From the Research Institute for Children, Children's Hospital, New Orleans, Louisiana 70118.
J Biol Chem. 2014 May 2;289(18):12202-16. doi: 10.1074/jbc.M113.537183. Epub 2014 Mar 21.
Gβ-like/RACK1 functions as a key mediator of various pathways and contributes to numerous cellular functions in eukaryotic organisms. In the pathogenic fungus Cryptococcus neoformans, noncanonical Gβ Gib2 promotes cAMP signaling in cells lacking normal Gpa1 function while displaying versatility in interactions with Gα Gpa1, protein kinase Pkc1, and endocytic intersectin Cin1. To elucidate the Gib2 functional mechanism(s), we demonstrate that Gib2 is required for normal growth and virulence. We show that Gib2 directly binds to Gpa1 and Gγ Gpg1/Gpg2 and that it interacts with phosphodiesterase Pde2 and monomeric GTPase Ras1. Pde2 remains functionally dispensable, but Ras1 is found to associate with adenylyl cyclase Cac1 through the conserved Ras association domain. In addition, the ras1 mutant exhibits normal capsule formation, whereas the ras1 gpa1 mutant displays enhanced capsule formation, and the ras1 gpa1 cac1 mutant is acapsular. Collectively, these findings suggest that Gib2 promotes cAMP levels by relieving an inhibitory function of Ras1 on Cac1 in the absence of Gpa1. In addition, using GST affinity purification combined with mass spectrometry, we identified 47 additional proteins that interact with Gib2. These proteins have putative functions ranging from signal transduction, energy generation, metabolism, and stress response to ribosomal function. After establishing and validating a protein-protein interactive network, we believe Gib2 to be a key adaptor/scaffolding protein that drives the formation of various protein complexes required for growth and virulence. Our study reveals Gib2 as an essential component in deciphering the complexity of regulatory networks that control growth and virulence in C. neoformans.
Gβ样/RACK1 作为各种途径的关键介质,为真核生物的许多细胞功能做出贡献。在致病真菌新生隐球菌中,非典型 Gβ Gib2 在缺乏正常 Gpa1 功能的细胞中促进 cAMP 信号转导,同时在与 Gα Gpa1、蛋白激酶 Pkc1 和内吞作用的 intersectin Cin1 的相互作用中表现出多功能性。为了阐明 Gib2 的功能机制,我们证明 Gib2 是正常生长和毒力所必需的。我们表明 Gib2 直接与 Gpa1 和 Gγ Gpg1/Gpg2 结合,并且与磷酸二酯酶 Pde2 和单体 GTP 酶 Ras1 相互作用。Pde2 仍然具有功能上的非必需性,但发现 Ras1 通过保守的 Ras 结合域与腺苷酸环化酶 Cac1 相关。此外,ras1 突变体表现出正常的荚膜形成,而 ras1 gpa1 突变体显示增强的荚膜形成,而 ras1 gpa1 cac1 突变体是无荚膜的。总之,这些发现表明,在没有 Gpa1 的情况下,Gib2 通过解除 Ras1 对 Cac1 的抑制作用来促进 cAMP 水平。此外,使用 GST 亲和纯化结合质谱,我们鉴定了与 Gib2 相互作用的另外 47 种蛋白质。这些蛋白质具有从信号转导、能量产生、代谢和应激反应到核糖体功能的潜在功能。在建立和验证蛋白质-蛋白质相互作用网络后,我们认为 Gib2 是一种关键的衔接/支架蛋白,它驱动了生长和毒力所必需的各种蛋白质复合物的形成。我们的研究揭示了 Gib2 作为一种必不可少的成分,用于破译控制新生隐球菌生长和毒力的调控网络的复杂性。