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DXD基序是GM2合酶活性所必需的,但对核苷酸结合并不关键。

The DXD motif is required for GM2 synthase activity but is not critical for nucleotide binding.

作者信息

Li J, Rancour D M, Allende M L, Worth C A, Darling D S, Gilbert J B, Menon A K, Young W W

机构信息

Department of Molecular, Cellular, and Craniofacial Biology, School of Medicine, University of Louisville, 501 S. Preston St., Louisville, KY 40292, USA.

出版信息

Glycobiology. 2001 Mar;11(3):217-29. doi: 10.1093/glycob/11.3.217.

Abstract

We tested the importance of the aspartate-any residue-aspartate (DXD) motif for the enzymatic activity and nucleotide binding capacity of the Golgi glycosyltransferase GM2 synthase. We prepared point mutations of the motif, which is found in the sequence 352-VLWVDDDFV, and analyzed cells that stably expressed the mutated proteins. Whereas the folding of the mutated proteins was not seriously disrupted as judged by assembly into homodimers, Golgi localization, and secretion of a soluble form of the enzyme, exchange of the highly conserved aspartic acid residues at position 356 or 358 with alanine or asparagine reduced enzyme activity to background levels. In contrast, the D356E and D357N mutations retained weak activity, while the activity of V352A and W354A mutants was 167% and 24% that of wild-type enzyme, respectively. Despite the major effect of the DXD motif on enzymatic activity, nucleotide binding was not altered in the triple mutant D356N/D357N/D358N as revealed by binding to UDP-beads and labeling with the photoaffinity reagent, P(3)-(4-azidoanilido)uridine 5'-triphosphate (AAUTP). In summary, rather than being critical for nucleotide binding, this motif may function during catalysis in GM2 synthase, as has been proposed elsewhere for the SpsA glycosyltransferase based on its crystal structure.

摘要

我们测试了天冬氨酸-任意残基-天冬氨酸(DXD)基序对于高尔基体糖基转移酶GM2合酶的酶活性和核苷酸结合能力的重要性。我们制备了该基序的点突变体,该基序存在于序列352-VLWVDDDFV中,并分析了稳定表达突变蛋白的细胞。尽管从组装成同二聚体、高尔基体定位以及酶的可溶性形式的分泌情况判断,突变蛋白的折叠未受到严重破坏,但将356位或358位高度保守的天冬氨酸残基替换为丙氨酸或天冬酰胺会使酶活性降低至背景水平。相比之下,D356E和D357N突变体保留了较弱的活性,而V352A和W354A突变体的活性分别为野生型酶的167%和24%。尽管DXD基序对酶活性有主要影响,但通过与UDP珠子结合以及用光亲和试剂P(3)-(4-叠氮苯胺基)尿苷5'-三磷酸(AAUTP)标记发现,在三重突变体D356N/D357N/D358N中核苷酸结合未发生改变。总之,该基序对GM2合酶催化作用可能起作用,而不是对核苷酸结合至关重要,正如基于其晶体结构在其他地方对SpsA糖基转移酶所提出的那样。

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