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在酵母细胞生长控制中,Tor蛋白和蛋白磷酸酶2A相互调节Tap42。

Tor proteins and protein phosphatase 2A reciprocally regulate Tap42 in controlling cell growth in yeast.

作者信息

Jiang Y, Broach J R

机构信息

Department of Molecular Biology, Princeton University, Princeton, NJ 08544, USA.

出版信息

EMBO J. 1999 May 17;18(10):2782-92. doi: 10.1093/emboj/18.10.2782.

Abstract

Tor proteins, homologous to DNA-dependent protein kinases, participate in a signal transduction pathway in yeast that regulates protein synthesis and cell wall expansion in response to nutrient availability. The anti-inflammatory drug rapamycin inhibits yeast cell growth by inhibiting Tor protein signaling. This leads to diminished association of a protein, Tap42, with two different protein phosphatase catalytic subunits; one encoded redundantly by PPH21 and PPH22, and one encoded by SIT4. We show that inactivation of either Cdc55 or Tpd3, which regulate Pph21/22 activity, results in rapamycin resistance and that this resistance correlates with an increased association of Tap42 with Pph21/22. Furthermore, we show Tor-dependent phosphorylation of Tap42 both in vivo and in vitro and that this phosphorylation is rapamycin sensitive. Inactivation of Cdc55 or Tpd3 enhances in vivo phosphorylation of Tap42. We conclude that Tor phosphorylates Tap42 and that phosphorylated Tap42 effectively competes with Cdc55/Tpd3 for binding to the phosphatase 2A catalytic subunit. Furthermore, Cdc55 and Tpd3 promote dephosphorylation of Tap42. Thus, Tor stimulates growth-promoting association of Tap42 with Pph21/22 and Sit4, while Cdc55 and Tpd3 inhibit this association both by direct competition and by dephosphorylation of Tap42. These results establish Tap42 as a target of Tor and add further refinement to the Tor signaling pathway.

摘要

Tor蛋白与DNA依赖性蛋白激酶同源,参与酵母中的一条信号转导途径,该途径根据营养物质的可利用性调节蛋白质合成和细胞壁扩张。抗炎药物雷帕霉素通过抑制Tor蛋白信号传导来抑制酵母细胞生长。这导致一种蛋白质Tap42与两种不同的蛋白磷酸酶催化亚基的结合减少;一种由PPH21和PPH22冗余编码,另一种由SIT4编码。我们发现,调节Pph21/22活性的Cdc55或Tpd3失活会导致对雷帕霉素产生抗性,并且这种抗性与Tap42与Pph21/22的结合增加相关。此外,我们在体内和体外均显示了Tap42的Tor依赖性磷酸化,并且这种磷酸化对雷帕霉素敏感。Cdc55或Tpd3失活会增强Tap42的体内磷酸化。我们得出结论,Tor使Tap42磷酸化,并且磷酸化的Tap42有效地与Cdc55/Tpd3竞争与磷酸酶2A催化亚基的结合。此外,Cdc55和Tpd3促进Tap42的去磷酸化。因此,Tor刺激Tap42与Pph21/22和Sit4的促进生长的结合,而Cdc55和Tpd3通过直接竞争和Tap42的去磷酸化来抑制这种结合。这些结果确立了Tap42为Tor的靶标,并进一步完善了Tor信号通路。

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