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人触珠蛋白亚基在大肠杆菌中的克隆与表达:一个主要抗氧化结构域的描绘

Cloning and expression of human haptoglobin subunits in Escherichia coli: delineation of a major antioxidant domain.

作者信息

Lai I Hsiang, Tsai Tsung I, Lin Hong Huei, Lai Wei Yen, Mao Simon J T

机构信息

Research Institute of Biochemical Engineering, College of Biological Science and Technology, National Chiao Tung University, Hsinchu, Taiwan, ROC.

出版信息

Protein Expr Purif. 2007 Apr;52(2):356-62. doi: 10.1016/j.pep.2006.09.012. Epub 2006 Oct 1.

Abstract

Human plasma haptoglobin (Hp) comprises alpha and beta subunits. The alpha subunit is heterogeneous in size, therefore isolation of Hp and its subunits is particularly difficult. Using Escherichia coli, we show that alpha1, alpha2, beta, and alpha2beta chain was abundantly expressed and primarily present in the inclusion bodies consisting of about 30% of the cell-lysate proteins. Each cloned subunit retained its immunoreactivity as confirmed using antibodies specific to alpha or beta chain. By circular dichroism, the structure of each expressed subunit was disordered as compared to the native Hp. The antioxidant activity was found to be associated with both alpha and beta chains when assessed by Cu(2+)-induced oxidation of low density lipoprotein (LDL). Of remarkable interest, the antioxidant activity of beta chain was extremely potent and markedly greater than that of native Hp (3.5x), alpha chain (10x) and probucol (15x). The latter is a clinically proved potent compound used for antioxidant therapy. The "unrestricted" structure of beta subunit may therefore render its availability for free-radical scavenge, which provides a utility for the future design of a "mini-Hp" in antioxidant therapy. It may also provide a new insight in understanding the mechanism involved in the antioxidant nature of Hp.

摘要

人血浆触珠蛋白(Hp)由α和β亚基组成。α亚基大小不均一,因此分离Hp及其亚基特别困难。我们利用大肠杆菌表明,α1、α2、β和α2β链大量表达,且主要存在于占细胞裂解物蛋白约30%的包涵体中。使用α或β链特异性抗体证实,每个克隆的亚基都保留了其免疫反应性。通过圆二色性分析,与天然Hp相比,每个表达的亚基结构均无序。通过铜(2+)诱导的低密度脂蛋白(LDL)氧化评估时,发现抗氧化活性与α链和β链均相关。值得注意的是,β链的抗氧化活性极强,明显大于天然Hp(3.5倍)、α链(10倍)和普罗布考(15倍)。后者是一种临床上已证实的用于抗氧化治疗的强效化合物。因此,β亚基的“无限制”结构可能使其可用于清除自由基,这为抗氧化治疗中“微型Hp”的未来设计提供了实用性。这也可能为理解Hp抗氧化性质所涉及的机制提供新的见解。

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