent perturber la fonction des protéases et entraîner des complications."
}
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"@type": "Question",
"name": "Le stress chronique est-il un facteur de risque ?",
"position": 29,
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"@type": "Question",
"name": "L'exposition à des toxines peut-elle augmenter le risque ?",
"position": 30,
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"text": "Oui, certaines toxines peuvent altérer la fonction des protéases et causer des dommages cellulaires."
}
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}
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}
Expert en Médecine, Optimisation des Parcours de Soins et Révision Médicale
Validation scientifique effectuée le 17/02/2025
Contenu vérifié selon les dernières recommandations médicales
2 publications dans cette catégorie
Affiliations :
Department of Chemistry, Case Western Reserve University, Cleveland, Ohio, 44106, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Department of Chemistry and Physics, Saint Mary's College, Notre Dame, Indiana, 46556, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Department of Chemistry, Cleveland State University, Cleveland, Ohio, 44115, USA.
Lawrence J. Ellison Institute for Transformative Medicine of USC, University of Southern California, Beverly Hills, CA, 90211, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Department of Chemistry, Cleveland State University, Cleveland, Ohio, 44115, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Department of Chemistry, Case Western Reserve University, Cleveland, Ohio, 44106, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People's Republic of China.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Department of Biochemistry, North-Eastern Hill University, Shillong, 793022, India.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Program in Molecular Medicine, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA.
Medical Scientist Training Program, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA.
Publications dans "ATP-dependent proteases" :
2 publications dans cette catégorie
Affiliations :
Program in Molecular Medicine, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA. Craig.Peterson@umassmed.edu.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Agricultural Biotechnology, Center for Food Safety and Toxicology, Center for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, Korea.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Agricultural Biotechnology, Center for Food Safety and Toxicology, Center for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, Korea.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Beauty Care, College of Medical Science, Daegu Haany University, Gyeongsan 38610, Korea.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Agricultural Biotechnology, Center for Food Safety and Toxicology, Center for Food and Bioconvergence, and Research Institute for Agriculture and Life Sciences, CALS, Seoul National University, Seoul 08826, Korea.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Laboratoire de Chimie Bactérienne, UMR 7283, IMM, CNRS, Aix-Marseille Université, Marseille, France.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Plateforme Protéomique de l'IMM, Marseille Protéomique (MaP), CNRS FR 3479, Aix-Marseille Université, Marseille, France.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Laboratoire de Chimie Bactérienne, UMR 7283, IMM, CNRS, Aix-Marseille Université, Marseille, France.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Laboratoire de Chimie Bactérienne, UMR 7283, IMM, CNRS, Aix-Marseille Université, Marseille, France.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Laboratoire de Chimie Bactérienne, UMR 7283, IMM, CNRS, Aix-Marseille Université, Marseille, France. Electronic address: fpompeo@imm.cnrs.fr.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Chemistry, Michigan State University, East Lansing, Michigan, 48824.
Publications dans "ATP-dependent proteases" :
1 publication dans cette catégorie
Affiliations :
Department of Chemistry, Michigan State University, East Lansing, Michigan, 48824.
Publications dans "ATP-dependent proteases" :
Gliomas are primary brain tumours that are thought to develop from neural stem or progenitor cells that carry tumour-initiating genetic alterations. Based on microscopic appearance and molecular chara...
Glioma initiating cells (GICs), also known as glioma stem cells, display the capacity to recapitulate the functional diversity within the tumor. Despite the great progress achieved over the last decad...
To reveal the expression profile of miRNA in glioma and the effects of microRNA-339-5p (miR-339-5p) on glioma....
The glioma and normal tissues were randomly selected for miRNA gene chip detection and qRT-PCR verification. The U87 cells were separated into miR-NC, miR-339-5p mimic, and miR-339-5p suppressor group...
A total of 49 miRNAs (16 upregulated and 33 downregulated) were differentially expressed in glioma tissues, and miR-339-5p was the most downregulated. The clone number, invasion number, and healing ra...
