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Mapping of the SecA-SecY and SecA-SecG Interfaces by Site-directed in Vivo Photocross-linking.

J Biol Chem.. 2011-04;  286(14):12371 - 12380
Sanchaita Das and Donald B. Oliver. Department of Molecular Biology and Biochemistry, Wesleyan University, Middletown, Connecticut 06457, USA.
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Abstract

The two major components of the Eubacteria Sec-dependent protein translocation system are the heterotrimeric channel-forming component SecYEG and its binding partner, the SecA ATPase nanomotor. Once bound to SecYEG, the preprotein substrate, and ATP, SecA undergoes ATP-hydrolytic cycles that drive the stepwise translocation of proteins. Although a previous site-directed in vivo photocross-linking study (Mori, H., and Ito, K. (2006) Proc. Natl. Acad. Sci. U.S.A. 103, 16159-16164) elucidated residues of SecY needed for interaction with SecA, no reciprocal study for SecA protein has been reported to date. In the present study we mapped residues of SecA that interact with SecY or SecG utilizing this approach. Our r... More

Keywords

ATPases; Membrane Biogenesis; Membrane Proteins; Membrane Trafficking; Molecular Motors; Protein Cross-linking; Protein Translocation; Protein-Protein Interactions; Photocross-linking