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组氨酸A(12)参与金属催化氧化诱导的人松弛素聚集和沉淀的证据。

Evidence for the involvement of histidine A(12) in the aggregation and precipitation of human relaxin induced by metal-catalyzed oxidation.

作者信息

Khossravi M, Shire S J, Borchardt R T

机构信息

Department of Pharmaceutical Chemistry, The University of Kansas, Lawrence, Kansas 66047, USA.

出版信息

Biochemistry. 2000 May 16;39(19):5876-85. doi: 10.1021/bi9924720.

Abstract

The metal-catalyzed oxidation (ascorbate/cupric chloride/oxygen) of recombinant human relaxin (rhRlx, type II) was shown by Li et al. [Li, S., Nguyen, T. H., Schöneich, C., and Borchardt, R. T. (1995) Biochemistry 34, 5762-5772] to result in the chemical modification of His A(12), Met B(4), and Met B(25). Considering the fact that His A(12) exists in an extended loop that joins two alpha-helices in this protein, we hypothesized that oxidation of this specific amino acid leads to alterations in the secondary and tertiary structures of the protein, resulting in the pH-dependent aggregation/precipitation phenomena observed in our earlier studies (i.e., at pH >6.0 most of the degradants of rhRlx are insoluble). Evidence obtained in the current study that supports this hypothesis includes the following: (i) oxidation of rhRlx with hydrogen peroxide (H(2)O(2)), which leads only to modification of Met B(4) and Met B(25), does not result in the pH-dependent aggregation/precipitation of the protein; and (ii) metal-catalyzed oxidation of porcine relaxin (pRlx), which does not contain His at position A(12), leads to chemical degradation of the protein [e.g., Met A(2) is oxidized] but produces only slight pH-dependent aggregation/precipitation of the protein. In addition, experimental evidence is provided to show that the physical instability of rhRlx observed at pH >6.0 does not appear to be related to the pH-dependent solubility of a common protein degradant. Instead, it appears that several oxidation products of His A(12) are produced in a pH-dependent manner and that these oxidation products produce different effects on the physical stability of the protein. Evidence in support of this conclusion includes the observation that the soluble degradants of rhRlx showed reduced levels of His, reduced levels of the T(2)-T(7) tryptic fragment that contained His A(12), and the presence of 2-oxo-His. Similarly, the precipitated degradants of rhRlx showed reduced levels of His but no 2-oxo-His. In addition, the soluble degradants, which contain 2-oxo-His, appear to exist as monomers having an average molecular weight similar to that of rhRlx. These results suggest that the metal-catalyzed oxidation of His A(12) leads to other, as yet unidentified oxidation products of His A(12) that affect the secondary/tertiary structure of the protein more significantly than does 2-oxo-His and ultimately lead to the physical instability of the protein observed at higher pH values.

摘要

李等人[Li, S., Nguyen, T. H., Schöneich, C., and Borchardt, R. T. (1995) Biochemistry 34, 5762 - 5772]证明,重组人松弛素(rhRlx,II型)的金属催化氧化(抗坏血酸盐/氯化铜/氧气)会导致His A(12)、Met B(4)和Met B(25)发生化学修饰。鉴于His A(12)存在于连接该蛋白质中两个α - 螺旋的延伸环中,我们推测该特定氨基酸的氧化会导致蛋白质二级和三级结构的改变,从而导致我们早期研究中观察到的pH依赖性聚集/沉淀现象(即,在pH >6.0时,rhRlx的大多数降解产物不溶)。本研究中支持该假设的证据如下:(i) 用过氧化氢(H₂O₂)氧化rhRlx,其仅导致Met B(4)和Met B(25)的修饰,不会导致蛋白质的pH依赖性聚集/沉淀;(ii) 猪松弛素(pRlx)的金属催化氧化,其在A(12)位置不含His,会导致蛋白质的化学降解[例如,Met A(2)被氧化],但仅产生轻微的pH依赖性蛋白质聚集/沉淀。此外,实验证据表明,在pH >6.0时观察到的rhRlx的物理不稳定性似乎与常见蛋白质降解产物的pH依赖性溶解度无关。相反,似乎His A(12)的几种氧化产物以pH依赖性方式产生,并且这些氧化产物对蛋白质的物理稳定性产生不同影响。支持该结论的证据包括观察到rhRlx的可溶性降解产物中His水平降低,包含His A(12)的T(2)-T(7)胰蛋白酶片段水平降低以及2 - 氧代 - His的存在。同样,rhRlx的沉淀降解产物中His水平降低但没有2 - 氧代 - His。此外,含有2 - 氧代 - His的可溶性降解产物似乎以平均分子量与rhRlx相似的单体形式存在。这些结果表明,His A(12)的金属催化氧化会导致His A(12)产生其他尚未确定的氧化产物;这些产物比2 - 氧代 - His更显著地影响蛋白质的二级/三级结构,并最终导致在较高pH值下观察到的蛋白质物理不稳定性。

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