Alteration of the quaternary structure of human UDP-glucose dehydrogenase by a double mutation.

Jae-Wan Huh, Seung-Ju Yang, Eun Young Hwang, Myung-Min Choi, Hyun-Ju Lee, Eun-A Kim, Soo Young Choi, Jene Choi, Hea-Nam Hong, Sung-Woo Cho
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引用次数: 8

Abstract

There are conflicting views for the polymerization process of human UDP-glucose dehydrogenase (UGDH) and no clear evidence has been reported yet. Based on crystal coordinates for Streptococcus pyogenes UGDH, we made double mutant A222Q/S233G. The double mutagenesis had no effects on expression, stability, and secondary structure. Interestingly, A222Q/S233G was a dimeric form and showed an UGDH activity, although it showed increased Km values for substrates. These results suggest that Ala222 and Ser233 play an important role in maintaining the hexameric structure and the reduced binding affinities for substrates are attributable to its altered subunit communication although quaternary structure may not be critical for catalysis.

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双突变对人udp -葡萄糖脱氢酶四级结构的影响。
关于人udp -葡萄糖脱氢酶(UGDH)的聚合过程,目前还没有明确的证据报道。根据化脓性链球菌UGDH的晶体坐标,制备了双突变体A222Q/S233G。双诱变对其表达、稳定性和二级结构均无影响。有趣的是,A222Q/S233G是二聚体形式,显示出UGDH活性,尽管它对底物的Km值增加。这些结果表明,Ala222和Ser233在维持六聚体结构中起着重要作用,而对底物的结合亲和力的降低是由于其亚基通信的改变,尽管季元结构可能对催化并不重要。
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