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新制癌菌素中精氨酸残基的可逆修饰。从胰蛋白酶水解产物中分离出具有生物活性的89个残基的片段。

Reversible modification of arginine residues in neocarzinostatin. Isolation of a biologically active 89-residue fragment from the tryptic hydrolysate.

作者信息

Samy T S, Kappen L S, Goldberg I H

出版信息

J Biol Chem. 1980 Apr 25;255(8):3420-6.

PMID:6444949
Abstract

Reaction of the antitumor protein neocarzinostatin with 1,2-cyclohexanedione in 0.25 M borate buffer, pH 9.0, resulted in complete modification of arginine residues in positions 66, 67, and 78. The arginine-modified protein lost its native structure and was biologically inactive in the inhibition of growth of HeLa cells, inhibition of DNA synthesis, and in vitro DNA strand scissions. Trypsin hydrolysis of 1,2-cyclohexanedione-modified neocarzinostatin resulted in selective cleavage of the Lys-Val (positions 20 and 21) bond of the primary structure yielding NH2-terminal 1-20 and the COOH-terminal 21-109 residue fragments. The latter contained modified arginine residues. Both peptide fragments were biologically inactive. Treatment of the arginine-modified neocarzinostatin and the arginine-protected 89-residue fragment with 0.25 M Tris-acetate buffer, pH 9.0, for 15 h resulted in the release of 1,2-cyclohexanedione, regenerating all three arginine residues. The regenerated protein and the 89-residue fragment were fully active biologically. Further, the regenerated 89-residue fragment possessed 70% of the reactivity of neocarzinostatin with antibody raised against the native protein. The conformation of the 89-residue fragment was almost identical with that of the native protein in CD spectral properties.

摘要

抗肿瘤蛋白新制癌菌素与0.25M硼酸盐缓冲液(pH 9.0)中的1,2 - 环己二酮反应,导致66、67和78位的精氨酸残基完全被修饰。精氨酸修饰后的蛋白失去了其天然结构,并且在抑制HeLa细胞生长、抑制DNA合成以及体外DNA链断裂方面均无生物活性。胰蛋白酶水解1,2 - 环己二酮修饰的新制癌菌素导致一级结构中Lys - Val(20和21位)键的选择性裂解,产生NH2 - 末端的1 - 20和COOH - 末端的21 - 109残基片段。后者含有修饰的精氨酸残基。这两个肽片段均无生物活性。用0.25M Tris - 乙酸盐缓冲液(pH 9.0)处理精氨酸修饰的新制癌菌素和精氨酸保护的89个残基片段15小时,导致1,2 - 环己二酮释放,使所有三个精氨酸残基再生。再生后的蛋白和89个残基片段在生物学上完全具有活性。此外,再生后的89个残基片段与针对天然蛋白产生的抗体反应时具有新制癌菌素70%的反应活性。在圆二色光谱特性方面,89个残基片段的构象与天然蛋白几乎相同。

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