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发色核苷酸与肌球蛋白亚片段1的相互作用。

The interaction of chromophoric nucleotides with subfragment 1 of myosin.

作者信息

Eccleston J F, Trentham D R

出版信息

Biochem J. 1977 Apr 1;163(1):15-29. doi: 10.1042/bj1630015.

Abstract

The interaction of a series of chromophoric nucleotides derived from 6-mercapto-9-beta-ribofuranosylpurine (thioinosine, thiol) and 2-amino-6-mercapto-9-beta-ribofuranosyl-purine (thioguanosine, thioG) with myosin subfragment 1 isolated from rabbit skeletal muscle was investigated kinetically and spectroscopically. The Mg2+-dependent hydrolyses of thioITP and thioGTP are catalysed by subfragment 1 and probably proceed by a similar mechanism as for ATP hydrolysis, although with different rate constants. For example, the binary thioGDP-protein complex only comprises 8% of the steady-state intermediate of the thioGTPase at 5 degrees C and pH 6.5. Long-lived analogues of intermediates of the thioGTPase were generated by using thioGTP(gammaS) [thioguanosine 5'-(3-thio)-triphosphate], thioGMP-P(NH)P (5'-thioguanylylimidodiphosphate) and thioGDP. The near-u.v. spectra of the thioguanosine nucleotides bound to subfragment 1 were measured and showed that in all cases the purine ring is bound to the protein in a hydrophobic environment, although the pK of the purine thiol group only increases by 0.2-0.3. ThioGTP caused glycerinated rabbit psoas muscle to contract, but in contrast with thioITP was not able to relax muscle. The applications of these chromophoric nucleotides for investigating the mechanism of muscle contraction and other biological systems, particularly those involving guanosine nucleotide regulation, are discussed.

摘要

研究了一系列源自6-巯基-9-β-D-呋喃核糖基嘌呤(硫代次黄嘌呤核苷,硫醇)和2-氨基-6-巯基-9-β-D-呋喃核糖基嘌呤(硫代鸟嘌呤核苷,硫代G)的发色核苷酸与从兔骨骼肌分离的肌球蛋白亚片段1的相互作用,采用动力学和光谱学方法。硫代ITP和硫代GTP的Mg2+依赖性水解由亚片段1催化,可能与ATP水解的机制相似,尽管速率常数不同。例如,在5℃和pH 6.5时,二元硫代GDP-蛋白质复合物仅占硫代GTP酶稳态中间体的8%。通过使用硫代GTP(γS) [硫代鸟嘌呤核苷5'-(3-硫代)-三磷酸]、硫代GMP-P(NH)P(5'-硫代鸟苷酰亚胺二磷酸)和硫代GDP生成了硫代GTP酶中间体的长寿命类似物。测量了与亚片段1结合的硫代鸟嘌呤核苷的近紫外光谱,结果表明,在所有情况下,嘌呤环都在疏水环境中与蛋白质结合,尽管嘌呤硫醇基团的pK仅增加0.2-0.3。硫代GTP使甘油化的兔腰大肌收缩,但与硫代ITP不同的是,它不能使肌肉松弛。讨论了这些发色核苷酸在研究肌肉收缩机制和其他生物系统,特别是那些涉及鸟苷核苷酸调节的系统中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/939a/1164659/5a5726f084e3/biochemj00513-0034-a.jpg

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