NANJING ANJI BIOTECHNOLOGY CO. LTD, Nanjing, 210033, China.
The Engineering Research Center of Synthetic Peptide Drug Discovery and Evaluation of Jiangsu Province, China Pharmaceutical University, Nanjing, 210009, China; State Key Laboratory of Natural Medicines, Ministry of Education, China Pharmaceutical University, Nanjing, 210009, China.
Cancer Lett. 2022 Oct 28;547:215723. doi: 10.1016/j.canlet.2022.215723. Epub 2022 May 7.
An exciting emerging topic in the noncoding RNA (ncRNA) field is the discovery of short peptides called micropeptides (≤100 amino acids), whose novel therapeutic opportunities remain under-explored. Micropeptides have been suggested to play essential regulatory roles in diverse species of physiological and pathological processes. Genomics studies have revealed that these micropeptides are encoded by small open reading frames (sORFs) concealed in misannotated ncRNAs, generally lncRNAs (long noncoding RNAs) and circRNAs (circular RNAs). These ncRNA-encoded micropeptides have been shown to contribute to tumorigenesis but little is known about their pathological mechanism because of challenges in translated sORF identification techniques. Here, we review the best-validated micropeptides involved in the progression of human tumors and discuss their therapeutic and/or prognostic potential, at the same time, we also give our own suggestions on the concept of potential-coding RNA and micropeptides.
非编码 RNA(ncRNA)领域一个令人兴奋的新兴课题是发现了称为微肽(≤100 个氨基酸)的短肽,其新颖的治疗机会仍未得到充分探索。微肽被认为在多种生理和病理过程的物种中发挥重要的调节作用。基因组学研究表明,这些微肽是由小开放阅读框(sORF)编码的,这些 sORF 隐藏在错误注释的 ncRNA 中,通常是 lncRNA(长非编码 RNA)和 circRNA(环状 RNA)。已经表明这些 ncRNA 编码的微肽有助于肿瘤发生,但由于翻译 sORF 鉴定技术的挑战,对其病理机制知之甚少。在这里,我们回顾了参与人类肿瘤进展的经过最佳验证的微肽,并讨论了它们的治疗和/或预后潜力,同时,我们还对潜在编码 RNA 和微肽的概念提出了自己的建议。