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Saccharomyces cerevisiae Env7 Is a Novel Serine/Threonine Kinase 16-Related Protein Kinase and Negatively Regulates Organelle Fusion at the Lysosomal Vacuole

机译:酿酒酵母Env7是一种新型的丝氨酸/苏氨酸激酶16相关的蛋白激酶,并在溶酶体液泡负调控细胞器融合。

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Membrane fusion depends on conserved components and is responsible for organelle biogenesis and vesicular trafficking. Yeast vacuoles are dynamic structures analogous to mammalian lysosomes. We report here that yeast Env7 is a novel palmitoylated protein kinase ortholog that negatively regulates vacuolar membrane fusion. Microscopic and biochemical studies confirmed the localization of tagged Env7 at the vacuolar membrane and implicated membrane association via the palmitoylation of its N-terminal Cys13 to -15. In vitro kinase assays established Env7 as a protein kinase. Site-directed mutagenesis of the Env7 alanine-proline-glutamic acid (APE) motif Glu269 to alanine results in an unstable kinase-dead allele that is stabilized and redistributed to the detergent-resistant fraction by interruption of the proteasome system in vivo. Palmitoylation-deficient Env7C13-15S is also kinase dead and mislocalizes to the cytoplasm. Microscopy studies established that env7Δ is defective in maintaining fragmented vacuoles during hyperosmotic response and in buds. ENV7 function is not redundant with a similar role of vacuolar membrane kinase Yck3, as the two do not share a substrate, and ENV7 is not a suppressor of yck3Δ. Bayesian phylogenetic analyses strongly support ENV7 as an ortholog of the gene encoding human STK16, a Golgi apparatus protein kinase with undefined function. We propose that Env7 function in fusion/fission dynamics may be conserved within the endomembrane system.
机译:膜融合取决于保守的成分,并负责细胞器的生物发生和水泡运输。酵母液泡是类似于哺乳动物溶酶体的动态结构。我们在这里报告,酵母Env7是一种新型的棕榈酰化的蛋白激酶直向同源物,它负面调节液泡膜融合。显微镜和生化研究证实,标记的Env7位于液泡膜,并通过其N端Cys13的棕榈酰化为-15牵连膜结合。 体外激酶测定将Env7建立为蛋白激酶。 Env7丙氨酸-脯氨酸-谷氨酸(APE)基序Glu269对丙氨酸的定点诱变导致不稳定的激酶死亡等位基因,该酶通过中断体内蛋白酶体系统而稳定并重新分配给耐洗涤剂的组分。缺乏棕榈酰化作用的Env7C13-15S也被激酶杀死,并错位至细胞质。显微镜研究表明, env7 Δ在高渗反应期间和芽中不能维持碎片状的液泡。 ENV7 功能与液泡膜激酶Yck3的作用相似,因此不是多余的,因为两者不共享底物,并且 ENV7 不是 yck3 <的抑制剂/ em>Δ。贝叶斯系统发育分析强烈支持 ENV7 作为人类STK16编码基因的直系同源基因,STK16是一种功能未知的高尔基体蛋白激酶。我们建议Env7融合/裂变动力学中的功能可能被保留在内膜系统内。

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