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Novel escape mutants suggest an extensive TRIM5? binding site spanning the entire outer surface of the murine leukemia virus capsid protein.


ABSTRACT: After entry into target cells, retroviruses encounter the host restriction factors such as Fv1 and TRIM5?. While it is clear that these factors target retrovirus capsid proteins (CA), recognition remains poorly defined in the absence of structural information. To better understand the binding interaction between TRIM5? and CA, we selected a panel of novel N-tropic murine leukaemia virus (N-MLV) escape mutants by a serial passage of replication competent N-MLV in rhesus macaque TRIM5? (rhTRIM5?)-positive cells using a small percentage of unrestricted cells to allow multiple rounds of virus replication. The newly identified mutations, many of which involve changes in charge, are distributed over the outer 'top' surface of N-MLV CA, including the N-terminal ?-hairpin, and map up to 29 A(o) apart. Biological characterisation with a number of restriction factors revealed that only one of the new mutations affects restriction by human TRIM5?, indicating significant differences in the binding interaction between N-MLV and the two TRIM5?s, whereas three of the mutations result in dual sensitivity to Fv1(n) and Fv1(b). Structural studies of two mutants show that no major changes in the overall CA conformation are associated with escape from restriction. We conclude that interactions involving much, if not all, of the surface of CA are vital for TRIM5? binding.

SUBMITTER: Ohkura S 

PROVIDER: S-EPMC3068999 | biostudies-literature | 2011 Mar

REPOSITORIES: biostudies-literature

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Novel escape mutants suggest an extensive TRIM5α binding site spanning the entire outer surface of the murine leukemia virus capsid protein.

Ohkura Sadayuki S   Goldstone David C DC   Yap Melvyn W MW   Holden-Dye Kate K   Taylor Ian A IA   Stoye Jonathan P JP  

PLoS pathogens 20110331 3


After entry into target cells, retroviruses encounter the host restriction factors such as Fv1 and TRIM5α. While it is clear that these factors target retrovirus capsid proteins (CA), recognition remains poorly defined in the absence of structural information. To better understand the binding interaction between TRIM5α and CA, we selected a panel of novel N-tropic murine leukaemia virus (N-MLV) escape mutants by a serial passage of replication competent N-MLV in rhesus macaque TRIM5α (rhTRIM5α)-  ...[more]

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