Computational Investigation of the pH Dependence of Stability of Melanosome Proteins: Implication for Melanosome formation and Disease.


Journal

International journal of molecular sciences
ISSN: 1422-0067
Titre abrégé: Int J Mol Sci
Pays: Switzerland
ID NLM: 101092791

Informations de publication

Date de publication:
31 Jul 2021
Historique:
received: 07 07 2021
revised: 27 07 2021
accepted: 29 07 2021
entrez: 7 8 2021
pubmed: 8 8 2021
medline: 9 9 2021
Statut: epublish

Résumé

Intravesicular pH plays a crucial role in melanosome maturation and function. Melanosomal pH changes during maturation from very acidic in the early stages to neutral in late stages. Neutral pH is critical for providing optimal conditions for the rate-limiting, pH-sensitive melanin-synthesizing enzyme tyrosinase (TYR). This dramatic change in pH is thought to result from the activity of several proteins that control melanosomal pH. Here, we computationally investigated the pH-dependent stability of several melanosomal membrane proteins and compared them to the pH dependence of the stability of TYR. We confirmed that the pH optimum of TYR is neutral, and we also found that proteins that are negative regulators of melanosomal pH are predicted to function optimally at neutral pH. In contrast, positive pH regulators were predicted to have an acidic pH optimum. We propose a competitive mechanism among positive and negative regulators that results in pH equilibrium. Our findings are consistent with previous work that demonstrated a correlation between the pH optima of stability and activity, and they are consistent with the expected activity of positive and negative regulators of melanosomal pH. Furthermore, our data suggest that disease-causing variants impact the pH dependence of melanosomal proteins; this is particularly prominent for the OCA2 protein. In conclusion, melanosomal pH appears to affect the activity of multiple melanosomal proteins.

Identifiants

pubmed: 34361043
pii: ijms22158273
doi: 10.3390/ijms22158273
pmc: PMC8347052
pii:
doi:

Substances chimiques

Antigens, Neoplasm 0
Membrane Transport Proteins 0
OCA2 protein, human 0
Protons 0
SLC45A2 protein, human 0
Monophenol Monooxygenase EC 1.14.18.1
ATP7A protein, human EC 7.2.2.8
Copper-Transporting ATPases EC 7.2.2.8

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Subventions

Organisme : NIAMS NIH HHS
ID : R01 AR077664
Pays : United States
Organisme : NIGMS NIH HHS
ID : R01 GM093937
Pays : United States
Organisme : NIGMS NIH HHS
ID : R01 GM125639
Pays : United States
Organisme : NIH, National Institute of General Medical Sciences
ID : R01GM093937

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Auteurs

Mahesh Koirala (M)

Department of Physics, Clemson University, Clemson, SC 29634, USA.

H B Mihiri Shashikala (HBM)

Department of Physics, Clemson University, Clemson, SC 29634, USA.

Jacob Jeffries (J)

Department of Physics, Clemson University, Clemson, SC 29634, USA.

Bohua Wu (B)

Department of Physics, Clemson University, Clemson, SC 29634, USA.

Stacie K Loftus (SK)

Genetic Disease Research Branch, National Human Genome Research Branch, National Institutes of Health, Bethesda, MD 22066, USA.

Jonathan H Zippin (JH)

Department of Dermatology, Weill Cornell Medical College, New York, NY 10021, USA.

Emil Alexov (E)

Department of Physics, Clemson University, Clemson, SC 29634, USA.

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Classifications MeSH