SOD功能模型的建立。

Ali Arslantas
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引用次数: 10

摘要

超氧化物歧化酶(SOD)是超氧阴离子(O2(-))的清除剂,是生物机体的保护者。在寻找酶的功能和结构之间的关系时,研究SOD的模型化合物是很重要的。此外,SOD模型化合物具有潜在的治疗作用。虽然已经报道了许多SOD模型化合物,但它们的结构与天然酶的结构有很大的不同。Cu,Zn-SOD已被建议用于临床应用。不幸的是,尽管已知几种铜(II)配合物显示SOD活性,但半衰期和抗原性等许多问题尚未克服。活性氧,如超氧(O2(-)),来自细胞电子传递链的各个组成部分,并在吞噬细胞的呼吸爆发过程中提供,与衰老过程和退行性疾病(包括关节炎和癌症)都有关系。因此,生物系统具有对活性物种的保护机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Functional Models for a SOD.

Superoxide dismutase (SOD) is the scavenger of superoxide anion (O2(-)) and functions as a protector of living bodies. Study of a model compound of SOD is important when searching for the relationship between functions and structures of enzymes. Furthermore, SOD model compounds have potential for therapeutic usefulness. Although many SOD: model compounds have been reported, their structures are quite different from those of the native enzyme. Cu,Zn-SOD has been proposed for clinical uses. Unfortunately, many problems such as half-lifetime and antigenicity have not been overcome even though several copper(II) complexes are known to show SOD activity. Active oxygen species such as superoxide (O2(-)) from various components of the cellular electron transport chains, and provided during the respiratory burst of phagocytic cells, have been implicated both in the aging process and in degenerative diseases, including arthritis and cancer. Therefore, the biological system posseses the protective mechanisms against active species.

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