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胆囊收缩素N - 乙酰八肽的制备。N - 乙酰化在保护八肽免受平滑肌组织降解中的作用。

Preparation of an N-acetyl-octapeptide of cholecystokinin. The role of N-acetylation in protecting the octapeptide from degradation by smooth muscle tissues.

作者信息

Praissman M, Fara J W, Praissman L A, Berkowitz J M

出版信息

Biochim Biophys Acta. 1982 May 27;716(2):240-8. doi: 10.1016/0304-4165(82)90274-4.

Abstract

The C-terminal octapeptide of cholecystokinin (CCK-8) was acetylated on its lone N-terminal amino group using acetic anhydride in N,N-dimethylformamide. The acetylated derivative (Ac-CCK-8) and unreacted CCK-8 were separated from acetic anhydride and other reaction products by fractionation on Sephadex LH-20. Final purification was by thin-layer isoelectric focusing in a pH 2.5--4.0 gradient. The immunochemical properties of the octapeptide were unaffected by acetylation as measured by radioimmunoassay. The N-acetylated-octapeptide was equally as effective as unmodified CCK-8 in producing concentration-dependent isometric tension development in isolated cat gallbladder strips. Acetylation did, however, protect CCK-8 from N-terminal degradation by soluble peptidases that eluted from gallbladder and other smooth muscle tissues of the cat. Unmodified CCK-8 was degraded rapidly in the presence of these tissues and in buffers previously exposed to the same tissues. In contrast, the Ac-CCK-8 was resistant to N-terminal degradation under the same conditions. Degradation of CCK-8 from its N-terminus produces biologically inactive derivatives and could adversely affect in vitro studies. Since the acetylated-CCK-8 retained full biological and immunological activity, its use would eliminate the effect of extracellular proteolysis on CCK-8 action.

摘要

使用乙酸酐在N,N-二甲基甲酰胺中对胆囊收缩素的C末端八肽(CCK-8)的唯一N末端氨基进行乙酰化。通过在Sephadex LH-20上分级分离,将乙酰化衍生物(Ac-CCK-8)和未反应的CCK-8与乙酸酐及其他反应产物分开。最终纯化是通过在pH 2.5 - 4.0梯度下进行薄层层析等聚焦实现的。通过放射免疫测定法测定,该八肽的免疫化学性质不受乙酰化影响。在分离的猫胆囊条中,N-乙酰化八肽在产生浓度依赖性等长张力发展方面与未修饰的CCK-8同样有效。然而,乙酰化确实保护了CCK-8不被从猫的胆囊和其他平滑肌组织洗脱的可溶性肽酶进行N末端降解。在这些组织存在的情况下以及在先前暴露于相同组织的缓冲液中,未修饰的CCK-8迅速降解。相比之下,在相同条件下Ac-CCK-8对N末端降解具有抗性。从N末端降解CCK-8会产生无生物活性的衍生物,并可能对体外研究产生不利影响。由于乙酰化的CCK-8保留了全部生物和免疫活性,其使用将消除细胞外蛋白水解对CCK-8作用的影响。

相似文献

7
Products of cholecystokinin (CCK)-octapeptide proteolysis interact with central CCK receptors.
Neurosci Lett. 1985 Mar 15;54(2-3):319-25. doi: 10.1016/s0304-3940(85)80098-7.
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Cholecystokinin and gallbladder contraction: effect of CCK infusion.
Peptides. 1981;2 Suppl 2:259-62. doi: 10.1016/0196-9781(81)90041-3.

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