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SAC1 encodes a regulated lipid phosphoinositide phosphatase, defects in which can be suppressed by the homologous Inp52p and Inp53p phosphatases

机译:SAC1编码受调节的脂质磷酸肌醇磷酸酶,其缺陷可被同源的Inp52p和Inp53p磷酸酶抑制

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摘要

The yeast protein Sac1p is involved in a range of cellular functions, including inositol metabolism, actin cytoskeletal organization, endoplasmic reticulum ATP transport, phosphatidylinositol-phosphatidylcholine transfer protein function, and multiple-drug sensitivity. The activity of Sac1p and its relationship to these phenotypes are unresolved. We show here that the regulation of lipid phosphoinositides in sac1 mutants is defective, resulting in altered levels of all lipid phos- phoinositides, particularly phosphatidylinositol 4-phosphate and phosphatidylinositol 4,5-bisphosphate. We have identified two proteins with homology to Sac1p that can suppress drug sensitivity and also restore the levels of the phosphoinositides in sac1 mutants. Overexpression of truncated forms of these suppressor genes confirmed that suppression was due to phosphoinositide phosphatase activity within these proteins. We have now demonstrated this activity for Sac1p and have characterized its specificity. The in vitro phosphatase activity and specificity of Sac1p were not altered by some mutations. Indeed, in vivo mutant Sac1p phosphatase activity also appeared unchanged under conditions in which cells were drug-resistant. However, under different growth conditions, both drug sensitivity and the phosphatase defect were manifest. It is concluded that SAC1 encodes a novel lipid phosphoinositide phosphatase in which specific mutations can cause the sac1 phenotypes by altering the in vivo regulation of the protein rather than by destroying phosphatase activity
机译:酵母蛋白Sac1p参与多种细胞功能,包括肌醇代谢,肌动蛋白细胞骨架组织,内质网ATP转运,磷脂酰肌醇-磷脂酰胆碱转移蛋白功能以及多种药物敏感性。 Sac1p的活动及其与这些表型的关系尚未解决。我们在这里表明,sac1突变体中脂质磷酸肌醇的调节是有缺陷的,导致所有脂质磷酸肌醇,特别是磷脂酰肌醇4-磷酸酯和磷脂酰肌醇4,5-双磷酸酯的水平改变。我们已经确定了两种与Sac1p具有同源性的蛋白,它们可以抑制药物敏感性并还可以恢复sac1突变体中的磷酸肌醇水平。这些抑制基因的截短形式的过表达证实抑制是由于这些蛋白质内的磷酸肌醇磷酸酶活性所致。现在,我们已经证明了Sac1p的这种活性并表征了其特异性。 Sac1p的体外磷酸酶活性和特异性未因某些突变而改变。实际上,在细胞具有耐药性的条件下,体内突变体Sac1p磷酸酶活性也没有改变。然而,在不同的生长条件下,均显示出药物敏感性和磷酸酶缺陷。结论是,SAC1编码一种新型脂质磷酸肌醇磷酸酶,其中特定的突变可通过改变蛋白质的体内调控而不是破坏磷酸酶活性而引起sac1表型

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