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利用酵母表达系统对人1-磷酸半乳糖尿苷酰转移酶N314D等位基因的特性分析

Characterization of the N314D allele of human galactose-1-phosphate uridylyltransferase using a yeast expression system.

作者信息

Fridovich-Keil J L, Quimby B B, Wells L, Mazur L A, Elsevier J P

机构信息

Department of Genetics and Molecular Medicine, Emory University School of Medicine, Atlanta, Georgia 30322, USA.

出版信息

Biochem Mol Med. 1995 Dec;56(2):121-30. doi: 10.1006/bmme.1995.1067.

Abstract

Transferase-deficiency galactosemia is an inborn error of metabolism resulting from impairment of the enzyme galactose-1-phosphate uridylyltransferase (GALT), which normally catalyzes the second step of the Leloir pathway of galactose metabolism. Several recent studies have linked a previously reported substitution, N314D (asn to asp at position 314), with both the Duarte and Los Angeles (LA) variant alleles of GALT. While both variants demonstrate similar mobility shifts relative to the normal enzyme on isoelectric focusing (IEF) gels, one (Duarte) is associated with diminished activity, while the other (LA) is associated with greater than normal activity. Therefore, although the concordance rates between N314D and both of these phenotypes are compelling, the question remains as to whether N314D alone is sufficient to cause either or both variants. To address the question of precisely what properties of variant GALT can be attributed to the N314D substitution alone, we have modeled both the wildtype and N314D-GALT alleles in a previously defined yeast expression system, and characterized each with respect to activity, abundance, subunit interaction, and mobility on isoelectric focusing gels. Our results indicate that the N314D subunit dimerizes well both with wildtype GALT and with itself and that the N314D substitution is sufficient to confer the expected shift of IEF banding pattern associated with both the Duarte and LA variant proteins isolated from human cells. However, our results also suggest that N314D-GALT retains full specific activity, thereby calling into question the suggestion that N314D encodes the Duarte variant of GALT.

摘要

转移酶缺乏性半乳糖血症是一种先天性代谢缺陷,由半乳糖-1-磷酸尿苷酰转移酶(GALT)受损所致,该酶通常催化半乳糖代谢的Leloir途径的第二步。最近的几项研究将先前报道的N314D替代(第314位的天冬酰胺变为天冬氨酸)与GALT的Duarte和洛杉矶(LA)变异等位基因联系起来。虽然这两种变异在等电聚焦(IEF)凝胶上相对于正常酶都表现出相似的迁移率变化,但其中一种(Duarte)与活性降低有关,而另一种(LA)与高于正常的活性有关。因此,尽管N314D与这两种表型之间的一致性率令人信服,但问题仍然存在,即单独的N314D是否足以导致其中一种或两种变异。为了解决变异型GALT的哪些特性可单独归因于N314D替代这一问题,我们在先前定义的酵母表达系统中对野生型和N314D - GALT等位基因进行了建模,并在活性、丰度、亚基相互作用和等电聚焦凝胶上的迁移率方面对每种进行了表征。我们的结果表明,N314D亚基与野生型GALT以及自身都能很好地二聚化,并且N314D替代足以导致与从人类细胞中分离出的Duarte和LA变异蛋白相关的IEF条带模式出现预期的迁移。然而,我们的结果也表明N314D - GALT保留了完全的比活性,从而对N编码GALT的Duarte变异这一观点提出了质疑。

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