4.6 Review

Folding of proteins with a flavodoxin-like architecture

期刊

FEBS JOURNAL
卷 284, 期 19, 页码 3145-3167

出版社

WILEY
DOI: 10.1111/febs.14077

关键词

apoflavodoxin; CheY; cotranslational folding; frustration; molten globule; NtrC; off-pathway intermediate; ribosome-nascent chain complex; simulation; Spo0F

资金

  1. ECHO grant of the Netherlands Organisation of Scientific Research (NWO) [711.011.007]

向作者/读者索取更多资源

The flavodoxin-like fold is a protein architecture that can be traced back to the universal ancestor of the three kingdoms of life. Many proteins share this alpha-beta parallel topology and hence it is highly relevant to illuminate how they fold. Here, we review experiments and simulations concerning the folding of flavodoxins and CheY-like proteins, which share the flavodoxin-like fold. These polypeptides tend to temporarily misfold during unassisted folding to their functionally active forms. This susceptibility to frustration is caused by the more rapid formation of an alpha-helix compared to a beta-sheet, particularly when a parallel beta-sheet is involved. As a result, flavodoxin-like proteins form intermediates that are off-pathway to native protein and several of these species are molten globules (MGs). Experiments suggest that the off-pathway species are of helical nature and that flavodoxin-like proteins have a nonconserved transition state that determines the rate of productive folding. Folding of flavodoxin from Azotobacter vinelandii has been investigated extensively, enabling a schematic construction of its folding energy landscape. It is the only flavodoxin-like protein of which cotranslational folding has been probed. New insights that emphasize differences between in vivo and in vitro folding energy landscapes are emerging: the ribosome modulates MG formation in nascent apoflavodoxin and forces this polypeptide toward the native state.

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