School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Japan.
School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, Japan; Cell Biology Center, Institute of Innovative Research, Tokyo Institute of Technology, Yokohama, Japan.
J Biol Chem. 2024 Jun;300(6):107360. doi: 10.1016/j.jbc.2024.107360. Epub 2024 May 11.
The nascent polypeptide chains passing through the ribosome tunnel not only serve as an intermediate of protein synthesis but also, in some cases, act as dynamic genetic information, controlling translation through interaction with the ribosome. One notable example is Escherichia coli SecM, in which translation of the ribosome arresting peptide (RAP) sequence in SecM leads to robust elongation arrest. Translation regulations, including the SecM-induced translation arrest, play regulatory roles such as gene expression control. Recent investigations have indicated that the insertion of a peptide sequence, SKIK (or MSKIK), into the adjacent N-terminus of the RAP sequence of SecM behaves as an "arrest canceler". As the study did not provide a direct assessment of the strength of translation arrest, we conducted detailed biochemical analyses. The results revealed that the effect of SKIK insertion on weakening SecM-induced translation arrest was not specific to the SKIK sequence, that is, other tetrapeptide sequences inserted just before the RAP sequence also attenuated the arrest. Our data suggest that SKIK or other tetrapeptide insertions disrupt the context of the RAP sequence rather than canceling or preventing the translation arrest.
新生多肽链穿过核糖体隧道不仅作为蛋白质合成的中间体,而且在某些情况下,通过与核糖体相互作用作为动态遗传信息,控制翻译。大肠杆菌 SecM 就是一个显著的例子,其中核糖体暂停肽(RAP)序列的翻译导致强烈的延伸暂停。翻译调控,包括 SecM 诱导的翻译暂停,发挥着调节作用,如基因表达调控。最近的研究表明,将一个肽序列 SKIK(或 MSKIK)插入 SecM 的 RAP 序列的相邻 N 端充当“暂停取消器”。由于该研究没有直接评估翻译暂停的强度,我们进行了详细的生化分析。结果表明,SKIK 插入对减弱 SecM 诱导的翻译暂停的影响不是 SKIK 序列特异性的,即在 RAP 序列之前插入的其他四肽序列也会减弱暂停。我们的数据表明,SKIK 或其他四肽插入破坏了 RAP 序列的上下文,而不是取消或阻止翻译暂停。