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PMID: 23994332 已发表 · ppublish 英语

The C2B domain is the primary Ca2+ sensor in DOC2B: a structural and functional analysis.

Journal of molecular biology ·第 425 卷 ·第 22 期 ·2013-12-27

Giladi Moshe, Michaeli Lirin, Almagor Lior, Bar-On Dana, Buki Tal, Ashery Uri, Khananshvili Daniel, Hirsch Joel A

摘要

DOC2B (double-C2 domain) protein is thought to be a high-affinity Ca(2+) sensor for spontaneous and asynchronous neurotransmitter release. To elucidate the molecular features underlying its physiological role, we determined the crystal structures of its isolated C2A and C2B domains and examined their Ca(2+)-binding properties. We further characterized the solution structure of the tandem domains (C2AB) using small-angle X-ray scattering. In parallel, we tested structure-function correlates with live cell imaging tools. We found that, despite striking structural similarity, C2B binds Ca(2+) with considerably higher affinity than C2A. The C2AB solution structure is best modeled as two domains with a highly flexible orientation and no difference in the presence or absence of Ca(2+). In addition, kinetic studies of C2AB demonstrate that, in the presence of unilamellar vesicles, Ca(2+) binding is stabilized, as reflected by the ~10-fold slower rate of Ca(2+) dissociation than in the absence of vesicles. In cells, isolated C2B translocates to the plasma membrane (PM) with an EC50 of 400 nM while the C2A does not translocate at submicromolar Ca(2+) concentrations, supporting the biochemical observations. Nevertheless, C2AB translocates to the PM with an ~2-fold lower EC50 and to a greater extent than C2B. Our results, together with previous studies, reveal that the C2B is the primary Ca(2+) sensing unit in DOC2B, whereas C2A enhances the interaction of C2AB with the PM.

关键词
ASA C(2) domain DESY DOC2B Deutsches Elektronen Synchrotron EDTA EOM MD PL PM SAXS SNARE ULV X-ray crystallography [Ca2+](i) accessible surface area ensemble optimization method ethylenediaminetetraacetic acid exocytosis intracellular calcium molecular dynamics phospholipid plasma membrane small-angle X-ray scattering soluble NSF attachment receptor synaptic transmission unilamellar vesicle
文献信息
期刊
Journal of molecular biology
期刊简称
J Mol Biol
发表日期
2013-12-27
收录日期
2013-10-28
更新日期
2013-10-28
语言
英语
国家/地区
England
NLM ID
2985088R
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