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肌浆网Ca2+-ATP酶分子中钙结合的底物调节。II. CTP、GTP、ITP和UTP的作用。

Substrate regulation of calcium binding in Ca2+-ATPase molecules of the sarcoplasmic reticulum. II. Effect of CTP, GTP, ITP, and UTP.

作者信息

Nakamura Jun, Tajima Genichi, Sato Chikara

机构信息

Department of Developmental Biology and Neurosciences, Graduate School of Life Sciences, Tohoku University, Aoba-ku, Sendai, Miyagi 980-8578, Japan.

出版信息

J Biol Chem. 2002 Jul 5;277(27):24191-6. doi: 10.1074/jbc.M111836200. Epub 2002 Apr 25.

Abstract

To examine the effect of CTP, GTP, ITP, and UTP on calcium binding of Ca2+-ATPase molecules of the sarcoplasmic reticulum, the calcium dependence of the Ca2+-activated hydrolysis activities of these NTPs of the enzyme molecules was examined by comparison with that of calcium binding of the molecules in the absence of the NTPs at pH 7.40. In the sarcoplasmic reticulum membrane, CTP, GTP, and ITP did not affect the noncooperative (Hill value (n(H)) of approximately 1, apparent calcium affinity (K(0.5)) of 2-6 microm)) and cooperative (n(H) approximately 2, K(0.5) approximately 0.2 microm) calcium binding of the molecules, whereas UTP caused the molecules to highly cooperatively (n(H) approximately 4) bind calcium ions with a lowered K(0.5) of approximately 0.04 microm. When the enzyme molecules were solubilized with detergent, all of these NTPs reversibly degraded the calcium affinity of the molecule (from K(0.5) = 3-5 to >40 microm), although the effect of the NTPs on the negatively cooperative manner (n(H) approximately 0.5) of calcium binding was not experimentally obtained. Taking into account the first part of this study (Nakamura, J., Tajima, G., Sato, C., Furukohri, T., and Konishi, K. (2002) J. Biol. Chem. 277, 24180-24190) showing the improving effect of ATP on calcium binding of the membranous and solubilized molecules, the results show that ATP is the only intrinsic substrate for the enzyme molecule. This NTP regulation is discussed in terms of the oligomeric structure of the molecules.

摘要

为研究CTP、GTP、ITP和UTP对肌浆网Ca2+-ATP酶分子钙结合的影响,在pH 7.40条件下,通过与无NTP时分子钙结合情况相比较,检测了这些NTP的酶分子的Ca2+激活水解活性对钙的依赖性。在肌浆网膜中,CTP、GTP和ITP不影响分子的非协同性(希尔系数(n(H))约为1,表观钙亲和力(K(0.5))为2 - 6 μmol)和协同性(n(H)约为2,K(0.5)约为0.2 μmol)钙结合,而UTP使分子以高度协同性(n(H)约为4)结合钙离子,K(0.5)降低至约0.04 μmol。当用去污剂使酶分子溶解时,所有这些NTP均可逆性降低分子的钙亲和力(从K(0.5) = 3 - 5 μmol升高至>40 μmol),尽管未通过实验得出NTP对钙结合的负协同方式(n(H)约为0.5)的影响。考虑到本研究的第一部分(中村,J.,田岛,G.,佐藤,C.,古越,T.,小西,K.(2002年)《生物化学杂志》277,24180 - 24190)显示ATP对膜结合和溶解分子的钙结合有改善作用,结果表明ATP是该酶分子唯一的内源性底物。根据分子的寡聚结构对这种NTP调节进行了讨论。

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