Mu Rong, Shinde Pushkar, Zou Zhengzhong, Kreth Jens, Merritt Justin
Department of Restorative Dentistry, School of Dentistry, Oregon Health and Science University, Portland, OR, United States.
Emory College of Arts and Sciences, Atlanta, GA, United States.
Front Microbiol. 2019 Sep 18;10:2150. doi: 10.3389/fmicb.2019.02150. eCollection 2019.
Regulated RNA turnover is vital for the control of gene expression in all cellular life. In , this process is largely controlled by a stable degradosome complex containing RNase E and a variety of additional enzymes. In the Firmicutes phylum, species lack RNase E and often encode the paralogous enzymes RNase J1 and RNase J2. Unlike RNase J1, surprisingly little is known about the regulatory function and protein interactions of RNase J2, despite being a central pleiotropic regulator for the streptococci and other closely related organisms. Using crosslink coimmunoprecipitation in , we have identified the major proteins found within RNase J2 protein complexes located in the cytoplasm and at the cell membrane. In both subcellular fractions, RNase J2 exhibited the most robust interactions with RNase J1, while additional transient and/or weaker "degradosome-like" interactions were also detected. In addition, RNase J2 exhibits multiple novel interactions that have not been previously reported for any RNase J proteins, some of which were highly biased for either the cytoplasmic or membrane fractions. We also determined that the RNase J2 C-terminal domain (CTD) encodes a structure that is likely conserved among RNase J enzymes and may have an analogous function to the C-terminal portion of RNase E. While we did observe a number of parallels between the RNase J2 interactome and the degradosome paradigm, our results suggest that degradosomes are either unlikely to exist or are quite distinct from those of .
受调控的RNA周转对于控制所有细胞生命中的基因表达至关重要。在[具体生物类别未提及]中,这一过程主要由一个包含核糖核酸酶E和多种其他酶的稳定降解体复合物控制。在厚壁菌门中,物种缺乏核糖核酸酶E,且常常编码其旁系同源酶核糖核酸酶J1和核糖核酸酶J2。与核糖核酸酶J1不同,尽管核糖核酸酶J2是链球菌及其他密切相关生物的核心多效性调节因子,但令人惊讶的是,关于它的调节功能和蛋白质相互作用却知之甚少。通过在[具体实验条件未提及]中进行交联共免疫沉淀,我们鉴定出了位于细胞质和细胞膜中的核糖核酸酶J2蛋白复合物内的主要蛋白质。在这两个亚细胞组分中,核糖核酸酶J2与核糖核酸酶J1表现出最强的相互作用,同时还检测到了其他短暂和/或较弱的“类降解体”相互作用。此外,核糖核酸酶J2还展现出多种此前未在任何核糖核酸酶J蛋白中报道过的新型相互作用,其中一些在细胞质或膜组分中具有高度偏向性。我们还确定,核糖核酸酶J2的C末端结构域(CTD)编码一种可能在核糖核酸酶J酶中保守的结构,并且可能具有与核糖核酸酶E的C末端部分类似的功能。虽然我们确实观察到核糖核酸酶J2相互作用组与[具体生物类别未提及]的降解体模式之间存在一些相似之处,但我们的结果表明,[具体生物类别未提及]的降解体要么不太可能存在,要么与[具体生物类别未提及]的降解体截然不同。