Endogenous HiBiT-tagging combined with affinity complementation: A new strategy for small open reading frame-encoded polypeptide detection in bacteria

IF 5.2 Q1 CHEMISTRY, ANALYTICAL
Laure Simoens, Veronique Jonckheere, Dominiek Catteeuw, Petra Van Damme
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引用次数: 0

Abstract

Bacterial genome annotations are continuously refined with the advent of novel techniques. Ribosome profiling, or Ribo-seq, utilizing next-generation sequencing to link genomic regions with translational activity, has uncovered numerous small open reading frames (sORFs) - arbitrarily defined as ORFs no longer than 300 base pairs - as a generally under-annotated class of genomic elements in both eukaryotic and prokaryotic genomes. While sORFs can function as regulatory elements, they may also translate into small proteins (equal to or shorter than 100 amino acids), classified as sORF-encoded polypeptides (SEPs). The inherent limitations of ribosome profiling necessitate the experimental validation of predicted (s)ORFs at the protein expression level. However, the small size and unique biochemical characteristics of SEPs pose significant challenges for traditional protein detection methods, like mass spectrometry and immunoblotting. In this study, we introduce HiBiT blotting, a luminescent, complementation-based protein detection method, as a highly sensitive alternative to antibody-based immunoblotting for investigating SEP expression in Salmonella enterica (serovar) Typhimurium (S. Typhimurium) at endogenous levels. We demonstrate its complementarity to mass spectrometry as an expression validation tool. Additionally, employing a biochemical fractionation approach, we determined the subcellular localization of validated S. Typhimurium SEPs, initiating exploration into the functional aspects of these SEPs, and proposed enrichment strategies that may facilitate future experimental validation of Ribo-seq-predicted sORFs.

Abstract Image

内源性hibit标记结合亲和互补:细菌小片段开放阅读框编码多肽检测的新策略
随着新技术的出现,细菌基因组注释不断得到完善。核糖体分析,或核糖序列,利用下一代测序将基因组区域与翻译活性联系起来,已经发现了许多小的开放阅读框架(sorf) -任意定义为不超过300个碱基对-作为真核和原核基因组中普遍未加注释的基因组元件。虽然sorf可以作为调控元件,但它们也可以翻译成小蛋白质(等于或短于100个氨基酸),被归类为sorf编码的多肽(sep)。核糖体谱分析的固有局限性需要在蛋白质表达水平上对预测的orf进行实验验证。然而,SEPs的体积小,生化特性独特,这对传统的蛋白质检测方法,如质谱法和免疫印迹法提出了重大挑战。在这项研究中,我们引入了HiBiT印迹法,一种发光的、基于互补的蛋白检测方法,作为一种高度敏感的替代基于抗体的免疫印迹法,用于研究内源性沙门氏菌(血清型)鼠伤寒沙门氏菌(S. Typhimurium)中SEP的表达。我们证明了它与质谱作为表达验证工具的互补性。此外,采用生化分离方法,我们确定了验证的鼠伤寒沙门氏菌sep的亚细胞定位,开始探索这些sep的功能方面,并提出了富集策略,可能有助于未来实验验证核糖核酸-seq预测的sorf。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
3.50
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0.00%
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