The Molecular Mechanism of Domain Swapping of the C-Terminal Domain of the SARS-Coronavirus Main Protease

被引:5
|
作者
Terse, Vishram L. [1 ]
Gosavi, Shachi [1 ]
机构
[1] Tata Inst Fundamental Res, Simons Ctr Study Living Machines, Natl Ctr Biol Sci, Bangalore, Karnataka, India
关键词
RESPIRATORY-SYNDROME CORONAVIRUS; SECONDARY STRUCTURE PREDICTION; FREE-ENERGY LANDSCAPE; 3C-LIKE PROTEASE; M-PRO; NONNATIVE INTERACTIONS; DIMER INTERFACE; EXTRA DOMAIN; DIMERIZATION; SEQUENCE;
D O I
10.1016/j.bpj.2020.11.2277
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
In three-dimensional domain swapping, two protein monomers exchange a part of their structures to form an intertwined homodimer, whose subunits resemble the monomer. Several viral proteins domain swap to increase their structural complexity or functional avidity. The main protease (M-pro) of the severe acute respiratory syndrome (SARS) coronavirus proteolyzes viral polyproteins and has been a target for anti-SARS drug design. Domain swapping in the a-helical C-terminal domain of M-pro ((MC)-C-pro) locks M(pro )into a hyperactive octameric form that is hypothesized to promote the early stages of viral replication. However, in the absence of a complete molecular understanding of the mechanism of domain swapping, investigations into the biological relevance of this octameric M-pro have stalled. Isolated MP"C can exist as a monomer or a domain-swapped dimer. Here, we investigate the mechanism of domain swapping of (MC)-C-pro using coarse-grained structure-based models and molecular dynamics simulations. Our simulations recapitulate several experimental features of (MC)-C-pro folding. Further, we find that a contact between a tryptophan in the (MC)-C-pro domain-swapping hinge and an arginine elsewhere forms early during folding, modulates the folding route, and promotes domain swapping to the native structure. An examination of the sequence and the structure of the tryptophan containing hinge loop shows that it has a propensity to form multiple secondary structures and contacts, indicating that it could be stabilized into either the monomer- or dimer-promoting conformations by mutations or ligand binding. Finally, because all residues in the tryptophan loop are identical in SARS-CoV and SARS-CoV-2, mutations that modulate domain swapping may provide insights into the role of octameric M-pro in the early-stage viral replication of both viruses.
引用
收藏
页码:504 / 516
页数:13
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