Forty-nine glioma-related miRNAs were screened out, and miRNA expression was significantly different between glioma and normal tissues. The downregulated miR-339-5p in glioma can regulate the prolifer...
Glioma is the most common primary brain tumor and is often associated with treatment resistance and poor prognosis. Standard treatment typically involves radiotherapy and temozolomide-based chemothera...
Gliomas employ various mechanisms to bypass or escape senescence and remain in a proliferative state. Importantly, senescent cells remain viable and secrete a large number of factors collectively know...
In this article, we delineate an overview of senescence in the context of gliomas, including the mechanisms that lead to senescence induction, bypass, and escape. Furthermore, we examine the role of s...
An ideal biomarker must meet several parameters to enable its successful adoption; however, the nature of glioma makes it challenging to discover valuable biomarkers. While biomarkers require simplici...
Glioma is the most common and aggressive tumor in the adult brain. Recent studies have indicated that Zinc finger DHHC-type palmitoyltransferases (ZDHHCs) play vital roles in regulating the progressio...
Data from multiple glioma-associated datasets were used to investigate the expression profiles and potential biological functions of ZDHHC15 in glioma. Expression of ZDHHC15 and its association with c...
ZDHHC15 expression was significantly up-regulated in glioma and positively associated with malignant phenotypes. Results from the GO and KEGG enrichment analysis revealed that ZDHHC15 was involved in ...
Our findings suggest that ZDHHC15 promotes glioma malignancy and can serve as a novel prognostic biomarker for glioma patients. Targeting ZDHHC15 may be a promising therapeutic strategy for glioma....
Microglia is the major cellular component of glioma mass that promotes glioma growth, invasion, and chemoresistance by releasing inflammatory factors. Sterile alpha and HEAT/Armadillo motif (SARM), a ...
Glioma has been demonstrated as one of the most malignant intracranial tumors and currently there is no effective treatment. Based on our previous RNA-sequencing data for oxidative phosphorylation (OX...
The expression of VIM in glioma and the normal tissue has been obtained from The Cancer Genome Atlas (TCGA) database, and further validated in Human Protein Atlas (HPA) and Chinese Glioma Genome Atlas...
Vim is highly expressed in the glioma patients compared to normal samples and its high expression negatively correlates with patients' survival. The DNA methylation in VIM promoters in glioma patients...
In conclusion, we comprehensively deciphered the role of VIM in the progression of glioma and its clinical outcomes. Thus provide new insights into targeting VIM in glioma cancer immunotherapy in comb...
PRKCH is a member of the PKC family with the potential to regulate cell proliferation and differentiation. Glioma is the most common primary tumor of the central nervous system, with a high recurrence...
Tumor tissue and paracancerous tissue were collected from 160 glioma patients treated at the General Hospital of Northern Theater Command. The expression level of PRKCH was detected by immunohistochem...
The expression of PRKCH in glioma tissues was higher than that in adjacent tissues. PRKCH expression level is an independent prognostic factor in glioma patients, promoting poor prognosis and shorter ...
PRKCH promotes the development of gliomas and may be a therapeutic target for gliomas....
As a new type of regulatory cell death, ferroptosis has been proven to be involved in cancer pathogenesis and therapeutic response. However, the detailed roles of ferroptosis or ferroptosis-associated...
Here, we performed the TMT/iTRAQ-Based Quantitative Proteomic Approach to identify the differentially expressed proteins between glioma specimens and adjacent tissues. Kaplan-Meier survival was used t...
In our study, FHOD1 was identified to be the most significantly upregulated protein in glioma tissues. Multiple glioma datasets revealed that the glioma patients with low FHOD1 expression displayed fa...
In summary, this study demonstrated that the FHOD1-HSPB1 axis exerts marked regulatory effects on ferroptosis, and might affect the prognosis and therapeutic response in glioma....