Viet Nguyen Thi Minh, Duy Duong Long, Saito Kazuhiro, Irie Kaoru, Suda Yasuyuki, Mizuno Tomoaki, Irie Kenji
Department of Molecular Cell Biology, Graduate School of Comprehensive Human Sciences and Faculty of Medicine, University of Tsukuba, Tsukuba, Japan.
Live Cell Super-resolution Imaging Research Team, RIKEN Center for Advanced Photonics, Wako, Saitama, Japan.
Genes Cells. 2018 Dec;23(12):988-997. doi: 10.1111/gtc.12646. Epub 2018 Oct 31.
The PUF RNA-binding protein Puf5 is involved in regulation of the cell wall integrity (CWI) pathway in yeast. Puf5 negatively regulates expression of LRG1 mRNA, encoding for a GTPase-activating protein for Rho1 small GTPase. Here, we further analyzed the effect of Puf5 on LRG1 expression, together with Ccr4 and Pop2 deadenylases, Dhh1 decapping activator, and other PUF proteins. We found that the growth defect of puf5∆ mutant was enhanced by ccr4∆ mutation, which was partially suppressed by LRG1 deletion. Consistently, Lrg1 protein level was much more up-regulated in ccr4Δ puf5Δ double mutant than in each single mutant. Interestingly, LRG1 poly(A) tail length was longer in ccr4∆ mutant but not in puf5∆ mutant. Thus, Puf5 regulates LRG1 expression independently from Ccr4, although Puf5 recruits the Ccr4-Not deadenylase complex for mRNA destabilization. Unexpectedly, puf6Δ mutation suppressed the growth defect caused by ccr4Δ puf5∆ mutation. Loss of Rpl43a and Rpl43b ribosomal proteins, the previously identified Puf6 interactors, also suppressed the growth defect of ccr4Δ puf5Δ mutant. Our results suggest that Puf5 functions in the CWI pathway by regulating LRG1 expression in a deadenylase-independent manner, and that Puf6 is involved in the Ccr4- and Puf5-mediated regulation of cell growth through association with Rpl43.
PUF RNA结合蛋白Puf5参与酵母细胞壁完整性(CWI)途径的调控。Puf5负向调控LRG1 mRNA的表达,LRG1编码Rho1小GTP酶的GTPase激活蛋白。在此,我们进一步分析了Puf5对LRG1表达的影响,以及与Ccr4和Pop2去腺苷酸化酶、Dhh1脱帽激活剂及其他PUF蛋白的关系。我们发现,ccr4∆突变增强了puf5∆突变体的生长缺陷,而LRG1缺失可部分抑制该缺陷。一致地,与每个单突变体相比,ccr4Δ puf5Δ双突变体中Lrg1蛋白水平上调得多。有趣的是,LRG1的多聚腺苷酸尾长度在ccr4∆突变体中更长,但在puf5∆突变体中并非如此。因此,尽管Puf5招募Ccr4-Not去腺苷酸化酶复合体以实现mRNA的去稳定化,但Puf5独立于Ccr4调控LRG1的表达。出乎意料的是,puf6Δ突变抑制了ccr4Δ puf5∆突变导致的生长缺陷。之前鉴定的Puf6相互作用蛋白核糖体蛋白Rpl43a和Rpl43b的缺失也抑制了ccr4Δ puf5Δ突变体的生长缺陷。我们的结果表明,Puf5通过以一种不依赖去腺苷酸化酶的方式调控LRG1的表达在CWI途径中发挥作用,并且Puf6通过与Rpl43结合参与Ccr4和Puf5介导的细胞生长调控。