Wang Chun-Yu, Wang Yi-Ting, Hsiao Wan-Yi, Wang Shao-Win
Institute of Molecular and Genomic Medicine, National Health Research Institutes, Miaoli County 350, Taiwan, Republic of China.
RNA. 2017 Apr;23(4):493-503. doi: 10.1261/rna.059766.116. Epub 2016 Dec 28.
In this study we identified Pdc2, the fission yeast ortholog of human Pat1b protein, which forms a complex with Lsm1-7 and plays a role in coupling deadenylation and decapping. The involvement of Pdc2 in RNA degradation and P-body function was also determined. We found that Pdc2 interacts with Dcp2 and is required for decapping in vivo. Although not absolutely essential for P-body assembly, overexpression of Pdc2 enhanced P-body formation even in the absence of Pdc1, the fission yeast functional homolog of human Edc4 protein, indicating that Pdc2 also plays a role in P-body formation. Intriguingly, in the absence of Pdc2, Lsm1 was found to accumulate in the nucleus, suggesting that Pdc2 shuttling between nucleus and cytoplasm plays a role in decreasing the nuclear concentration of Lsm1 to increase Lsm1 in the cytoplasm. Furthermore, unlike other components of P-bodies, the deadenylase Ccr4 did not accumulate in P-bodies in cells growing under favorable conditions and was only recruited to P-bodies after deprivation of glucose in a Pdc2-Lsm1-dependent manner, indicating a function of Pdc2 in cellular response to environmental stress. In supporting this idea, mutants are defective in recovery from glucose starvation with a much longer time to re-enter the cell cycle. In keeping with the notion that Pat1 is a nucleocytoplasmic protein, functioning also in the nucleus, we found that Pdc2 physically and genetically interacts with the nuclear 5'-3' exonuclease Dhp1. A function of Pdc2-Lsm1, in concert with Dhp1, regulating RNA by promoting its decapping/destruction in the nucleus was suggested.
在本研究中,我们鉴定出了Pdc2,它是人类Pat1b蛋白在裂殖酵母中的直系同源物,与Lsm1-7形成复合物,并在去腺苷酸化与脱帽偶联过程中发挥作用。我们还确定了Pdc2在RNA降解和P小体功能中的作用。我们发现Pdc2与Dcp2相互作用,并且在体内脱帽过程中是必需的。尽管对于P小体组装不是绝对必需的,但Pdc2的过表达即使在缺乏Pdc1(人类Edc4蛋白在裂殖酵母中的功能同源物)的情况下也能增强P小体的形成,这表明Pdc2在P小体形成中也发挥作用。有趣的是,在缺乏Pdc2的情况下,发现Lsm1在细胞核中积累,这表明Pdc2在细胞核与细胞质之间穿梭,在降低细胞核中Lsm1的浓度以增加细胞质中Lsm1的浓度方面发挥作用。此外,与P小体的其他成分不同,去腺苷酸酶Ccr4在有利条件下生长的细胞中不会在P小体中积累,只有在葡萄糖剥夺后才以Pdc2-Lsm1依赖的方式被募集到P小体中,这表明Pdc2在细胞对环境应激的反应中发挥作用。支持这一观点的是,突变体在从葡萄糖饥饿中恢复时存在缺陷,重新进入细胞周期的时间要长得多。与Pat1是一种核质蛋白且在细胞核中也发挥作用的观点一致,我们发现Pdc2在物理和遗传上与核5'-3'核酸外切酶Dhp1相互作用。有人提出Pdc2-Lsm1与Dhp1协同作用,通过促进其在细胞核中的脱帽/破坏来调节RNA。