Biophysical characterization of high-confidence, small human proteins.

IF 2.4 Q3 BIOPHYSICS Biophysical reports Pub Date : 2024-09-11 Epub Date: 2024-06-22 DOI:10.1016/j.bpr.2024.100167
A M Whited, Irwin Jungreis, Jeffre Allen, Christina L Cleveland, Jonathan M Mudge, Manolis Kellis, John L Rinn, Loren E Hough
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Abstract

Significant efforts have been made to characterize the biophysical properties of proteins. Small proteins have received less attention because their annotation has historically been less reliable. However, recent improvements in sequencing, proteomics, and bioinformatics techniques have led to the high-confidence annotation of small open reading frames (smORFs) that encode for functional proteins, producing smORF-encoded proteins (SEPs). SEPs have been found to perform critical functions in several species, including humans. While significant efforts have been made to annotate SEPs, less attention has been given to the biophysical properties of these proteins. We characterized the distributions of predicted and curated biophysical properties, including sequence composition, structure, localization, function, and disease association of a conservative list of previously identified human SEPs. We found significant differences between SEPs and both larger proteins and control sets. In addition, we provide an example of how our characterization of biophysical properties can contribute to distinguishing protein-coding smORFs from noncoding ones in otherwise ambiguous cases.

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高可信度小型人类蛋白质的生物物理特征。
人们为描述蛋白质的生物物理特性做出了巨大努力。小分子蛋白质受到的关注较少,因为它们的注释历来不太可靠。然而,最近在测序、蛋白质组学和生物信息学技术方面取得的进展使得人们能够对编码功能蛋白质的小开放阅读框(smORF)进行高可信度的注释,从而产生了小开放阅读框编码蛋白质(SEPs)。研究发现,SEPs 在包括人类在内的多个物种中发挥着重要功能。虽然人们在注释 SEPs 方面做了大量工作,但对这些蛋白质的生物物理特性却关注较少。我们描述了预测的和策划的生物物理特性的分布情况,包括序列组成、结构、定位、功能和先前确定的人类 SEP 的保守列表中的疾病相关性。我们发现 SEP 与大型蛋白质和对照组之间存在明显差异。此外,我们还提供了一个例子,说明我们对生物物理特性的描述如何有助于在其他情况下将编码蛋白质的 smORF 与非编码的 smORF 区分开来。
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来源期刊
Biophysical reports
Biophysical reports Biophysics
CiteScore
2.40
自引率
0.00%
发文量
0
审稿时长
75 days
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