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十二烷基硫酸钠和热诱导龙虾肌肉多催化蛋白酶产生两种不同形式:热激活形式可降解肌原纤维蛋白。

Sodium dodecyl sulfate and heat induce two distinct forms of lobster muscle multicatalytic proteinase: the heat-activated form degrades myofibrillar proteins.

作者信息

Mykles D L, Haire M F

机构信息

Department of Biology, Colorado State University, Fort Collins 80523.

出版信息

Arch Biochem Biophys. 1991 Aug 1;288(2):543-51. doi: 10.1016/0003-9861(91)90233-9.

Abstract

A multicatalytic proteinase (MCP) purified from lobster claw and abdominal muscles degrades a variety of peptide and protein substrates. The enzyme is activated by low concentrations (0.03%) of sodium dodecyl sulfate (SDS) and brief (1 min) heating at 60 degrees C. The lobster MCP can assume three stable and functionally distinct states in vitro; these are classified as the basal, heat-activated, and SDS-activated forms. The basal MCP possessed high trypsin-like peptidase activity and low chymotrypsin-like peptidase, peptidylglutamyl-peptide hydrolase, and caseinolytic activities; incubation of the basal form with SDS stimulated the peptidylglutamyl-hydrolase activity about 30-fold and inhibited the other three activities 80% to 100%. Heating the basal form stimulated caseinolytic activity about 6-fold with little effect on the peptidase activities. The heat-activated enzyme also degraded myosin, tropomyosin, troponin, and actin depolymerizing factor; alpha-actinin was resistant to proteolysis. Incubation of the heat-activated MCP with SDS inhibited the trypsin-like, chymotrypsin-like, and proteinase activities 95 to 100% and stimulated the peptidylglutamyl-hydrolase activity about 16-fold. Incubation of myosin with either the basal or the heat-activated forms in the presence of SDS generated identical proteolytic fragments of the myosin heavy chain, suggesting that SDS induced a third form that can be produced from either the basal or the heat-activated forms. The heat-activated form produced proteolytic fragments of myosin heavy chain different from those generated by either basal or heat-activated enzymes in the presence of SDS. Furthermore, 100 mM KCl stimulated the caseinolytic activity of the heat-activated form 24% and inhibited the trypsin-like and peptidylglutamyl-hydrolase activities 56 and 20%, respectively. These results, though indirect, suggest that heating induced a proteinase activity that was distinct from the three peptidase activities. Activation of the basal form with SDS was reversible, since precipitation of dodecyl sulfate with 100 mM KCl restored trypsin-like activity and inhibited peptidylglutamyl-hydrolase activity. In contrast, removal of dodecyl sulfate from the SDS-activated form that was derived from the heat-activated MCP induced its conversion to the basal form. Thus, although heat-activation was irreversible, the heat-activated form was converted back to the basal form via the SDS-activated form.

摘要

从龙虾爪和腹部肌肉中纯化得到的一种多催化蛋白酶(MCP)可降解多种肽和蛋白质底物。该酶可被低浓度(0.03%)的十二烷基硫酸钠(SDS)以及在60℃下短暂加热(1分钟)激活。龙虾MCP在体外可呈现三种稳定且功能不同的状态;这些状态被分类为基础形式、热激活形式和SDS激活形式。基础形式的MCP具有高胰蛋白酶样肽酶活性以及低糜蛋白酶样肽酶、肽基谷氨酰肽水解酶和酪蛋白分解活性;基础形式与SDS孵育可使肽基谷氨酰水解酶活性提高约30倍,并使其他三种活性抑制80%至100%。加热基础形式可使酪蛋白分解活性提高约6倍,而对肽酶活性影响较小。热激活的酶还可降解肌球蛋白、原肌球蛋白、肌钙蛋白和肌动蛋白解聚因子;α-辅肌动蛋白对蛋白水解具有抗性。热激活的MCP与SDS孵育可使胰蛋白酶样、糜蛋白酶样和蛋白酶活性抑制95%至100%,并使肽基谷氨酰水解酶活性提高约16倍。在SDS存在下,肌球蛋白与基础形式或热激活形式孵育会产生相同的肌球蛋白重链蛋白水解片段,这表明SDS诱导产生了一种可由基础形式或热激活形式产生的第三种形式。热激活形式产生的肌球蛋白重链蛋白水解片段不同于在SDS存在下由基础形式或热激活酶产生的片段。此外,100 mM KCl可使热激活形式的酪蛋白分解活性提高24%,并分别使胰蛋白酶样和肽基谷氨酰水解酶活性抑制56%和20%。这些结果虽然是间接的,但表明加热诱导了一种不同于三种肽酶活性的蛋白酶活性。用SDS激活基础形式是可逆的,因为用100 mM KCl沉淀十二烷基硫酸盐可恢复胰蛋白酶样活性并抑制肽基谷氨酰水解酶活性。相反,从源自热激活MCP的SDS激活形式中去除十二烷基硫酸盐会诱导其转化为基础形式。因此,尽管热激活是不可逆的,但热激活形式可通过SDS激活形式转化回基础形式。

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