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肌球蛋白的调控结构域:重链对钙离子结合的影响

Regulatory domains of myosins: influence of heavy chain on Ca(2+)-binding.

作者信息

Kalabokis V N, O'Neall-Hennessey E, Szent-Györgyi A G

机构信息

Department of Biology, Brandeis University, Waltham, MA 02254.

出版信息

J Muscle Res Cell Motil. 1994 Oct;15(5):547-53. doi: 10.1007/BF00121160.

Abstract

Light chain binding domains of rabbit skeletal, turkey gizzard and scallop myosin comprised of equimolar amounts of a short heavy chain fragment, essential light chain, and regulatory light chain have been obtained following extensive tryptic digestion. These complexes that are analogous to the regulatory domain prepared previously from scallop myosin by digestion with clostripain resist proteolysis due to the mutual protection of the heavy chain and the light chains, and are common structural features of the myosins studied. Specific Ca(2+)-binding by the regulatory domains reflects the behaviour of intact myosin; only scallop regulatory domain has a specific Ca(2+)-binding site. The heavy chain fragments of the different regulatory domains have been isolated under denaturing conditions and reconstituted with scallop essential light chain and scallop regulatory light chain or turkey gizzard regulatory light chain to yield regulatory domain hybrids. Hybrids containing the turkey gizzard regulatory light chain were used in Ca(2+)-binding studies since they were far more stable than their counterparts with the scallop regulatory light chain. The gizzard hybrid binds Ca2+ with a comparable specificity but somewhat lower affinity than native scallop regulatory domain. The rabbit regulatory domain hybrid also binds Ca2+, although with a reduced affinity and specificity. The results indicate that Ca(2+)-binding ability is determined by the light chains and modified by the heavy chains.

摘要

经过广泛的胰蛋白酶消化后,已获得了兔骨骼肌、火鸡砂囊和扇贝肌球蛋白的轻链结合结构域,这些结构域由等摩尔量的短重链片段、必需轻链和调节轻链组成。这些复合物类似于先前通过用梭菌蛋白酶消化扇贝肌球蛋白制备的调节结构域,由于重链和轻链的相互保护而抗蛋白水解,并且是所研究肌球蛋白的共同结构特征。调节结构域对钙离子的特异性结合反映了完整肌球蛋白的行为;只有扇贝调节结构域有一个特异性钙离子结合位点。不同调节结构域的重链片段已在变性条件下分离出来,并用扇贝必需轻链和扇贝调节轻链或火鸡砂囊调节轻链进行重组,以产生调节结构域杂种。含有火鸡砂囊调节轻链的杂种用于钙离子结合研究,因为它们比含有扇贝调节轻链的对应物稳定得多。砂囊杂种结合钙离子的特异性相当,但亲和力略低于天然扇贝调节结构域。兔调节结构域杂种也能结合钙离子,尽管亲和力和特异性有所降低。结果表明,钙离子结合能力由轻链决定,并受重链修饰。

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