Palamarczyk G, Drake R, Haley B, Lennarz W J
Department of Biochemistry and Molecular Biology, University of Texas M.D. Anderson Cancer Center, Houston 77030.
Proc Natl Acad Sci U S A. 1990 Apr;87(7):2666-70. doi: 10.1073/pnas.87.7.2666.
In an effort to identify the polypeptide chain of glucosylphosphodolichol synthase (EC 2.4.1.117), yeast microsomal membranes were allowed to react with 5-azido[beta-32P]UDPGlc, a photoactive analogue of UDPGlc, which is a substrate for this enzyme. Upon photolysis the 32P-labeled probe was shown to link covalently to a 35-kDa protein present in microsomal membranes prepared from several wild-type yeast strains. Binding was either reduced or absent in the microsomal membranes from two yeast mutants (alg5 and dpg1) that are known to be defective in the synthesis of glucosylphosphodolichol. The microsomes isolated from a heterozygous diploid strain alg5::dpg1 generated from these two mutants exhibited partial restoration of both the ability to photolabel the 35-kDa protein and the ability to catalyze the synthesis of glucosylphosphodolichol. Microsomal membranes from a mutant strain that synthesized glucosylphosphodolichol but lacked the ability to transfer the glucosyl residue to the growing lipid-linked oligosaccharide (alg6) exhibited labeling with 5-azido[beta-32P]UDPGlc comparable to that found in microsomes from the wild-type strain. In all cases photoinsertion of the probe into the 35-kDa protein correlated with the level of synthase assayed in the microsomal membranes. These results strongly support the conclusion that the 35-kDa protein labeled in these experiments is a component of glucosylphosphodolichol synthase.
为了鉴定葡糖基磷酸多萜醇合酶(EC 2.4.1.117)的多肽链,使酵母微粒体膜与5-叠氮基[β-32P]UDPGlc(UDPGlc的光活性类似物,该酶的一种底物)反应。光解后,32P标记的探针显示与从几种野生型酵母菌株制备的微粒体膜中存在的一种35 kDa蛋白质共价连接。在已知葡糖基磷酸多萜醇合成有缺陷的两个酵母突变体(alg5和dpg1)的微粒体膜中,结合减少或不存在。从这两个突变体产生的杂合二倍体菌株alg5::dpg1中分离出的微粒体,对35 kDa蛋白质进行光标记的能力和催化葡糖基磷酸多萜醇合成的能力都有部分恢复。来自一个合成葡糖基磷酸多萜醇但缺乏将葡糖基残基转移到正在生长的脂质连接寡糖上的能力的突变菌株(alg6)的微粒体膜,用5-叠氮基[β-32P]UDPGlc标记的情况与野生型菌株微粒体中的情况相当。在所有情况下,探针光插入到35 kDa蛋白质中的情况与微粒体膜中检测到的合酶水平相关。这些结果有力地支持了这样的结论:在这些实验中被标记的35 kDa蛋白质是葡糖基磷酸多萜醇合酶的一个组分。