首页> 外文期刊>The Biochemical Journal >Identification of endoplasmic reticulum proteins involved in glycan assembly: synthesis and characterization of P-3-(4-azidoanilido)uridine 5 '-triphosphate, a membrane-topological photoaffinity probe for uridine diphosphate-sugar binding proteins
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Identification of endoplasmic reticulum proteins involved in glycan assembly: synthesis and characterization of P-3-(4-azidoanilido)uridine 5 '-triphosphate, a membrane-topological photoaffinity probe for uridine diphosphate-sugar binding proteins

机译:鉴定参与聚糖组装的内质网蛋白:P-3-(4-叠氮基氨基)尿苷5'-三磷酸的合成与表征,一种膜拓扑光亲和力的尿苷二磷酸-糖结合蛋白探针

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Much of the enzymic machinery required for the assembly of cell surface carbohydrates is located in the endoplasmic reticulum (ER) of eukaryotic cells. Structural information on these proteins is limited and the identity of the active polypeptide(s) is generally unknown. This paper describes the synthesis and characteristics of a photoaffinity reagent that can be used to identify and analyse members of the ER glycan assembly apparatus, specifically those glycosyltransferases, nucleotide phosphatases and nucleotide-sugar transporters that recognize uridine nucleotides or UDP-sugars. The photoaffinity reagent, P-3-(4-azidoanilido)uridine 5'-triphosphate (AAUTP), was synthesized easily from commercially available precursors. AAUTP inhibited the activity of ER glycosyltransferases that utilize UDP-GlcNAc and UDP-Glc, indicating that it is recognized by UDP-sugar-binding proteins. In preliminary tests AAUTP[alpha-P-32] labelled bovine milk galactosyltransferase, a model UDP-sugar-utilizing enzyme, in a W-light-dependent, competitive and saturable manner. When incubated with rat liver ER vesicles, AAUTP[alpha-P-32] labelled a discrete subset of ER proteins; labelling was light-dependent and metal ion-specific. Photolabelling of intact ER vesicles with AAUTP[alpha-P-32] caused selective incorporation of radioactivity into proteins with cytoplasmically disposed binding sites; UDP-Glc:glycoprotein glucosyltransferase, a lumenal protein, was labelled only when the vesicle membrane was disrupted. These data indicate that AAUTP is a membrane topological probe of catalytic sites in target proteins. Strategies for using AAUTP to identify and study novel ER proteins involved in glycan assembly are discussed. [References: 57]
机译:组装细胞表面碳水化合物所需的许多酶机制位于真核细胞的内质网(ER)中。这些蛋白质的结构信息是有限的,活性多肽的身份通常是未知的。本文介绍了可用于识别和分析ER聚糖组装设备成员的光亲和试剂的合成和特性,特别是那些识别尿苷核苷酸或UDP糖的糖基转移酶,核苷酸磷酸酶和核苷酸糖转运蛋白。光亲和试剂P-3-(4-叠氮基氨基)尿苷5'-三磷酸酯(AAUTP)可以很容易地从市售前体中合成。 AAUTP抑制了利用UDP-GlcNAc和UDP-Glc的ER糖基转移酶的活性,表明它已被UDP糖结合蛋白所识别。在初步测试中,AAUTP [α-P-32]以W依赖,竞争和饱和的方式标记了牛乳半乳糖基转移酶(一种使用UDP糖的模型)。当与大鼠肝脏ER囊泡一起孵育时,AAUTP [alpha-P-32]标记了ER蛋白的一个离散子集。标记是光依赖性和金属离子特异性的。用AAUTP [α-P-32]对完整的ER囊泡进行光标记会导致放射性选择性结合到具有胞质定位结合位点的蛋白质中。仅当囊泡膜破裂时才标记UDP-Glc:糖蛋白葡糖基转移酶(一种腔蛋白)。这些数据表明,AAUTP是靶蛋白中催化位点的膜拓扑探针。讨论了使用AAUTP识别和研究参与聚糖组装的新型ER蛋白的策略。 [参考:57]

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