首页> 外文OA文献 >A phosphatidylinositol (PI) kinase gene family in Dictyostelium discoideum: biological roles of putative mammalian p110 and yeast Vps34p PI 3-kinase homologs during growth and development.
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A phosphatidylinositol (PI) kinase gene family in Dictyostelium discoideum: biological roles of putative mammalian p110 and yeast Vps34p PI 3-kinase homologs during growth and development.

机译:盘基网柄菌中的磷脂酰肌醇(PI)激酶基因家族:假定的哺乳动物p110和酵母Vps34p PI 3-激酶同系物在生长和发育过程中的生物学作用。

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摘要

Three groups of phosphatidylinositol (PI) kinases convert PI into PI(3)phosphate, PI(4)phosphate, PI(4,5) bisphosphate, and PI(3,4,5)trisphosphate. These phosphoinositides have been shown to function in vesicle-mediated protein sorting, and they serve as second-messenger signaling molecules for regulating cell growth. To further elucidate the mechanism of regulation and function of phosphoinositides, we cloned genes encoding five putative PI kinases from Dictyostelium discoideum. Database analysis indicates that D. discoideum PIK1 (DdPIK1), -2, and -3 are most closely related to the mammalian p110 PI 3-kinase, DdPIK5 is closest to the yeast Vps34p PI 3-kinase, and DdPIK4 is most homologous to PI 4-kinases. Together with other known PI kinases, a superfamily of PI kinase genes has been defined, with all of the encoded proteins sharing a common highly conserved catalytic core domain. DdPIK1, -2, and -3 may have redundant functions because disruption of any single gene had no effect on D. discoideum growth or development. However, strains in which both of the two most highly related genes, DdPIK1 and DdPIK2, were disrupted showed both growth and developmental defects, while double knockouts of DdPIK1 and DdPIK3 and DdPIK2 and DdPIK3 appear to be lethal. The delta Ddpik1 delta Ddpik2 null cells were smaller than wild-type cells and grew slowly both in association with bacteria and in axenic medium when attached to petri plates but were unable to grow in suspension in axenic medium. When delta Ddpik1 delta Ddpik2 null cells were plated for multicellular development, they formed aggregates having multiple tips and produced abnormal fruiting bodies. Antisense expression of DdPIK5 (a putative homolog of the Saccharomyces cerevisiae VPS34) led to a defect in the growth of D. discoideum cells on bacterial lawns and abnormal development. DdPIK5 complemented the temperature-sensitive growth defect of a Schizosaccharomyces pombe delta Svps34 mutant strain, suggesting DdPIK5 encodes a functional homolog of yeast Vps34p. These observations indicate that in D. discoideum, different PI kinases regulate distinct cellular processes, including cell growth, development, and protein trafficking.
机译:三组磷脂酰肌醇(PI)激酶将PI转换为PI(3)磷酸,PI(4)磷酸,PI(4,5)双磷酸和PI(3,4,5)三磷酸。这些磷酸肌醇已显示在囊泡介导的蛋白质分选中起作用,并且它们充当调节细胞生长的第二信使信号分子。为了进一步阐明磷酸肌醇的调节和功能机理,我们从盘基网柄菌中克隆了编码五个推定的PI激酶的基因。数据库分析表明,迪斯科圆盘菌PIK1(DdPIK1),-2和-3与哺乳动物p110 PI 3-激酶最密切相关,DdPIK5与酵母Vps34p PI 3-激酶最接近,而DdPIK4与PI最同源4激酶。与其他已知的PI激酶一起,已经定义了PI激酶基因的超家族,所有编码的蛋白质都共享一个共同的高度保守的催化核心结构域。 DdPIK1,-2和-3可能具有多余的功能,因为任何单个基因的破坏都不会影响D. Discoideum的生长或发育。但是,两个高度相关的基因DdPIK1和DdPIK2都被破坏的菌株显示出生长和发育缺陷,而DdPIK1和DdPIK3和DdPIK2和DdPIK3的双重敲除似乎是致命的。 ΔDdpik1ΔDdpik2空细胞比野生型细胞小,并且在附着到培养皿上时与细菌和在树突培养基中均缓慢生长,但无法在树突培养基中悬浮生长。当将ΔDdpik1ΔDdpik2空细胞铺板用于多细胞发育时,它们形成具有多个尖端的聚集体并产生异常的子实体。 DdPIK5(啤酒酵母VPS34的一个假定的同源物)的反义表达导致细菌草坪上的D. discoideum细胞生长缺陷和异常发育。 DdPIK5补充了粟酒裂殖酵母Svps34突变株的温度敏感性生长缺陷,表明DdPIK5编码酵母Vps34p的功能同源物。这些观察结果表明,在盘实线虫中,不同的PI激酶调节不同的细胞过程,包括细胞生长,发育和蛋白质运输。

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