Multiple classes of sulfhydryls modulate the skeletal muscle Ca2+ release channel

被引:91
作者
Aghdasi, B
Zhang, JZ
Wu, YL
Reid, MB
Hamilton, SL
机构
[1] BAYLOR COLL MED,DEPT MOL PHYSIOL & BIOPHYS,HOUSTON,TX 77030
[2] BAYLOR COLL MED,DEPT MED,HOUSTON,TX 77030
关键词
D O I
10.1074/jbc.272.6.3739
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Two sulfhydryl reagents, N-ethylmaleimide (NEM), an alkylating agent, and diamide, an oxidizing agent, were examined for effects on the skeletal muscle Ca2+ release channel. NEM incubated with the channel for increasing periods of time displays three distinct phases in its functional effects on the channel reconstituted into planar lipid bilayers; first it inhibits, then it activates, and finally it again inhibits channel activity. NEM also shows a three-phase effect on the binding of [H-3]ryanodine by first decreasing binding (phase 1), followed by a recovery of the binding (phase 2), and then a final phase of inhibition (phase 3), In contrast, diamide 1) activates the channel, 2) enhances [H-3]ryanodine binding, 3) cross-links subunits within the Ca2+ release channel tetramer, and 4) protects against phase 1 inhibition by NEM. All diamide effects can be reversed by the reducing agent, dithiothreitol. Diamide induces intersubunit dimer formation of both the full-length 565-kDa subunit of the channel and the 400-kDa generated by endogenous calpain digestion, suggesting that the cross-link does not involve sulfhydryls within the N-terminal 170-kDa fragment of the protein. NEM under phase 1 conditions blocks the formation of the intersubunit crosslinks by diamide. In addition, single channels activated by diamide are further activated by the addition of NEM, Diamide either cross-links phase 1 sulfhydryls or causes a conformational change in the Ca2+ release channel which leads to inaccessibility of phase 1 sulfhydryls to NEM alkylation. The data presented here lay the groundwork for mapping the location of one of the sites of subunit-subunit contact in the Ca2+ release channel tetramer and for identifying the functionally important sulfhydryls of this protein.
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收藏
页码:3739 / 3748
页数:10
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