Department of Microbiology, School of Bioscience and Biotechnology, Chungnam National University, Gung-dong 220, Yuseong-gu, Daejeon 305-764, Korea.
J Biol Chem. 2010 Apr 30;285(18):13797-806. doi: 10.1074/jbc.M110.113555. Epub 2010 Mar 3.
Disruption of the fission yeast LAMMER kinase, Lkh1, gene resulted in diverse phenotypes, including adhesive filamentous growth and oxidative stress sensitivity, but an exact cellular function had not been assigned to Lkh1. Through an in vitro pull-down approach, a transcriptional repressor, Tup12, was identified as an Lkh1 binding partner. Interactions between Lkh1 and Tup11 or Tup12 were confirmed by in vitro and in vivo binding assays. Tup proteins were phosphorylated by Lkh1 in a LAMMER motif-dependent manner. The LAMMER motif was also necessary for substrate recognition in vitro and cellular function in vivo. Transcriptional activity assays using promoters negatively regulated by Tup11 and Tup12 showed 6 or 2 times higher activity in the Delta lkh1 mutant than the wild type, respectively. Northern analysis revealed derepressed expression of the fbp1(+) mRNA in Delta lkh1 and in Delta tup11 Delta tup12 mutant cells under repressed conditions. Delta lkh1 and Delta tup11 Delta tup12 mutant cells showed flocculation, which was reversed by co-expression of Tup11 and -12 with Ssn6. Here, we presented a new aspect of the LAMMER kinase by demonstrating that the activities of global transcriptional repressors, Tup11 and Tup12, were positively regulated by Lkh1-mediated phosphorylation.
裂殖酵母 LAMMER 激酶 Lkh1 基因的破坏导致了多种表型,包括黏附丝状生长和对氧化应激的敏感性,但 Lkh1 的确切细胞功能尚未确定。通过体外下拉方法,鉴定出转录抑制剂 Tup12 是 Lkh1 的结合伴侣。体外和体内结合测定证实了 Lkh1 与 Tup11 或 Tup12 之间的相互作用。Lkh1 以 LAMMER 基序依赖的方式磷酸化 Tup 蛋白。LAMMER 基序对于体外底物识别和体内细胞功能也是必需的。使用受 Tup11 和 Tup12 负调控的启动子进行的转录活性测定表明,在 Delta lkh1 突变体中分别比野生型高 6 倍或 2 倍。Northern 分析显示,在受抑制条件下,Delta lkh1 和 Delta tup11 Delta tup12 突变细胞中 fbp1(+)mRNA 的表达被解除抑制。Delta lkh1 和 Delta tup11 Delta tup12 突变细胞表现出絮凝,这可以通过共表达 Ssn6 与 Tup11 和 Tup12 来逆转。在这里,我们通过证明全局转录抑制剂 Tup11 和 Tup12 的活性受到 Lkh1 介导的磷酸化的正向调节,展示了 LAMMER 激酶的一个新方面。