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一种环六肽(生长抑素类似物)在水溶液中的降解动力学及机制

Kinetics and mechanism of degradation of a cyclic hexapeptide (somatostatin analogue) in aqueous solution.

作者信息

Krishnamoorthy R, Mitra A K

机构信息

Department of Industrial and Physical Pharmacy, School of Pharmacy and Pharmacal Sciences, Purdue University, West Lafayette, Indiana 47907.

出版信息

Pharm Res. 1992 Oct;9(10):1314-20. doi: 10.1023/a:1015813619192.

Abstract

A highly active cyclic hexapeptide analogue of somatostatin, Cyclo(N-Me-L-Ala-L-Tyr-D-Trp-L-Lys-L-Val-L-Phe), L-363,586, was found to improve the control of postprandial hyperglycemia in diabetic animals when given in combination with insulin. The compound is reported to be relatively stable in blood, nasal cavity, and intestinal lumen but undergoes rapid degradation in aqueous solution. The objective of this study was to elucidate the degradation mechanisms based on the kinetic data and the structure of the degradation products. Both pH and temperature had a profound influence on the instability of the peptide in aqueous solution. The data indicated that the peptide was most stable at a pH of about 4.7. The pH-rate profile exhibited specific acid catalysis at a pH less than 3.0 and base catalysis above pH 10.5. The kinetic pKa was determined to be 9.7. This pKa could be attributed to the tyrosine residue. The mechanisms of degradation under acidic and alkaline conditions appear to be different. Identification of the fragments obtained using mass spectrometry and amino acid sequencing suggest that the cyclic compound was cleaved to yield a linear fragment, which underwent further cleavage at both peptide linkages alpha to the tryptophanyl residue. The indole group of that residue is probably the potential nucleophile attacking the adjacent carbonyls. A rate equation for the degradation of the hexapeptide has been proposed.

摘要

一种生长抑素的高活性环六肽类似物,环(N-甲基-L-丙氨酸-L-酪氨酸-D-色氨酸-L-赖氨酸-L-缬氨酸-L-苯丙氨酸),L-363,586,被发现与胰岛素联合使用时可改善糖尿病动物餐后高血糖的控制。据报道,该化合物在血液、鼻腔和肠腔内相对稳定,但在水溶液中会迅速降解。本研究的目的是根据动力学数据和降解产物的结构阐明降解机制。pH值和温度对该肽在水溶液中的不稳定性都有深远影响。数据表明该肽在pH约为4.7时最稳定。pH-速率曲线在pH小于3.0时表现出特定的酸催化作用,在pH高于10.5时表现出碱催化作用。动力学pKa测定为9.7。这个pKa可能归因于酪氨酸残基。酸性和碱性条件下的降解机制似乎不同。使用质谱和氨基酸测序对获得的片段进行鉴定表明,环状化合物被裂解产生一个线性片段,该线性片段在色氨酸残基的α位肽键处进一步裂解。该残基的吲哚基团可能是攻击相邻羰基的潜在亲核试剂。已经提出了六肽降解的速率方程。

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