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共价结合的C3b从细胞表面的天然释放以及在液相系统中对这一现象的研究。

Natural release of covalently bound C3b from cell surfaces and the study of this phenomenon in the fluid-phase system.

作者信息

Venkatesh Y P, Minich T M, Law S K, Levine R P

出版信息

J Immunol. 1984 Mar;132(3):1435-9.

PMID:6693771
Abstract

Covalently bound C3b is released from cell surfaces (EAC1423 and zymosan-C3b) on incubation under physiologic conditions. The release of C3b from cell surfaces occurs by the cleavage of the covalent bond. Sodium dodecyl sulfate (SDS) abolishes the release, thereby indicating the requirement of the native structure of C3b in this process. The phenomenon of release of C3b from cell surfaces has also been observed in the fluid-phase system by using C3b-[3H]glycerol. The kinetics of the release of [3H]glycerol from C3b-[3H]glycerol were studied at 37 degrees C in 0.15 M phosphate buffer, pH 7.4. The first-order rate constant was found to be 0.028 +/- 0.003 hr-1. The release does not take place in either 8 M urea or 6 M guanidine hydrochloride, at pH 7.4. Under alkaline conditions, the rate of release is unaffected in the presence of SDS, indicating that the release in this pH range is not dependent on the native structure of the protein. From the Arrhenius plot in the temperature range 18 to 37 degrees C, an apparent activation energy for the hydrolysis reaction of 21.2 kcal/mol was calculated. The release phenomenon is exclusive for ester-linked complexes, as inferred by the absence of release of [3H]threonine from C3b-[3H]threonine, wherein the linkage is of the amide type. The presence or absence of the C3a portion of the molecule has no effect on the rate of release. The modification of the -SH group of C3i-/C3b-[3H]glycerol alters the rate of hydrolysis of the ester bond between C3i/C3b and [3H]glycerol. Protease inhibitors (PMSF, benzamidine HCl, and DFP) do not alter the rate of release, indicating that the hydrolysis reaction is not due to trace amounts of contaminating proteases. Thus, it appears that some chemical group(s) of C3i/C3b is (are) involved in the intramolecular hydrolysis of the ester bond between C3i/C3b and small molecules. This phenomenon may play an important role in the release of C3b from receptive surfaces once the biologic functions that require covalently bound C3b have been mediated.

摘要

在生理条件下孵育时,共价结合的C3b会从细胞表面(EAC1423和酵母聚糖 - C3b)释放出来。C3b从细胞表面的释放是通过共价键的断裂实现的。十二烷基硫酸钠(SDS)可消除这种释放,这表明在此过程中需要C3b的天然结构。通过使用C3b - [³H]甘油,在液相系统中也观察到了C3b从细胞表面释放的现象。在37℃、pH 7.4的0.15M磷酸盐缓冲液中研究了[³H]甘油从C3b - [³H]甘油的释放动力学。发现一级速率常数为0.028±0.003小时⁻¹。在pH 7.4的8M尿素或6M盐酸胍中均不发生释放。在碱性条件下,SDS存在时释放速率不受影响,这表明在此pH范围内的释放不依赖于蛋白质的天然结构。根据18至37℃温度范围内的阿伦尼乌斯图,计算出酯水解反应的表观活化能为21.2千卡/摩尔。从C3b - [³H]苏氨酸中没有[³H]苏氨酸的释放可以推断,释放现象仅发生在酯键连接的复合物中,其中连接是酰胺类型。分子中C3a部分的存在与否对释放速率没有影响。C3i⁻/C3b - [³H]甘油的 - SH基团的修饰会改变C3i/C3b与[³H]甘油之间酯键的水解速率。蛋白酶抑制剂(PMSF、盐酸苯甲脒和DFP)不会改变释放速率,这表明水解反应不是由痕量的污染蛋白酶引起的。因此,似乎C3i/C3b的某些化学基团参与了C3i/C3b与小分子之间酯键的分子内水解。一旦介导了需要共价结合C3b的生物学功能,这种现象可能在C3b从感受表面的释放中起重要作用。

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