Institute of Biochemistry and Molecular Biology, National Yang-Ming University, Taipei 11221, Taiwan.
J Biol Chem. 2012 Feb 24;287(9):6089-99. doi: 10.1074/jbc.M111.303701. Epub 2011 Dec 28.
The conserved Ser/Thr kinase target of rapamycin (TOR) serves as a central regulator in controlling cell growth-related functions. There exist two distinct TOR complexes, TORC1 and TORC2, each coupling to specific downstream effectors and signaling pathways. In Saccharomyces cerevisiae, TORC2 is involved in regulating actin organization and maintaining cell wall integrity. Ypk2 (yeast protein kinase 2), a member of the cAMP-dependent, cGMP-dependent, and PKC (AGC) kinase family, is a TORC2 substrate known to participate in actin and cell wall regulation. Employing avo3(ts) mutants with defects in TORC2 functions that are suppressible by active Ypk2, we investigated the molecular interactions involved in mediating TORC2 signaling to Ypk2. GST pulldown assays in yeast lysates demonstrated physical interactions between Ypk2 and components of TORC2. In vitro binding assays revealed that Avo1 directly binds to Ypk2. In avo3(ts) mutants, the TORC2-Ypk2 interaction was reduced and could be restored by AVO1 overexpression, highlighting the important role of Avo1 in coupling TORC2 to Ypk2. The interaction was mapped to an internal region (amino acids 600-840) of Avo1 and a C-terminal region of Ypk2. Ypk2(334-677), a truncated form of Ypk2 containing the Avo1-interacting region, was able to interfere with Avo1-Ypk2 interaction in vitro. Overexpressing Ypk2(334-677) in yeast cells resulted in a perturbation of TORC2 functions, causing defective cell wall integrity, aberrant actin organization, and diminished TORC2-dependent Ypk2 phosphorylation evidenced by the loss of an electrophoretic mobility shift. Together, our data support the conclusion that the direct Avo1-Ypk2 interaction is crucial for TORC2 signaling to the downstream Ypk2 pathway.
雷帕霉素靶蛋白(TOR)的保守丝氨酸/苏氨酸激酶作为控制细胞生长相关功能的中央调节剂。存在两种不同的 TOR 复合物,TORC1 和 TORC2,它们分别与特定的下游效应物和信号通路偶联。在酿酒酵母中,TORC2 参与调节肌动蛋白组织和维持细胞壁完整性。Ypk2(酵母蛋白激酶 2)是 cAMP 依赖性、cGMP 依赖性和 PKC(AGC)激酶家族的成员,是 TORC2 的底物,已知参与肌动蛋白和细胞壁调节。我们利用 avo3(ts) 突变体,这些突变体在 TORC2 功能上有缺陷,但可以被活性 Ypk2 抑制,研究了介导 TORC2 信号传递到 Ypk2 的分子相互作用。酵母裂解物中的 GST 下拉测定表明 Ypk2 与 TORC2 的成分之间存在物理相互作用。体外结合测定显示 Avo1 直接与 Ypk2 结合。在 avo3(ts) 突变体中,TORC2-Ypk2 相互作用减少,并且可以通过 AVO1 过表达恢复,这突出了 Avo1 在将 TORC2 与 Ypk2 偶联中的重要作用。这种相互作用被映射到 Avo1 的内部区域(氨基酸 600-840)和 Ypk2 的 C 端区域。包含与 Avo1 相互作用区域的 Ypk2 的截断形式 Ypk2(334-677),能够在体外干扰 Avo1-Ypk2 相互作用。在酵母细胞中过表达 Ypk2(334-677)导致 TORC2 功能受到干扰,导致细胞壁完整性缺陷、肌动蛋白组织异常和 TORC2 依赖性 Ypk2 磷酸化减少,这表现为电泳迁移率改变的丧失。总之,我们的数据支持这样的结论,即 Avo1-Ypk2 的直接相互作用对于 TORC2 信号传递到下游 Ypk2 途径至关重要。