首页> 美国卫生研究院文献>Biochemical Journal >SLI1 (YGR212W) is a major gene conferring resistance to the sphingolipid biosynthesis inhibitor ISP-1 and encodes an ISP-1 N-acetyltransferase in yeast
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SLI1 (YGR212W) is a major gene conferring resistance to the sphingolipid biosynthesis inhibitor ISP-1 and encodes an ISP-1 N-acetyltransferase in yeast

机译:SLI1(YGR212W)是赋予对鞘脂生物合成抑制剂ISP-1的抗性的主要基因并在酵母中编码ISP-1 N-乙酰基转移酶

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摘要

ISP-1 (myriocin) is a potent inhibitor of serine palmitoyltransferase, the primary enzyme of sphingolipid biosynthesis, and is a useful tool for studying the biological functions of sphingolipids in both mammals and yeast (Saccharomyces cerevisiae). In a previous study, we cloned yeast multicopy suppressor genes for ISP-1, and one of these, YPK1/SLI2, was shown to encode a serine/threonine kinase which is a yeast homologue of mammalian SGK1 (serum/glucocorticoid-regulated kinase 1). In the present study, another gene, termed SLI1 (YGR212W; GenBank accession number ), was characterized. Sli1p has weak similarity to Atf1p and Atf2p, which are alcohol acetyltransferases. Although a sli1-null strain grew normally, the IC50 of ISP-1 for the growth of this strain was markedly decreased compared with that for the parental strain, indicating that Sli1p is a major contributor to ISP-1 resistance in yeast. On a sli1-null background, the increase in resistance to ISP-1 induced by YPK1 gene transfection was almost abolished. These data indicate that Sli1p co-operates with Ypk1p in mediating resistance to ISP-1 in yeast. Sli1p was found to convert ISP-1 into N-acetyl-ISP-1 in vitro. Furthermore, N-acetyl-ISP-1 did not share the ability of ISP-1 to inhibit the growth of yeast cells, and the serine palmitoyltransferase inhibitory activity of N-acetyl-ISP-1 was much lower than that of ISP-1. These data suggest that Sli1p inactivates ISP-1 due to its N-acetyltransferase activity towards ISP-1.
机译:ISP-1(myriocin)是有效的丝氨酸棕榈酰转移酶抑制剂,是鞘氨醇生物合成的主要酶,并且是研究鞘脂在哺乳动物和酵母中的生物学功能的有用工具(酿酒酵母)。在先前的研究中,我们为ISP-1克隆了酵母多拷贝抑制基因,其中之一YPK1 / SLI2被编码为丝氨酸/苏氨酸激酶,这是哺乳动物SGK1的酵母同源物(血清/糖皮质激素调节激酶1 )。在本研究中,表征了另一个基因,称为SLI1(YGR212W; GenBank登录号)。 Sli1p与Atf1p和Atf2p具有弱的相似性,后者是醇乙酰基转移酶。尽管sli1-null菌株正常生长,但与亲本菌株相比,ISP-1对该菌株的生长的IC50明显降低,这表明Sli1p是酵母中ISP-1抗性的主要贡献者。在sli1-null背景上,几乎消除了YPK1基因转染诱导的对ISP-1的抗性增加。这些数据表明Sli1p与Ypk1p在介导酵母中对ISP-1的抗性中协同作用。发现Sli1p在体外将ISP-1转化为N-乙酰-ISP-1。另外,N-乙酰基-ISP-1不具有ISP-1抑制酵母细胞生长的能力,并且N-乙酰基-ISP-1的丝氨酸棕榈酰转移酶抑制活性远低于ISP-1。这些数据表明,Sli1p由于其对ISP-1的N-乙酰基转移酶活性而使ISP-1失活。

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