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在人类线粒体支链氨基转移酶的CXXC基序中鉴定出一种对过氧化物敏感的氧化还原开关。

Identification of a peroxide-sensitive redox switch at the CXXC motif in the human mitochondrial branched chain aminotransferase.

作者信息

Conway Myra E, Yennawar Neela, Wallin Reidar, Poole Leslie B, Hutson Susan M

机构信息

Department of Biochemistry, Wake Forest University School of Medicine, Medical Center Boulevard, Winston-Salem, North Carolina 27157, USA.

出版信息

Biochemistry. 2002 Jul 23;41(29):9070-8. doi: 10.1021/bi020200i.

Abstract

The human mitochondrial branched chain aminotransferase isoenzyme (hBCATm) must be stored in a reducing environment to remain active. Oxidation or labeling of hBCATm with sulfhydryl reagents results in enzyme inhibition. In this study, we investigated both the structural and biochemical basis for the sensitivity of hBCATm to these reagents. In its native form, hBCATm has two reactive cysteine residues which were identified as Cys315 and Cys318 using iodinated beta-(4-hydroxyphenyl)ethyl maleimide. These are located in the large domain of the homodimer, about 10 A from the active site. The crystal structures show evidence for a thiol-thiolate hydrogen bond between Cys315 and Cys318. Under oxidizing conditions, these cysteine residues can reasonably form a disulfide bond because of the short distance between the sulfur atoms (3.09-3.46 A), requiring only a decrease of 1.1-1.5 A. In addition to Cys315 playing a structural role by anchoring Tyr173, which in the ketimine form increases access to the active site, our evidence indicates that these cysteine residues act as a redox switch in hBCATm. Electrospray ionization mass spectrometry analysis and UV-Vis spectroscopic studies of 5,5'-dithiobis(2-nitrobenzoic acid) labeled hBCATm showed that during labeling, an intrasubunit disulfide bond was formed in a significant portion of the protein. Furthermore, it was established that reaction of hBCATm with H2O2 abolished its activity and resulted in the formation of an intrasubunit disulfide bond between Cys315 and Cys318. Addition of dithiothreitol completely reversed the oxidation and restored activity. Therefore, the results demonstrate that there is redox-linked regulation of hBCATm activity by a peroxide sensitive CXXC center. Future studies will determine if this center has an in vivo role in the regulation of branched chain amino acid metabolism.

摘要

人线粒体支链氨基转移酶同工酶(hBCATm)必须储存在还原环境中以保持活性。用巯基试剂氧化或标记hBCATm会导致酶抑制。在本研究中,我们调查了hBCATm对这些试剂敏感的结构和生化基础。hBCATm的天然形式有两个反应性半胱氨酸残基,使用碘化β-(4-羟基苯基)乙基马来酰亚胺将其鉴定为Cys315和Cys318。它们位于同二聚体的大结构域中,距活性位点约10埃。晶体结构显示Cys315和Cys318之间存在硫醇-硫醇盐氢键的证据。在氧化条件下,由于硫原子之间距离较短(3.09 - 3.46埃),这些半胱氨酸残基可以合理地形成二硫键,仅需距离减少1.1 - 1.5埃。除了Cys315通过锚定Tyr173发挥结构作用外,在酮亚胺形式下Tyr173增加了对活性位点的可及性,我们的证据表明这些半胱氨酸残基在hBCATm中充当氧化还原开关。对5,5'-二硫代双(2-硝基苯甲酸)标记的hBCATm进行电喷雾电离质谱分析和紫外-可见光谱研究表明,在标记过程中,蛋白质的很大一部分形成了亚基内二硫键。此外,已确定hBCATm与H2O2反应会消除其活性,并导致Cys315和Cys318之间形成亚基内二硫键。加入二硫苏糖醇完全逆转了氧化并恢复了活性。因此,结果表明存在由对过氧化物敏感的CXXC中心对hBCATm活性进行的氧化还原相关调节。未来的研究将确定该中心在体内是否在支链氨基酸代谢调节中发挥作用。

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