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肌钙蛋白 T 与 AMP 脱氨酶通过锌桥相互作用在调节肌肉收缩和氨生成中的作用。

Role of the interaction between troponin T and AMP deaminase by zinc bridge in modulating muscle contraction and ammonia production.

机构信息

Laboratory of Biochemistry, Department of Pathology, University of Pisa, Via Roma 55, 56126, Pisa, Italy.

出版信息

Mol Cell Biochem. 2024 Apr;479(4):793-809. doi: 10.1007/s11010-023-04763-7. Epub 2023 May 15.

Abstract

The N-terminal region of troponin T (TnT) does not bind any protein of the contractile machinery and the role of its hypervariability remains uncertain. In this review we report the evidence of the interaction between TnT and AMP deaminase (AMPD), a regulated zinc enzyme localized on the myofibril. In periods of intense muscular activity, a decrease in the ATP/ADP ratio, together with a decrease in the tissue pH, is the stimulus for the activation of the enzyme that deaminating AMP to IMP and NH displaces the myokinase reaction towards the formation of ATP. In skeletal muscle subjected to strong tetanic contractions, a calpain-like proteolytic activity produces the removal in vivo of a 97-residue N-terminal fragment from the enzyme that becomes desensitized towards the inhibition by ATP, leading to an unrestrained production of NH. When a 95-residue N-terminal fragment is removed from AMPD by trypsin, simulating in vitro the calpain action, rabbit fast TnT or its phosphorylated 50-residue N-terminal peptide binds AMPD restoring the inhibition by ATP. Taking in consideration that the N-terminus of TnT expressed in human as well as rabbit white muscle contains a zinc-binding motif, we suggest that TnT might mimic the regulatory action of the inhibitory N-terminal domain of AMPD due to the presence of a zinc ion connecting the N-terminal and C-terminal regions of the enzyme, indicating that the two proteins might physiologically associate to modulate muscle contraction and ammonia production in fast-twitching muscle under strenuous conditions.

摘要

肌钙蛋白 T(TnT)的 N 端区域不与收缩机制的任何蛋白质结合,其高变异性的作用仍然不确定。在这篇综述中,我们报告了 TnT 与 AMP 脱氨酶(AMPD)相互作用的证据,AMPD 是一种位于肌原纤维上的受调控锌酶。在肌肉剧烈活动期间,ATP/ADP 比值的降低以及组织 pH 值的降低是激活酶的刺激因素,该酶将 AMP 脱氨为 IMP 和 NH,使肌激酶反应向 ATP 的形成方向移动。在受到强烈强直性收缩的骨骼肌中,一种类似于钙蛋白酶的蛋白水解活性会在体内从酶中去除 97 个残基的 N 端片段,从而使酶对 ATP 的抑制作用脱敏,导致 NH 的不受限制产生。当用胰蛋白酶从 AMPD 中去除 95 个残基的 N 端片段,模拟钙蛋白酶的作用时,兔快肌 TnT 或其磷酸化的 50 个残基 N 端肽结合 AMPD,恢复了对 ATP 的抑制作用。考虑到人源和兔源白肌中表达的 TnT 的 N 端含有一个锌结合基序,我们推测 TnT 可能模拟 AMPD 抑制性 N 端结构域的调节作用,这是由于锌离子连接酶的 N 端和 C 端区域,表明这两种蛋白质可能在剧烈条件下调节快肌的肌肉收缩和氨生成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70c4/11016001/eb987974f2ff/11010_2023_4763_Fig1_HTML.jpg

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