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N-乙酰葡糖胺焦磷酸长萜醇生物合成的调节、反馈及产物抑制

Regulation of the biosynthesis of N-acetylglucosaminylpyrophosphoryldolichol, feedback and product inhibition.

作者信息

Kean E L, Wei Z, Anderson V E, Zhang N, Sayre L M

机构信息

Department of Ophthalmology, Case Western Reserve University, Cleveland, Ohio 44106, USA.

出版信息

J Biol Chem. 1999 Nov 26;274(48):34072-82. doi: 10.1074/jbc.274.48.34072.

Abstract

The assembly of the core oligosaccharide region of asparagine-linked glycoproteins proceeds by means of the dolichol pathway. The first step of this pathway, the reaction of dolichol phosphate with UDP-GlcNAc to form N-acetylglucosaminylpyrophosphoryldolichol (GlcNAc-P-P-dolichol), is under investigation as a possible site of metabolic regulation. This report describes feedback inhibition of this reaction by the second intermediate of the pathway, N-acetylglucosaminyl-N-acetylglucosaminylpyrophosphoryldolichol (GlcNAc-GlcNAc-P-P-dolichol), and product inhibition by GlcNAc-P-P-dolichol itself. These influences were revealed when the reactions were carried out in the presence of showdomycin, a nucleoside antibiotic, present at concentrations that block the de novo formation of GlcNAc-GlcNAc-P-P-dolichol but not that of GlcNAc-P-P-dolichol. The apparent K(i) values for GlcNAc-P-P-dolichol and GlcNAc-GlcNAc-P-P-dolichol under basal conditions were 4.4 and 2.8 microM, respectively. Inhibition was also observed under conditions where mannosyl-P-dolichol (Man-P-dol) stimulated the biosynthesis of GlcNAc-P-P-dolichol; the apparent K(i) values for GlcNAc-P-P-dolichol and GlcNAc-GlcNAc-P-P-dolichol were 2.2 and 11 microM, respectively. Kinetic analysis of the types of inhibition indicated competitive inhibition by GlcNAc-P-P-dolichol toward the substrate UDP-GlcNAc and non-competitive inhibition toward dolichol phosphate. Inhibition by GlcNAc-GlcNAc-P-P-dolichol was uncompetitive toward UDP-GlcNAc and competitive toward dolichol phosphate. A model is presented for the kinetic mechanism of the synthesis of GlcNAc-P-P-dolichol. GlcNAc-P-P-dolichol also exerts a stimulatory effect on the biosynthesis of Man-P-dol, i.e. a reciprocal relationship to that previously observed between these two intermediates of the dolichol pathway. This network of inhibitory and stimulatory influences may be aspects of metabolic control of the pathway and thus of glycoprotein biosynthesis in general.

摘要

天冬酰胺连接糖蛋白核心寡糖区域的组装通过多萜醇途径进行。该途径的第一步,即磷酸多萜醇与UDP-GlcNAc反应形成N-乙酰葡糖胺基焦磷酸多萜醇(GlcNAc-P-P-多萜醇),作为代谢调控的一个可能位点正在研究中。本报告描述了该途径的第二个中间体N-乙酰葡糖胺基-N-乙酰葡糖胺基焦磷酸多萜醇(GlcNAc-GlcNAc-P-P-多萜醇)对该反应的反馈抑制,以及GlcNAc-P-P-多萜醇自身的产物抑制。当反应在showdomycin(一种核苷抗生素)存在下进行时,这些影响得以显现,showdomycin的浓度可阻断GlcNAc-GlcNAc-P-P-多萜醇的从头合成,但不阻断GlcNAc-P-P-多萜醇的从头合成。在基础条件下,GlcNAc-P-P-多萜醇和GlcNAc-GlcNAc-P-P-多萜醇的表观K(i)值分别为4.4和2.8 microM。在甘露糖基-P-多萜醇(Man-P-dol)刺激GlcNAc-P-P-多萜醇生物合成的条件下也观察到了抑制作用;GlcNAc-P-P-多萜醇和GlcNAc-GlcNAc-P-P-多萜醇的表观K(i)值分别为2.2和11 microM。对抑制类型的动力学分析表明,GlcNAc-P-P-多萜醇对底物UDP-GlcNAc具有竞争性抑制,对磷酸多萜醇具有非竞争性抑制。GlcNAc-GlcNAc-P-P-多萜醇对UDP-GlcNAc是非竞争性抑制,对磷酸多萜醇是竞争性抑制。提出了一个GlcNAc-P-P-多萜醇合成动力学机制的模型。GlcNAc-P-P-多萜醇对Man-P-dol的生物合成也有刺激作用,即与多萜醇途径的这两个中间体之间先前观察到的关系呈反比。这种抑制和刺激影响的网络可能是该途径代谢控制的方面,因此也是一般糖蛋白生物合成的方面。

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