首页> 外文期刊>Biochimica et biophysica acta: BBA: International journal of biochemistry, biophysics and molecular biololgy. Proteins and Proteomics >A calpain-like proteolytic activity produces the limited cleavage at the N-terminal regulatory domain of rabbit skeletal muscle AMP deaminase: evidence of a protective molecular mechanism
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A calpain-like proteolytic activity produces the limited cleavage at the N-terminal regulatory domain of rabbit skeletal muscle AMP deaminase: evidence of a protective molecular mechanism

机译:钙蛋白酶样蛋白水解活性在兔骨骼肌AMP脱氨酶的N端调节域产生有限的裂解:一种保护性分子机制的证据

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摘要

On storage at 4 degreesC, rabbit skeletal muscle AMP deaminase undergoes limited proteolysis with the conversion of the native 85-kDa enzyme subunit to a 75-kDa core that is resistant to further proteolysis. Further studies have shown that limited proteolysis of AMP deaminase with trypsin, removing the 95-residue N-terminal fragment, converts the native enzyme to a species that exhibits hyperbolic kinetics even at low K+ concentration. The results of this report show that a 21-residue synthetic peptide, when incubated with the purified enzyme, is cleaved with a specificity identical to that reported for ubiquitous calpains. In addition, the cleavage of a specific fluorogenic peptide substrate by rabbit m-calpain is inhibited by a synthetic peptide that corresponds to residues 10-17 of rabbit skeletal muscle AMP deaminase; this peptide contains a sequence (K-E-L-D-D-A) that is present in the fourth subdomain A of rabbit calpastatin, suggesting that the N-terminus of AMP deaminase shares with calpastatin a regulatory sequence that might exert a protective role against the fragmentation-induced activation of AMP deaminase. These observations suggest that a calpain-like proteinase present in muscle removes from AMP deaminase a domain that holds the enzyme in an inactive conformation and which also contains a regulatory region that protects against unregulated proteolysis. We conclude that proteolysis of AMP deaminase is the basis of the large ammonia accumulation that occurs in skeletal muscle subjected to strong tetanic contraction or passing into rigor mortis. (C) 2004 Elsevier B.V. All rights reserved.
机译:在4摄氏度下储存时,兔骨骼肌AMP脱氨酶会受到有限的蛋白水解作用,其中天然的85 kDa酶亚基转化为对进一步蛋白水解有抵抗力的75 kDa核心。进一步的研究表明,用胰蛋白酶对AMP脱氨酶进行有限的蛋白水解,去除了95个残基的N端片段,可将天然酶转化为即使在低K +浓度下也显示出双曲线动力学的物种。该报告的结果表明,当与纯化的酶一起孵育时,具有21个残基的合成肽被裂解,其特异性与报道的普遍钙蛋白酶相同。另外,兔间m-钙蛋白酶对特异性荧光肽底物的裂解被合成肽抑制,该合成肽对应于兔骨骼肌AMP脱氨酶残基10-17。该肽含有一个序列(KELDDA),该序列存在于兔钙抑素的第四个亚结构域A中,这表明AMP脱氨酶的N端与钙抑素共享一个调控序列,该调控序列可能对片段化诱导的AMP脱氨酶活化起保护作用。这些观察结果表明,肌肉中存在的钙蛋白酶样蛋白酶从AMP脱氨酶中去除了​​一个使该酶保持非活性构象的结构域,并且该结构域还包含一个防止不受调节的蛋白水解作用的调节区。我们得出的结论是,AMP脱氨酶的蛋白水解作用是骨骼肌中大量氨气积累的基础,氨气会发生强烈的强直性强直性收缩或进入严峻的死亡状态。 (C)2004 Elsevier B.V.保留所有权利。

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