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鸡砂囊肌肉收缩蛋白的钙敏感性

Calcium sensitivity of contractile proteins from chicken gizzard muscle.

作者信息

Ikebe M, Aiba T, Onishi H, Watanabe S

出版信息

J Biochem. 1978 Jun;83(6):1643-55. doi: 10.1093/oxfordjournals.jbchem.a132077.

Abstract

Actin, myosin, and "native" tropomyosin (NTM) were separately isolated from chicken gizzard muscle and rabbit skeletal muscle. With various combinations of the isolated contractile proteins, Mg-ATPase activity and superprecipitation activity were measured. It was thus found that gizzard myosin and gizzard NTM behaved differently from skeletal myosin and skeletal NTM, whereas gizzard actin functioned in the same wasy as skeletal actin. It was also found that gizzard myosin preparations were often Ca-sensitive, that is, that the two activities of gizzard myosin plus actin without NTM were activated by low concentrations of Ca2+. The Mg-ATPase activity of a Ca-insensitive preparation of gizzard myosin was not activated by actin even in the presence of Ca2+. When Ca-sensitive gizzard myosin was incubated with ATP (and Mg2+) in the presence of Ca2+, a light-chain component of gizzard myosin was phosphorylated. The light-chain phosphorylation also occurred when Ca-insensitive myosin was incubated with gizzard NTM and ATP (plus Mg2+) in the presence of Ca2+. In either case, the light-chain phosphorylation required Ca2+. Phosphorylated gizzard myosin in combination with actin was able to exhibit superprecipitation, and Mg-ATPase of the phosphorylated gizzard myosin was activated by actin; the actin activation and superprecipitation were found to occur even in the absence of Ca2+ and NTM or tropomyosin. The phosphorylated light-chain component was found to be dephosphorylated by a partially purified preparation of gizzard myosin light-chain phosphatase. Gizzard myosin thus dephosphorylated behaved exactly like untreated Ca-insensitive gizzard myosin; in combination with actin, it did not superprecipitate either in the presence of Ca2+ or in its absence, but did superprecipitated in the presence of NTM and Ca2+. Ca-activated hydrolysis of ATP catalyzed by gizzard myosin B proceeded at a reduced rate after removal of Ca2+ (by adding EGTA), whereas that catalyzed by a combination of actin, gizzard myosin, and gizzard NTM proceeded at the same rate even after removal of Ca2+. However, addition of a partially purified preparation of gizzard myosin light-chain phosphatase was found to make the recombined system behave like myosin B. Based on these findings, it appears that myosin light-chain kinase and myosin light-chain phosphatase can function as regulatory proteins for contraction and relaxation, respectively, of gizzard muscle.

摘要

肌动蛋白、肌球蛋白和“天然”原肌球蛋白(NTM)分别从鸡胗肌和兔骨骼肌中分离出来。将分离出的收缩蛋白进行各种组合,测量其Mg-ATP酶活性和超沉淀活性。结果发现,鸡胗肌肌球蛋白和鸡胗肌NTM的行为与骨骼肌肌球蛋白和骨骼肌NTM不同,而鸡胗肌肌动蛋白的功能与骨骼肌肌动蛋白相同。还发现鸡胗肌肌球蛋白制剂通常对钙敏感,即不含NTM的鸡胗肌肌球蛋白加肌动蛋白的两种活性可被低浓度的Ca2+激活。即使在有Ca2+存在的情况下,鸡胗肌肌球蛋白的一种对钙不敏感的制剂的Mg-ATP酶活性也不会被肌动蛋白激活。当对钙敏感的鸡胗肌肌球蛋白在有Ca2+存在的情况下与ATP(和Mg2+)一起孵育时,鸡胗肌肌球蛋白的一个轻链组分被磷酸化。当对钙不敏感的肌球蛋白在有Ca2+存在的情况下与鸡胗肌NTM和ATP(加Mg2+)一起孵育时,也会发生轻链磷酸化。在任何一种情况下,轻链磷酸化都需要Ca2+。磷酸化的鸡胗肌肌球蛋白与肌动蛋白结合能够表现出超沉淀,并且磷酸化的鸡胗肌肌球蛋白的Mg-ATP酶被肌动蛋白激活;即使在没有Ca2+、NTM或原肌球蛋白的情况下,也发现肌动蛋白激活和超沉淀会发生。发现磷酸化的轻链组分可被鸡胗肌肌球蛋白轻链磷酸酶的部分纯化制剂去磷酸化。这样去磷酸化的鸡胗肌肌球蛋白的行为与未处理的对钙不敏感的鸡胗肌肌球蛋白完全一样;与肌动蛋白结合时,无论在有Ca2+还是无Ca2+的情况下都不会超沉淀,但在有NTM和Ca2+存在时会超沉淀。去除Ca2+(通过添加乙二醇双(2-氨基乙基醚)四乙酸)后,鸡胗肌肌球蛋白B催化的Ca激活的ATP水解速率降低,而由肌动蛋白、鸡胗肌肌球蛋白和鸡胗肌NTM组合催化的ATP水解即使在去除Ca2+后仍以相同速率进行。然而,发现添加鸡胗肌肌球蛋白轻链磷酸酶的部分纯化制剂会使重组系统表现得像肌球蛋白B。基于这些发现,似乎肌球蛋白轻链激酶和肌球蛋白轻链磷酸酶可分别作为鸡胗肌收缩和舒张的调节蛋白发挥作用。

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