4.7 Article

Crystal structures of neuronal squid Sec1 implicate inter-domain hinge movement in the release of t-SNAREs

期刊

JOURNAL OF MOLECULAR BIOLOGY
卷 306, 期 1, 页码 7-13

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ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1006/jmbi.2000.4347

关键词

X-ray structure; neuronal Sec1; squid; t-SNARE; membrane fusion

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Sec1 molecules associate with t-SNAREs from the syntaxin family in a heterodimeric complex that plays an essential role in vesicle transport and membrane fusion. Neuronal rat n-Sec1 has an arch-shaped three-domain structure, which binds syntaxin la through contacts in domains 1 and 3. In both rat nSec1 and homologous squid s-Sec1, a potential effector-molecule binding-pocket is shaped by residues from domains 1 and 2 and is localized on the opposite side of the syntaxin la interaction site. Comparison of several crystal forms of unliganded neuronal squid Sec1 indicates a hinge region between domains 1 and 2 which allows domain 1 to rotate along a central axis. This movement could release syntaxin la upon interaction with a yet unspecified Sec1 effector molecule(s). The binding of an effector protein may also directly affect the conformation of the helical hairpin of domain 3, which contributes the other significant syntaxin la binding sites in the rat nSec1/syntaxin la complex structure but adopts multiple conformations in the unliganded s-Sec1 structures reported here. (C) 2001 Academic Press.

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