Anvil Biosciences, 3475 Edison Way, Ste J, Menlo Park, CA, 94025, USA,
Cell Stress Chaperones. 2014 Mar;19(2):159-72. doi: 10.1007/s12192-013-0456-5. Epub 2013 Sep 4.
The field of non-coding RNA (ncRNA) has expanded over the last decade following the discoveries of several new classes of regulatory ncRNA. A growing amount of evidence now indicates that ncRNAs are involved even in the most fundamental of cellular processes. The heat shock response is no exception as ncRNAs are being identified as integral components of this process. Although this area of research is only in its infancy, this article focuses on several classes of regulatory ncRNA (i.e., miRNA, lncRNA, and circRNA), while summarizing their activities in mammalian heat shock. We also present an updated model integrating the traditional heat shock response with the activities of regulatory ncRNA. Our model expands on the mechanisms for efficient execution of the stress response, while offering a more comprehensive summary of the major regulators and responders in heat shock signaling. It is our hope that much of what is discussed herein may help researchers in integrating the fields of heat shock and ncRNA in mammals.
在过去的十年中,随着几种新的调节性 ncRNA 类别的发现,非编码 RNA(ncRNA)领域得到了扩展。越来越多的证据表明,ncRNA 甚至参与了最基本的细胞过程。热休克反应也不例外,因为已经确定 ncRNA 是该过程的组成部分。尽管这一研究领域还处于起步阶段,但本文重点介绍了几种调节性 ncRNA(即 miRNA、lncRNA 和 circRNA),同时总结了它们在哺乳动物热休克中的活性。我们还提出了一个更新的模型,将传统的热休克反应与调节性 ncRNA 的活性结合起来。我们的模型扩展了有效执行应激反应的机制,同时更全面地总结了热休克信号中的主要调节剂和响应者。我们希望本文所讨论的内容能够帮助研究人员整合哺乳动物的热休克和 ncRNA 领域。