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硫醇基团在精氨酸激酶的结构和作用机制中的作用。

The role of thiol groups in the structure and mechanism of action of arginine kinase.

作者信息

Virden R, Watts D C

出版信息

Biochem J. 1966 Apr;99(1):162-72. doi: 10.1042/bj0990162.

Abstract
  1. A detailed study of the reaction of iodoacetamide with arginine kinase has been carried out. 2. The enzyme contains five reactive thiol groups per 37000g. of protein, all of which can be alkylated. 3. Below pH8.5 loss of activity is substantially independent of pH and can be correlated with the alkylation of a single pH-independent thiol. 4. One catalytic site per enzyme molecule is inferred. 5. The progress curves of the alkylation reaction are polyphasic and reveal a pH-and time-dependent sequential release of thiols which is dependent upon the alkylation of the first pH-independent thiol. This is supported by electrophoretic investigations. 6. Comparison of alkylation rate and rate of loss of activity suggests that two thiol groups are not essential for catalytic activity. Variability in enzyme preparations with respect to alkylation rate appears to be associated with these two groups. 7. A complex protection pattern is revealed by the effects of various substrate combinations on rates of alkylation and of loss of activity. It is inferred that two thiol groups participate in conformational changes and nucleotide interactions. 8. Comparison with creatine kinase suggests a fundamentally similar catalytic mechanism, although for arginine kinase certain additional restrictions are necessary because of the protection observed with nucleotide substrates.
摘要
  1. 已对碘乙酰胺与精氨酸激酶的反应进行了详细研究。2. 该酶每37000克蛋白质含有五个活性巯基,所有这些巯基均可被烷基化。3. 在pH8.5以下,活性丧失基本上与pH无关,且可与单个不依赖pH的巯基的烷基化相关。4. 推断每个酶分子有一个催化位点。5. 烷基化反应的进程曲线是多相的,显示出巯基的pH和时间依赖性顺序释放,这取决于第一个不依赖pH的巯基的烷基化。电泳研究支持了这一点。6. 烷基化速率与活性丧失速率的比较表明,两个巯基对催化活性并非必不可少。酶制剂在烷基化速率方面的变异性似乎与这两个基团有关。7. 各种底物组合对烷基化速率和活性丧失速率的影响揭示了一种复杂的保护模式。据推断,两个巯基参与构象变化和核苷酸相互作用。8. 与肌酸激酶的比较表明,催化机制基本相似,尽管对于精氨酸激酶,由于核苷酸底物观察到的保护作用,需要某些额外的限制。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8aab/1264972/94fe15005dd0/biochemj00756-0178-a.jpg

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