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砂囊重酶解肌球蛋白中涉及头尾连接的构象转变,导致沉降系数、ATP酶活性和头部取向发生变化。

A conformational transition in gizzard heavy meromyosin involving the head-tail junction, resulting in changes in sedimentation coefficient, ATPase activity, and orientation of heads.

作者信息

Suzuki H, Stafford W F, Slayter H S, Seidel J C

出版信息

J Biol Chem. 1985 Nov 25;260(27):14810-7.

PMID:2932450
Abstract

Gizzard heavy meromyosin (HMM) sediments in the ultracentrifuge as a single peak, whose sedimentation coefficient (S20,w) decreases from 9 to 7.5 S upon increasing the NaCl concentration from 0.02 to 0.3 M. This decrease is accompanied by a parallel increase in Mg2+-ATPase activity, suggesting that both changes have a common molecular basis. Phosphorylation decreases S20,w and increases ATPase activity, while ATP increases S20,w. Sedimentation equilibrium studies indicate that HMM undergoes no detectable aggregation at 0.02 or 0.4 M NaCl, remaining monomeric with a molecular weight of 3.4 X 10(5). In contrast, S20,w of subfragment 1 does not change with changes in ionic strength, and its ATPase activity does not decrease at low ionic strengths. Electron micrographs of samples of HMM prepared at low ionic strength show that up to half of the molecules are flexed, i.e. the heads are bent at the neck and project back toward the tail, while the remaining molecules have either one or both of the heads pointing away from the tail. In samples prepared at high ionic strength only about 10% of the molecules are flexed. There is a linear relationship between the fraction of flexed molecules and S20,w, with no significant bending or folding of the tail and no detectable change in the shape of the heads. This correlation suggests that the changes in ATPase activity and S20,w may be a result of the reorientation of the heads.

摘要

砂囊重酶解肌球蛋白(HMM)在超速离心机中以单一峰沉降,当氯化钠浓度从0.02 M增加到0.3 M时,其沉降系数(S20,w)从9 S降至7.5 S。这种下降伴随着Mg2 + -ATP酶活性的平行增加,表明这两种变化具有共同的分子基础。磷酸化降低S20,w并增加ATP酶活性,而ATP增加S20,w。沉降平衡研究表明,在0.02或0.4 M氯化钠条件下,HMM未发生可检测到的聚集,仍保持分子量为3.4×10(5)的单体状态。相比之下,亚片段1的S20,w不随离子强度变化,其ATP酶活性在低离子强度下也不降低。在低离子强度下制备的HMM样品的电子显微镜照片显示,多达一半的分子发生弯曲,即头部在颈部弯曲并向尾部回折,而其余分子的一个或两个头部则远离尾部。在高离子强度下制备的样品中,只有约10%的分子发生弯曲。弯曲分子的比例与S20,w之间存在线性关系,尾部无明显弯曲或折叠,头部形状无可检测到的变化。这种相关性表明,ATP酶活性和S20,w的变化可能是头部重新定向的结果。

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