Hannig G, Ottilie S, Erikson R L
Department of Cellular and Developmental Biology, Harvard University, Cambridge, MA 02138.
Proc Natl Acad Sci U S A. 1994 Oct 11;91(21):10084-8. doi: 10.1073/pnas.91.21.10084.
The Schizosaccharomyces pombe genes pyp1+ and pyp2+ encode protein tyrosine phosphatases (PTPases) that act as negative regulators of mitosis upstream of the wee1+/mik1+ pathway. Here we provide evidence that pyp1+ and pyp2+ function independently of cdr1+(nim1+) in the inhibition of mitosis and that the wee1 kinase is not a direct substrate of either PTPase. In a pyp1::ura4 cdc25-22 genetic background, overexpression of either the N-terminal domain of pyp1+ or a catalytically inactive mutant, pyp1C470S, causes cell cycle arrest. This phenotype reverses the suppression of a cdc25 temperature-sensitive mutation at 35 degrees C caused by a pyp1 disruption. Furthermore, pyp1C470S and a catalytically inactive mutant of pyp2, pyp2C630S, induce mitotic delay as do their wild-type counterparts. Analysis of pyp1+ and pyp2+ further reveals that in vitro PTPase activity of pyp1 and pyp2, as well as their biological activity, is dependent on the presence of N-terminal sequences that are not normally considered part of PTPase catalytic domains.
粟酒裂殖酵母基因pyp1⁺和pyp2⁺编码蛋白质酪氨酸磷酸酶(PTPases),它们在wee1⁺/mik1⁺途径上游作为有丝分裂的负调控因子发挥作用。在此我们提供证据表明,pyp1⁺和pyp2⁺在抑制有丝分裂方面独立于cdr1⁺(nim1⁺)发挥作用,并且wee1激酶不是这两种PTPase的直接底物。在pyp1::ura4 cdc25 - 22遗传背景中,pyp1⁺的N端结构域或催化失活突变体pyp1C470S的过表达都会导致细胞周期停滞。这种表型逆转了由pyp1破坏导致的在35℃下对cdc25温度敏感突变的抑制。此外,pyp1C470S和pyp2的催化失活突变体pyp2C630S,与它们的野生型对应物一样,会诱导有丝分裂延迟。对pyp1⁺和pyp2⁺的分析进一步揭示,pyp1和pyp2的体外PTPase活性以及它们的生物学活性,依赖于通常不被认为是PTPase催化结构域一部分的N端序列的存在。