Interdomain interactions dictate the function of the Candida albicans Hsp110 protein Msi3

التفاصيل البيبلوغرافية
العنوان: Interdomain interactions dictate the function of the Candida albicans Hsp110 protein Msi3
المؤلفون: Lei Zhou, Liqing Hu, Qingdai Liu, Hongtao Li, Qinglian Liu, Qianbin Li, Crist William Cuffee, Mahetab Mohamed
المصدر: The Journal of Biological Chemistry
بيانات النشر: Elsevier BV, 2021.
سنة النشر: 2021
مصطلحات موضوعية: Protein Folding, ATP, adenosine triphosphate, ATPase, Hsp70, heat shock protein 70 kDa, Allosteric regulation, Msi3, a multicopy suppressor of the heat shock-sensitive phenotype of the viral mutation, Protein aggregation, Biochemistry, Hsp70, chemistry.chemical_compound, Adenosine Triphosphate, Protein Domains, Sse1, stress seventy E1, Heat shock protein, Candida albicans, heat shock protein (HSP), HSP70 Heat-Shock Proteins, HSP110 Heat-Shock Proteins, NBD, nucleotide-binding domain, Molecular Biology, Heat-Shock Proteins, Adenosine Triphosphatases, Hsp110, Heat shock protein 110 kDa, Binding Sites, proteostasis, biology, Nucleotides, NEF, nucleotide-exchange factor, Hsp110, Cell Biology, molecular chaperone, allosteric regulation, ADP, adenosine diphosphate, Cell biology, Proteostasis, chemistry, Cyclic nucleotide-binding domain, SBD, substrate-binding domain, peptides, biology.protein, Protein folding, ATPase, adenosine triphosphatase, Adenosine triphosphate, Molecular Chaperones, Protein Binding, Research Article
الوصف: Heat shock proteins of 110 kDa (Hsp110s), a unique class of molecular chaperones, are essential for maintaining protein homeostasis. Hsp110s exhibit a strong chaperone activity preventing protein aggregation (the “holdase” activity) and also function as the major nucleotide-exchange factor (NEF) for Hsp70 chaperones. Hsp110s contain two functional domains: a nucleotide-binding domain (NBD) and substrate-binding domain (SBD). ATP binding is essential for Hsp110 function and results in close contacts between the NBD and SBD. However, the molecular mechanism of this ATP-induced allosteric coupling remains poorly defined. In this study, we carried out biochemical analysis on Msi3, the sole Hsp110 in Candida albicans, to dissect the unique allosteric coupling of Hsp110s using three mutations affecting the domain–domain interface. All the mutations abolished both the in vivo and in vitro functions of Msi3. While the ATP-bound state was disrupted in all mutants, only mutation of the NBD-SBDβ interfaces showed significant ATPase activity, suggesting that the full-length Hsp110s have an ATPase that is mainly suppressed by NBD-SBDβ contacts. Moreover, the high-affinity ATP-binding unexpectedly appears to require these NBD-SBD contacts. Remarkably, the “holdase” activity was largely intact for all mutants tested while NEF activity was mostly compromised, although both activities strictly depended on the ATP-bound state, indicating different requirements for these two activities. Stable peptide substrate binding to Msi3 led to dissociation of the NBD-SBD contacts and compromised interactions with Hsp70. Taken together, our data demonstrate that the exceptionally strong NBD-SBD contacts in Hsp110s dictate the unique allosteric coupling and biochemical activities.
تدمد: 0021-9258
الوصول الحر: https://explore.openaire.eu/search/publication?articleId=doi_dedup___::a0ea860c54bed442341c06dafa26b414Test
https://doi.org/10.1016/j.jbc.2021.101082Test
حقوق: OPEN
رقم الانضمام: edsair.doi.dedup.....a0ea860c54bed442341c06dafa26b414
قاعدة البيانات: OpenAIRE