Institute of Biochemistry and Biophysics, Polish Academy of Sciences, Pawińskiego 5a, 02-106 Warsaw, Poland.
Mossakowski Medical Research Centre, Polish Academy of Sciences, Pawińskiego 5, 02-106 Warsaw, Poland.
Int J Mol Sci. 2021 Dec 30;23(1):409. doi: 10.3390/ijms23010409.
Protein glycosylation requires dolichyl phosphate as a carbohydrate carrier. Dolichols are α-saturated polyprenols, and their saturation in is catalyzed by polyprenyl reductase Dfg10 together with some other unknown enzymes. The aim of this study was to identify such enzymes in . The Dfg10 polyprenyl reductase from comprises a C-terminal 3-oxo-5-alpha-steroid 4-dehydrogenase domain. Alignment analysis revealed such a domain in two ORFs (orf19.209 and orf19.3293) from , which were similar, respectively, to Dfg10 polyprenyl reductase and Tsc13 enoyl-transferase from . Deletion of orf19.209 in impaired saturation of polyprenols. The Tsc13 homologue turned out not to be capable of saturating polyprenols, but limiting its expression reduce the cellular level of dolichols and polyprenols. This reduction was not due to a decreased expression of genes encoding -prenyltransferases from the dolichol branch but to a lower expression of genes encoding enzymes of the early stages of the mevalonate pathway. Despite the resulting lower consumption of acetyl-CoA, the sole precursor of the mevalonate pathway, it was not redirected towards fatty acid synthesis or elongation. Lowering the expression of decreased the expression of the gene encoding acetyl-CoA carboxylase, the key regulatory enzyme of fatty acid synthesis and elongation.
蛋白质糖基化需要二磷酸多萜醇作为糖载体。多萜醇是α-饱和的异戊烯醇,其在[物种名称]中的饱和由多萜醇还原酶 Dfg10 与其他一些未知酶共同催化。本研究的目的是在[物种名称]中鉴定这些酶。[物种名称]中的 Dfg10 多萜醇还原酶包含一个 C 端 3-氧代-5-α-类固醇 4-脱氢酶结构域。序列比对分析表明,[物种名称]中的两个 ORF(orf19.209 和 orf19.3293)具有这种结构域,它们分别与 Dfg10 多萜醇还原酶和 Tsc13 烯酰转移酶来自[物种名称]。在[物种名称]中缺失 orf19.209 会损害多萜醇的饱和。结果表明,Tsc13 同源物不能饱和多萜醇,但限制其表达会降低多萜醇和二磷酸多萜醇的细胞水平。这种减少不是由于编码二磷酸多萜醇分支的 -prenyltransferase 基因表达减少,而是由于编码甲羟戊酸途径早期阶段酶的基因表达降低。尽管导致乙酰辅酶 A 的消耗减少,甲羟戊酸途径的唯一前体,但它并没有被重新定向用于脂肪酸合成或延伸。降低[物种名称]的表达会降低编码乙酰辅酶 A 羧化酶的基因的表达,乙酰辅酶 A 羧化酶是脂肪酸合成和延伸的关键调节酶。