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通过对起始酶N-乙酰葡糖胺-1-磷酸转移酶的扰动敏感调节,将多萜醇-P-P-寡糖途径与翻译偶联起来。

Coupling of the dolichol-P-P-oligosaccharide pathway to translation by perturbation-sensitive regulation of the initiating enzyme, GlcNAc-1-P transferase.

作者信息

Gao Ningguo, Lehrman Mark A

机构信息

Department of Pharmacology, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9041, USA.

出版信息

J Biol Chem. 2002 Oct 18;277(42):39425-35. doi: 10.1074/jbc.M205195200. Epub 2002 Aug 9.

Abstract

In mammalian cells, inhibition of translation interferes with synthesis of the lipid-linked oligosaccharide (LLO) Glc3Man9GlcNAc2-P-P-dolichol as measured with radioactive sugar precursors. Conflicting hypotheses have been proposed, and the fundamental basis for this regulation has remained elusive. Here, fluorophore-assisted carbohydrate electrophoresis (FACE) was used to measure LLO concentrations directly in cells treated with translation blockers. Further, LLO biosynthetic enzymes were assayed in vitro with endogenous acceptor substrates using either cells gently permeabilized with streptolysin-O (SLO) or microsomes from homogenized cells. In Chinese hamster ovary (CHO)-K1 cells treated with translation blockers, FACE did not detect changes in concentrations of Glc3Man9GlcNAc2-P-P-dolichol or early LLO intermediates. These results do not support earlier proposals for feedback repression of LLO initiation by accumulated Glc3Man9GlcNAc2-P-P-dolichol, or inhibition of a GDP-mannose dependent transferase. With microsomes from cells treated with translation blockers, there was no interference with LLO initiation by GlcNAc-1-P transferase (GPT), mannose-P-dolichol synthase, glucose-P-dolichol synthase, or LLO synthesis in vitro, as reported previously. Surprisingly, inhibition of all of these was detected with the SLO in vitro system. Additional experiments with the SLO system showed that the three transferases shared a limited pool of dolichol-P that was trapped as Glc3Man9GlcNAc2-P-P-dolichol by translation arrest. Overexpression of GPT was unable to reverse the effects of translation arrest on LLO initiation, and experiments with FACE and the SLO system showed that overexpressed GPT was not functional in vivo, although it was highly active in microsomal assays. Thus, the combined use of the SLO in vitro system and FACE showed that LLO biosynthesis depends upon a limited primary pool of dolichol-P. Physical perturbation associated with microsome preparation appears to make available a secondary pool of dolichol-P, masking inhibition by translation arrest, as well as activating a nonfunctional fraction of GPT. The implications of these results for the organization of the LLO pathway are discussed.

摘要

在哺乳动物细胞中,翻译抑制会干扰脂质连接寡糖(LLO)Glc3Man9GlcNAc2-P-P-多萜醇的合成,这是通过放射性糖前体测量得出的。已经提出了相互矛盾的假说,而这种调节的基本基础仍然难以捉摸。在这里,荧光团辅助碳水化合物电泳(FACE)被用于直接测量用翻译阻断剂处理的细胞中的LLO浓度。此外,使用经链球菌溶血素-O(SLO)轻度通透的细胞或匀浆细胞的微粒体,以内源性受体底物在体外测定LLO生物合成酶。在用翻译阻断剂处理的中国仓鼠卵巢(CHO)-K1细胞中,FACE未检测到Glc3Man9GlcNAc2-P-P-多萜醇或早期LLO中间体浓度的变化。这些结果不支持早期关于积累的Glc3Man9GlcNAc2-P-P-多萜醇对LLO起始的反馈抑制或对GDP-甘露糖依赖性转移酶的抑制的提议。如先前报道的那样,在用翻译阻断剂处理的细胞的微粒体中,GlcNAc-1-P转移酶(GPT)、甘露糖-P-多萜醇合酶、葡萄糖-P-多萜醇合酶或体外LLO合成对LLO起始没有干扰。令人惊讶的是,在SLO体外系统中检测到了对所有这些的抑制。使用SLO系统的额外实验表明,这三种转移酶共享有限的多萜醇-P池,该池在翻译停滞时被捕获为Glc3Man9GlcNAc2-P-P-多萜醇。GPT的过表达无法逆转翻译停滞对LLO起始的影响,并且使用FACE和SLO系统的实验表明,过表达的GPT在体内无功能,尽管它在微粒体测定中具有高活性。因此,SLO体外系统和FACE的联合使用表明LLO生物合成依赖于有限的初级多萜醇-P池。与微粒体制备相关的物理扰动似乎使次级多萜醇-P池可用,掩盖了翻译停滞的抑制作用,并激活了GPT的无功能部分。讨论了这些结果对LLO途径组织的影响。

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