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处于螺旋-无规卷曲转变状态的聚-L-谷氨酸和聚-L-赖氨酸的辐射效应

Radiation effects of poly(L-glutamic acid) and poly(L-lysine) in the helix-coil transitional state.

作者信息

Ishikawa M, Takakura K

出版信息

Radiat Environ Biophys. 1976 Jul 30;13(2):115-23. doi: 10.1007/BF01332172.

Abstract

The degradation of poly(L-glutamic acid) and poly(L-lysine) by X-rays and ultraviolet radiation has been studied at various pH values, including the helix-coil transition region. It was found that X-rays cause maximum degradation in the transition region for both polypeptides, indicating that the efficiency of degradation is affected not only by the secondary structure but also by some other factors related to the transition. On the contrary, the degradation by monochromatic ultraviolet 2537 A radiation showed a strong dependence on helix content of PLGA, suggesting that degradation occurs more effectively in the helical form than in the coil form. Theoretical calculations were made to approximate the pH dependence of degradation, assuming different cross sections for the peptide bonds in helix, coil, and junctions between helical and coil regions.

摘要

在包括螺旋-无规线团转变区域的不同pH值条件下,研究了X射线和紫外线辐射对聚(L-谷氨酸)和聚(L-赖氨酸)的降解作用。结果发现,X射线在两种多肽的转变区域均引起最大程度的降解,这表明降解效率不仅受二级结构影响,还受与转变相关的其他一些因素影响。相反,单色紫外线2537 Å辐射引起的降解对聚(L-谷氨酸)的螺旋含量有很强的依赖性,这表明螺旋形式的降解比无规线团形式更有效。假设螺旋、无规线团以及螺旋和无规线团区域之间连接点处的肽键具有不同的横截面,进行了理论计算以估算降解的pH依赖性。

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