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首页> 外文期刊>The protein journal >A Novel Strategy for the Preparation of Codon-Optimized Truncated Ulp1 and its Simplified Application to Cleavage the SUMO Fusion Protein
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A Novel Strategy for the Preparation of Codon-Optimized Truncated Ulp1 and its Simplified Application to Cleavage the SUMO Fusion Protein

机译:密码子优化的截短Ulp1的制备及其在SUMO融合蛋白切割中的简化应用的新策略。

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摘要

Ubiquitin-like protease 1 (Ulp1) of Saccharomyces cerevisiae emerges as a fundamental tool to obtain the natural N-terminal target protein by cleavage of the small ubiquitin-related modifier (SUMO) fusion protein. However, the costly commercial Ulp1 and its complicated procedures limit its application in the preparation of the target protein with natural N-terminal sequence. Here, we describe the preparation of bioactive codon-optimized recombinant truncated Ulp1 (Leu403-Lys621) (rtUlp1) of S. cerevisiae in Escherichia coli using only one-step with Ni-NTA affinity chromatograph, and the application of rtUlp1 to cleave the SUMO fusion protein by simply mixing the purified rtUlp1, SUMO fusion protein and DL-Dithiothreitol in Tris-HCl buffer. The optimal expression level of non-fusion protein rtUlp1 accounts for approximately 50 % of the total cellular protein and 36 % of the soluble form by addition of isopropyl beta-D-l-thiogalactopyranoside at a final concentration of 0.4 mM at 18 A degrees C for 20 h. The purification of target protein rtUlp1 was conducted by Ni-NTA affinity chromatography. The final yield of rtUlp1 was 45 mg/l in flask fermentation with a purity up to 95 %. Furthermore, the high purity of rtUlp1 could effectively cleave the SUMO-tT beta RII fusion protein (SUMO gene fused to truncated transforming growth factor-beta receptor type II gene) with the above simplified approach, and the specific activity of the rtUlp1 reached up to 2.8 x 10(4) U/mg, which is comparable to the commercial Ulp1. The preparation and application strategy of the rtUlp1 with commonly available laboratory resources in this study will be convenient to the cleavage of the SUMO fusion protein to obtain the natural N-terminal target protein, which can be implemented in difficult-to-express protein functional analysis.
机译:酿酒酵母的泛素样蛋白酶1(Ulp1)作为一种基本工具,可通过裂解小的泛素相关修饰物(SUMO)融合蛋白来获得天然的N末端靶蛋白。然而,昂贵的商业Ulp1及其复杂的程序限制了其在制备具有天然N末端序列的靶蛋白中的应用。在这里,我们描述了大肠杆菌的生物活性密码子优化的重组截短的Ulp1(Leu403-Lys621)(rtUlp1)在大肠杆菌中的制备,仅使用一步与Ni-NTA亲和层析,以及应用rtUlp1裂解SUMO。通过简单地在Tris-HCl缓冲液中混合纯化的rtUlp1,SUMO融合蛋白和DL-二硫苏糖醇来合成融合蛋白。非融合蛋白rtUlp1的最佳表达水平约占总细胞蛋白的50%,通过在18 A摄氏度下以0.4 mM的终浓度添加异丙基β-D1-硫代半乳糖吡喃糖苷在20 A下溶解20%的可溶性形式H。靶蛋白rtUlp1的纯化通过Ni-NTA亲和色谱法进行。在烧瓶发酵中,rtUlp1的最终产量为45 mg / l,纯度最高为95%。此外,采用上述简化方法,rtUlp1的高纯度可以有效裂解SUMO-tT beta RII融合蛋白(SUMO基因与截短的转化生长因子-β受体II型基因融合),并且rtUlp1的比活性达到2.8 x 10(4)U / mg,与商业Ulp1相当。本研究中rtUlp1的制备和应用策略以及常用的实验室资源,将有助于SUMO融合蛋白的裂解,获得天然的N末端靶蛋白,可以在难以表达的蛋白功能分析中实现。

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