均聚物底物系统中dna结合蛋白对末端脱氧核苷酸转移酶活性的影响

IF 1 4区 生物学 Q4 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
A. B. Sachanka, V. V. Shchur, S. A. Usanov, A. V. Yantsevich
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引用次数: 0

摘要

本研究通过大肠杆菌单链结合蛋白(EcSSB)和葡萄球菌dna结合蛋白(Sso7d)对无法形成双螺旋结构的均聚物底物(Tn)的TdT活性的影响进行了研究。我们发现,即使从均聚物底物的例子中,加入EcSSB后,TdT活性也显著增加。结果表明DNA结合蛋白在TdT工程和DNA打印中的应用前景广阔。在反应混合物中加入EcSSB导致TdT活性显著增加,反应产物向较长的寡核苷酸转移。在Mn2+离子存在的情况下,在接近等摩尔的化学计量比(EcSSB)4:TdT下观察到最大的效应。此外,反应混合物中Sso7d的存在导致底物T5和T15的TdT活性轻微(高达15%)下降,而T35的TdT活性下降更为明显(高达30%)。同时,Co2+阳离子降低了Sso7d的抑制作用。通过我们的研究建立的模式和关系在各个领域都有潜在的应用前景。具体来说,它们可以用于蛋白质工程,以开发基于TdT的融合蛋白。此外,这些发现可以促进新的酶的原则,以从头DNA合成的进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Effect of DNA-binding Proteins on Terminal Deoxynucleotidyl Transferase Activity in Systems with Homopolymer Substrates

Effect of DNA-binding Proteins on Terminal Deoxynucleotidyl Transferase Activity in Systems with Homopolymer Substrates

In the current work, single strand binding protein from E. coli (EcSSB) and DNA-binding protein from S. solfataricus (Sso7d) were tested to evaluate the effects on TdT activity for homopolymer substrates (Tn) that are unable to form double helix structures. We showed a significant increase in TdT activity after the addition of EcSSB even from the example of homopolymer substrates. The effects demonstrated open application of DNA binding proteins in TdT engineering and DNA-printing. The addition of EcSSB to the reaction mixture led to a significant increase in TdT activity and a shift in the reaction products towards longer oligonucleotides. The maximum effect was observed in a close-to-equimolar stoichiometric ratio (EcSSB)4:TdT in the presence of Mn2+ cations. In addition, the presence of Sso7d in the reaction mixture led to a slight (up to 15%) decrease in TdT activity for substrates T5 and T15 and a more pronounced decrease for T35 (up to 30%). At the same time, Co2+ cations reduced the inhibitory effect of Sso7d.The patterns and relationships established through our research have potential applications in various fields. Specifically, they can be utilized in protein engineering for the development of fusion proteins that are based on TdT. Furthermore, these findings can contribute to the advancement of novel enzymatic principles for de novo DNA synthesis.

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来源期刊
Applied Biochemistry and Microbiology
Applied Biochemistry and Microbiology 生物-生物工程与应用微生物
CiteScore
1.70
自引率
12.50%
发文量
75
审稿时长
6-12 weeks
期刊介绍: Applied Biochemistry and Microbiology is an international peer reviewed journal that publishes original articles on biochemistry and microbiology that have or may have practical applications. The studies include: enzymes and mechanisms of enzymatic reactions, biosynthesis of low and high molecular physiologically active compounds; the studies of their structure and properties; biogenesis and pathways of their regulation; metabolism of producers of biologically active compounds, biocatalysis in organic synthesis, applied genetics of microorganisms, applied enzymology; protein and metabolic engineering, biochemical bases of phytoimmunity, applied aspects of biochemical and immunochemical analysis; biodegradation of xenobiotics; biosensors; biomedical research (without clinical studies). Along with experimental works, the journal publishes descriptions of novel research techniques and reviews on selected topics.
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