Science for Life Laboratory, Division of Genome Biology, Department of Medical Biochemistry and Biophysics, Karolinska Institutet, Stockholm, Sweden.
Ming Wai Lau Centre for Reparative Medicine, Stockholm node, Karolinska Institutet, Stockholm, Sweden.
FEBS J. 2022 Jan;289(1):53-74. doi: 10.1111/febs.15769. Epub 2021 Feb 24.
Short ORFs (sORFs), that is, occurrences of a start and stop codon within 100 codons or less, can be found in organisms of all domains of life, outnumbering annotated protein-coding ORFs by orders of magnitude. Even though functional proteins smaller than 100 amino acids are known, the coding potential of sORFs has often been overlooked, as it is not trivial to predict and test for functionality within the large number of sORFs. Recent advances in ribosome profiling and mass spectrometry approaches, together with refined bioinformatic predictions, have enabled a huge leap forward in this field and identified thousands of likely coding sORFs. A relatively low number of small proteins or microproteins produced from these sORFs have been characterized so far on the molecular, structural, and/or mechanistic level. These however display versatile and, in some cases, essential cellular functions, allowing for the exciting possibility that many more, previously unknown small proteins might be encoded in the genome, waiting to be discovered. This review will give an overview of the steadily growing microprotein field, focusing on eukaryotic small proteins. We will discuss emerging themes in the molecular action of microproteins, as well as advances and challenges in microprotein identification and characterization.
短开放阅读框 (sORFs),即在 100 个密码子或更少的范围内出现起始和终止密码子,可在所有生命领域的生物中找到,其数量超过注释的蛋白编码 ORFs 几个数量级。尽管已知小于 100 个氨基酸的功能性蛋白质,但由于在大量 sORFs 中预测和测试功能并不简单,因此 sORFs 的编码潜力经常被忽视。核糖体谱和质谱方法的最新进展,以及经过改进的生物信息学预测,使该领域取得了巨大的飞跃,并鉴定了数千个可能编码的 sORFs。迄今为止,已经在分子、结构和/或机制水平上对这些 sORFs 产生的相对较少的小分子蛋白或微蛋白进行了表征。然而,这些蛋白表现出多种多样的功能,在某些情况下是必不可少的细胞功能,这使得一个令人兴奋的可能性是,基因组中可能编码了更多以前未知的小分子蛋白,等待被发现。本文综述了不断发展的微蛋白领域,重点关注真核小分子蛋白。我们将讨论微蛋白分子作用中的新兴主题,以及微蛋白鉴定和表征的进展和挑战。