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肌钙蛋白I与肌钙蛋白C形成的二元复合物中的邻近关系。

Proximity relationship in the binary complex formed between troponin I and troponin C.

作者信息

Wang C K, Cheung H C

出版信息

J Mol Biol. 1986 Oct 5;191(3):509-21. doi: 10.1016/0022-2836(86)90145-2.

Abstract

We have determined six molecular distances among four sites in the binary complex formed between troponin C (TnC) and troponin I (TnI) by fluorescence resonance energy transfer between donor and acceptor probes that were either an intrinsic fluorophore (Trp158 of TnI) or extrinsic probes attached to the sites. The three extrinsic probes were dansylaziridine (DNZ), N'-(iodoacetyl)-N'-(8-sulfo-1-naphthyl)ethylenediamine (IAEDANS) and 5-(iodoacetamido)eosin (IAE). The four fluorophores provided four donor-acceptor pairs: DNZ----IAE, Trp----IAEDANS, IAEDANS----IAE, and Trp----DNZ. They allowed determinations of separations between specific sites from measurements of energy transfer from (1) Met25 (DNZ) to Cys98 (IAE) in TnC, (2) Trp158 to Cys133 (IAEDANS) in TnI, (3) Cys98 (IAEDANS) of TnC to Cys133(IAE) of TnI, (4) Trp158 of TnI to Cys98(IAEDANS) of TnC, and (6) Met25(DNZ) of TnC to Cys133(IAE) of TnI. Distance (1) in TnC was little affected when the isolated protein was complexed with TnI, whereas distance (2) in TnI increased by 6A (29%) when TnI was incorporated into the binary complex. In the presence of EGTA, the six donor-acceptor separations (R) in the complex were in the range 28 to 57 A based on kappa 2 = 2/3. Mg2+ had only small effects on R, but Ca2+ induced substantial increases or decreases of R in five of the six distances. These changes were not accompanied by significant changes in the axial depolarization of the fluorophores. The results indicate global structural perturbations of regions of the two proteins in the complex by Ca2+ binding to the TnC, and suggest that large-scale movements of domains of troponin subunits may be the initial molecular events that occur in the transmission of the Ca2+ signal in the regulation of contraction by calcium.

摘要

我们通过供体和受体探针之间的荧光共振能量转移,测定了肌钙蛋白C(TnC)和肌钙蛋白I(TnI)形成的二元复合物中四个位点之间的六个分子距离。供体和受体探针可以是内在荧光团(TnI的Trp158)或连接到这些位点的外在探针。三种外在探针分别是丹磺酰氮丙啶(DNZ)、N'-(碘乙酰基)-N'-(8-磺基-1-萘基)乙二胺(IAEDANS)和5-(碘乙酰胺基)曙红(IAE)。这四种荧光团提供了四对供体-受体组合:DNZ----IAE、Trp----IAEDANS、IAEDANS----IAE和Trp----DNZ。通过测量能量转移,可以确定特定位点之间的距离,具体如下:(1)TnC中从Met25(DNZ)到Cys98(IAE);(2)TnI中从Trp158到Cys133(IAEDANS);(3)TnC的Cys98(IAEDANS)到TnI的Cys133(IAE);(4)TnI的Trp158到TnC的Cys98(IAEDANS);(6)TnC的Met25(DNZ)到TnI的Cys133(IAE)。当分离的蛋白质与TnI复合时,TnC中的距离(1)几乎没有受到影响,而当TnI掺入二元复合物中时,TnI中的距离(2)增加了6埃(29%)。在乙二醇双乙醚二胺四乙酸(EGTA)存在的情况下,基于kappa 2 = 2/3,复合物中的六个供体-受体间距(R)在28至57埃范围内。Mg2+对R的影响很小,但Ca2+在六个距离中的五个距离上导致R显著增加或减少。这些变化并没有伴随着荧光团轴向去极化的显著变化。结果表明,Ca2+与TnC结合会引起复合物中两种蛋白质区域的整体结构扰动,并表明肌钙蛋白亚基结构域的大规模运动可能是钙调节收缩过程中Ca2+信号传递时发生的初始分子事件。

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