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Rapamycin sensitivity of the Schizosaccharomyces pombe tor2 mutant and organization of two highly phosphorylated TOR complexes by specific and common subunits.

机译:雷帕霉素对粟酒裂殖酵母tor2突变体的敏感性以及通过特定和常见亚基组织的两个高度磷酸化的TOR复合物。

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摘要

Nutrients are essential for cell growth and division. Screening of Schizosaccharomyces pombe temperature-sensitive strains led to the isolation of a nutrient-insensitive mutant, tor2-287. This mutant produces a nitrogen starvation-induced arrest phenotype in rich media, fails to recover from the arrest, and is hypersensitive to rapamycin. The L2048S substitution mutation in the catalytic domain in close proximity to the adenine base of ATP is unique as it is the sole known genetic cause of rapamycin hypersensitivity. Localization of Tor2 was speckled in the vegetative cytoplasm, and both speckled and membranous in the arrested cell cytoplasm. Using mass spectroscopic analysis, we identified six subunits (Tco89, Bit61, Toc1, Tel2, Tti1 and Cka1) that, in addition to the six previously identified subunits (Tor1, Tor2, Mip1/Raptor, Ste20/Rictor, Sin1/Avo1 and Wat1/Lst8), comprise the TOR complexes (TORCs). All of the subunits so far examined are multiply phosphorylated. Tel2 bound to Tti1 interacts with various phosphatidyl inositol kinase (PIK)-related kinases including Tra1, Tra2 and Rad3, as well as Tor1 and Tor2. Schizosaccharomyces pombe TORCs should thus be functionally redundant and might be broadly regulated through different subunits that are either common or specific to the two TORCs, or even common to various PIK-related kinases. Functional redundancy of the TORCs may explain the rapamycin hypersensitivity of tor2-287.
机译:营养对于细胞生长和分裂至关重要。粟酒裂殖酵母温度敏感菌株的筛选导致对营养不敏感的突变体tor2-287的分离。该突变体在丰富的培养基中产生氮饥饿诱导的停滞表型,不能从停滞中恢复,并且对雷帕霉素过敏。在靠近ATP腺嘌呤碱基的催化域中的L2048S取代突变是独特的,因为它是雷帕霉素超敏反应的唯一已知遗传原因。在营养细胞质中有Tor2的定位,在被捕的细胞质中有斑点和膜状。使用质谱分析,我们确定了六个亚基(Tco89,Bit61,Toc1,Tel2,Tti1和Cka1),除了先前确定的六个亚基(Tor1,Tor2,Mip1 / Raptor,Ste20 / Rictor,Sin1 / Avo1和Wat1) / Lst8),包括TOR复合体(TORC)。到目前为止检查的所有亚基均被多重磷酸化。与Tti1结合的Tel2与各种磷脂酰肌醇激酶(PIK)相关的激酶相互作用,包括Tra1,Tra2和Rad3以及Tor1和Tor2。因此,粟酒裂殖酵母(Schizosaccharomyces pombe)TORC应该在功能上是多余的,并且可能通过两个TORC共同或特有的,甚至是各种PIK相关激酶共同的不同亚基,受到广泛的调控。 TORC的功能冗余可以解释tor2-287的雷帕霉素超敏性。

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