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羧基末端在仓鼠UDP-GlcNAc:多萜醇-P GlcNAc-1-P转移酶稳定表达中的作用。

Role of the carboxyl terminus in stable expression of hamster UDP-GlcNAc:dolichol-P GlcNAc-1-P transferase.

作者信息

Zara J, Lehrman M A

机构信息

Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas 75235-9041.

出版信息

J Biol Chem. 1994 Jul 22;269(29):19108-15.

PMID:8034669
Abstract

In order to examine the function of the carboxyl terminus of UDP-GlcNAc:dolichol-P GlcNAc-1-P transferase (GPT), an endoplasmic reticulum enzyme that synthesizes GlcNAc-P-P-dolichol and, thus, catalyzes the committed step for N-linked glycosylation, a series of carboxyl-terminal truncation mutations was examined. Removal of the last 11 amino acids (398-408) from GPT had no significant effect on catalytic activity, thermal stability, tunicamycin binding, reticular localization, or consumption of cellular dolichol-P. However, in the absence of residues 398-408, the removal of three additional residues (Phe395-Ser396-Ile397), or their change to Leu395-Met396-Trp397 fully eliminated enzyme expression in vivo. By reattaching residues 398-408 to Leu395-Met396-Trp397, expression was restored. Thus, the carboxyl-terminal region of GPT is essential for stable expression. Either of two sequences (395-397 and 398-408) is sufficient for expression, but neither is necessary. Expression of GPT in the absence of residues 398-408 specifically required the Phe395-Ser396-Ile397 sequence, since most scramble and termination mutations within this sequence were inhibitory. One scramble mutant (Ile395-Ser396-Phe397-Stop398) was enzymatically active, but unusually thermolabile. Thus, the function of Phe395-Ser396-Ile397 may be to stabilize GPT.

摘要

为了研究UDP-N-乙酰葡糖胺:多萜醇-P N-乙酰葡糖胺-1-P转移酶(GPT)羧基末端的功能,该酶是一种内质网酶,可合成N-乙酰葡糖胺-P-P-多萜醇,从而催化N-连接糖基化的关键步骤,我们检测了一系列羧基末端截短突变。从GPT中去除最后11个氨基酸(398-408)对催化活性、热稳定性、衣霉素结合、网状定位或细胞多萜醇-P的消耗没有显著影响。然而,在没有398-408位残基的情况下,再去除另外三个残基(苯丙氨酸395-丝氨酸396-异亮氨酸397),或将它们替换为亮氨酸395-甲硫氨酸396-色氨酸397,会完全消除该酶在体内的表达。通过将398-408位残基重新连接到亮氨酸395-甲硫氨酸396-色氨酸397上,表达得以恢复。因此,GPT的羧基末端区域对于稳定表达至关重要。两个序列(395-397和398-408)中的任何一个对于表达都是足够的,但都不是必需的。在没有398-408位残基的情况下GPT的表达特别需要苯丙氨酸395-丝氨酸396-异亮氨酸397序列,因为该序列内的大多数随机排列和终止突变都是抑制性的。一个随机排列突变体(异亮氨酸395-丝氨酸396-苯丙氨酸397-终止密码子398)具有酶活性,但热稳定性异常。因此,苯丙氨酸395-丝氨酸396-异亮氨酸397的功能可能是稳定GPT。

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