Anand M, Rush J S, Ray S, Doucey M A, Weik J, Ware F E, Hofsteenge J, Waechter C J, Lehrman M A
Department of Pharmacology, UT-Southwestern Medical Center, Dallas, Texas 75390-9041, USA.
Mol Biol Cell. 2001 Feb;12(2):487-501. doi: 10.1091/mbc.12.2.487.
The Lec35 gene product (Lec35p) is required for utilization of the mannose donor mannose-P-dolichol (MPD) in synthesis of both lipid-linked oligosaccharides (LLOs) and glycosylphosphatidylinositols, which are important for functions such as protein folding and membrane anchoring, respectively. The hamster Lec35 gene is shown to encode the previously identified cDNA SL15, which corrects the Lec35 mutant phenotype and predicts a novel endoplasmic reticulum membrane protein. The mutant hamster alleles Lec35.1 and Lec35.2 are characterized, and the human Lec35 gene (mannose-P-dolichol utilization defect 1) was mapped to 17p12-13. To determine whether Lec35p was required only for MPD-dependent mannosylation of LLO and glycosylphosphatidylinositol intermediates, two additional lipid-mediated reactions were investigated: MPD-dependent C-mannosylation of tryptophanyl residues, and glucose-P-dolichol (GPD)-dependent glucosylation of LLO. Both were found to require Lec35p. In addition, the SL15-encoded protein was selective for MPD compared with GPD, suggesting that an additional GPD-selective Lec35 gene product remains to be identified. The predicted amino acid sequence of Lec35p does not suggest an obvious function or mechanism. By testing the water-soluble MPD analog mannose-beta-1-P-citronellol in an in vitro system in which the MPD utilization defect was preserved by permeabilization with streptolysin-O, it was determined that Lec35p is not directly required for the enzymatic transfer of mannose from the donor to the acceptor substrate. These results show that Lec35p has an essential role for all known classes of monosaccharide-P-dolichol-dependent reactions in mammals. The in vitro data suggest that Lec35p controls an aspect of MPD orientation in the endoplasmic reticulum membrane that is crucial for its activity as a donor substrate.
Lec35基因产物(Lec35p)是合成脂质连接寡糖(LLO)和糖基磷脂酰肌醇时利用甘露糖供体甘露糖 - P - 多萜醇(MPD)所必需的,这两种物质分别对蛋白质折叠和膜锚定等功能很重要。仓鼠Lec35基因被证明编码先前鉴定的cDNA SL15,它可纠正Lec35突变体表型,并预测一种新的内质网膜蛋白。对仓鼠突变等位基因Lec35.1和Lec35.2进行了表征,人类Lec35基因(甘露糖 - P - 多萜醇利用缺陷1)被定位到17p12 - 13。为了确定Lec35p是否仅对LLO和糖基磷脂酰肌醇中间体的MPD依赖性甘露糖基化是必需的,研究了另外两个脂质介导的反应:色氨酸残基的MPD依赖性C - 甘露糖基化,以及LLO的葡萄糖 - P - 多萜醇(GPD)依赖性糖基化。发现这两个反应都需要Lec35p。此外,与GPD相比,SL15编码的蛋白质对MPD具有选择性,这表明仍有待鉴定一种额外的GPD选择性Lec35基因产物。Lec35p的预测氨基酸序列未显示出明显的功能或机制。通过在体外系统中测试水溶性MPD类似物甘露糖 - β - 1 - P - 香茅醇,在该系统中通过链球菌溶血素 - O透化保留了MPD利用缺陷,确定Lec35p对于甘露糖从供体到受体底物的酶促转移不是直接必需的。这些结果表明,Lec35p在哺乳动物中对所有已知类型的单糖 - P - 多萜醇依赖性反应具有重要作用。体外数据表明,Lec35p控制内质网膜中MPD方向的一个方面,这对其作为供体底物的活性至关重要。