Design of a yeast SUMO tag to eliminate internal translation initiation.

IF 4.5 3区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Protein Science Pub Date : 2025-01-01 DOI:10.1002/pro.5256
Jamison D Law, Yuan Gao, Vicki H Wysocki, Venkat Gopalan
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引用次数: 0

Abstract

After overexpression in a suitable host, recombinant protein purification often relies on affinity (e.g., poly-histidine) and solubility-enhancing (e.g., small ubiquitin-like-modifier [SUMO]) tags. Following purification, these tags are removed to avoid their interference with target protein structure and function. The wide use of N-terminal His6-SUMO fusions is partly due to efficient cleavage of the SUMO tag's C-terminal Gly-Gly motif by the Ulp1 SUMO protease and generation of the native N-terminus of the target protein. While adopting this system to purify the Salmonella homodimeric FraB deglycase, we discovered that Shine-Dalgarno (SD) sequences in the eukaryotic SUMO tag resulted in truncated proteins. This finding has precedents for synthesis of partial proteins in Escherichia coli from cryptic ribosome-binding sites within eukaryotic coding sequences. The SUMO open reading frame has two "GGNGGN" motifs that resemble SD sequences, one of which encodes the Gly-Gly motif required for Ulp1 cleavage. By mutating these SD sequences, we generated SUMONIT (no internal translation), a variant that eliminated production of the truncated proteins without affecting the levels of full-length His6-SUMO-FraB or Ulp1 cleavage. SUMONIT should be part of the toolkit for enhancing SUMO fusion protein yield, purity, and homogeneity (especially for homo-oligomers). Moreover, we showcase the value of native mass spectrometry in revealing the complications that arise from generation of truncated proteins, as well as oxidation events and protease inhibitor adducts, which are indiscernible by commonly employed lower resolution methods.

酵母SUMO标签的设计,以消除内部翻译起始。
在合适的宿主中过表达后,重组蛋白的纯化通常依赖于亲和性(如多组氨酸)和可溶性增强(如小泛素样修饰物[SUMO])标签。纯化后,去除这些标签以避免它们干扰靶蛋白的结构和功能。n端His6-SUMO融合的广泛使用部分是由于Ulp1 SUMO蛋白酶有效地切割SUMO标签的c端Gly-Gly基序,并产生目标蛋白的天然n端。采用该系统纯化沙门氏菌同源二聚体FraB脱糖苷例时,我们发现真核SUMO标记中的Shine-Dalgarno (SD)序列导致蛋白截短。这一发现在大肠杆菌中有从真核生物编码序列中的隐核糖体结合位点合成部分蛋白质的先例。SUMO开放阅读框有两个类似于SD序列的“GGNGGN”基序,其中一个编码Ulp1切割所需的Gly-Gly基序。通过突变这些SD序列,我们产生了SUMONIT(无内部翻译),这是一种消除了截断蛋白的产生而不影响全长His6-SUMO-FraB或Ulp1切割水平的变体。SUMONIT应该是提高SUMO融合蛋白产量、纯度和均匀性(特别是对同源低聚物)的工具包的一部分。此外,我们展示了天然质谱法在揭示由产生截断蛋白、氧化事件和蛋白酶抑制剂加合物引起的并发症方面的价值,这些并发症是常用的低分辨率方法无法识别的。
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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来源期刊
Protein Science
Protein Science 生物-生化与分子生物学
CiteScore
12.40
自引率
1.20%
发文量
246
审稿时长
1 months
期刊介绍: Protein Science, the flagship journal of The Protein Society, is a publication that focuses on advancing fundamental knowledge in the field of protein molecules. The journal welcomes original reports and review articles that contribute to our understanding of protein function, structure, folding, design, and evolution. Additionally, Protein Science encourages papers that explore the applications of protein science in various areas such as therapeutics, protein-based biomaterials, bionanotechnology, synthetic biology, and bioelectronics. The journal accepts manuscript submissions in any suitable format for review, with the requirement of converting the manuscript to journal-style format only upon acceptance for publication. Protein Science is indexed and abstracted in numerous databases, including the Agricultural & Environmental Science Database (ProQuest), Biological Science Database (ProQuest), CAS: Chemical Abstracts Service (ACS), Embase (Elsevier), Health & Medical Collection (ProQuest), Health Research Premium Collection (ProQuest), Materials Science & Engineering Database (ProQuest), MEDLINE/PubMed (NLM), Natural Science Collection (ProQuest), and SciTech Premium Collection (ProQuest).
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