SERCA1的Ca(2+)结合和易位结构域的结构-功能关系:Brody病的生理相关性

D H MacLennan, W J Rice, A Odermatt, N M Green
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引用次数: 0

摘要

对骨骼肌肌浆网Ca(2+)- atp酶中含有Ca2+结合残基的跨膜螺旋M4、M5、M6和M8上的所有氨基酸进行丙氨酸扫描诱变,发现M4、M5和M6具有突变敏感性,但M8具有突变敏感性。M4和M6中的一个六残基基序(E/D)GLPA(T/V)以及M5中的对应基序通过诱变得到突出显示。螺旋M4和M6的位点定向二硫映射表明,这些跨膜螺旋以右旋盘绕的形式结合。这种结构信息,结合早期对每个Ca2+结合残基与Ca2+结合位点I或Ca2+结合位点II关联的分析,允许开发Ca(2+)- atp酶中两个Ca2+结合位点的“并排”模型。在大约一半的布罗迪病家族中,突变产生终止密码子,删除全部或部分Ca2+结合和易位结构域,导致SERCA1功能丧失和肌肉疾病。
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Structure-function relationships in the Ca(2+)-binding and translocation domain of SERCA1: physiological correlates in Brody disease.

Alanine-scanning mutagenesis of all amino acids in transmembrane helices M4, M5, M6 and M8, which contain known Ca2+ binding residues in the Ca(2+)-ATPase of skeletal muscle sarcoplasmic reticulum, revealed patches of mutation-sensitivity in M4, M5 and M6, but in M8. A six-residue motif, (E/D)GLPA(T/V), in M4 and M6 and its counterpart in M5 were highlighted by mutagenesis. Site-directed disulfide mapping of helices M4 and M6 demonstrated that these transmembrane helices associate as a right-handed coiled-coil. This structural information, combined with the earlier analysis of the association of each Ca2+ binding residue with either Ca2+ binding site I or site II, permitted the development of a "side-by-side" model for the two Ca2+ binding sites in the Ca(2+)-ATPase. In about half of Brody disease families, mutations create stop codons which delete all or part of the Ca2+ binding and translocation domain, resulting in loss of SERCA1 function and muscle disease.

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