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首页> 外文期刊>Protein Science: A Publication of the Protein Society >Activity, stability, and structure of metagenome-derived LC11-RNase H1, a homolog of Sulfolobus tokodaii RNase H1
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Activity, stability, and structure of metagenome-derived LC11-RNase H1, a homolog of Sulfolobus tokodaii RNase H1

机译:源于基因组的LC11-RNase H1(Sulfolobus tokodaii RNase H1的同系物)的活性,稳定性和结构

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Metagenome-derived LC11-RNase H1 is a homolog of Sulfolobus tokodaii RNase H1 (Sto-RNase H1). It lacks a C-terminal tail, which is responsible for hyperstabilization of Sto-RNase H1. Sto-RNase H1 is characterized by its ability to cleave not only an RNA/DNA hybrid but also a double-stranded RNA (dsRNA). To examine whether LC11-RNase H1 also exhibits both RNase H and dsRNase activities, LC11-RNase H1 was overproduced in Escherichia coli, purified, and characterized. LC11-RNase H1 exhibited RNase H activity with similar metal ion preference, optimum pH, and cleavage mode of substrate with those of Sto-RNase H1. However, LC11-RNase H1 did not exhibit dsRNase activity at any condition examined. LC11-RNase H1 was less stable than Sto-RNases H1 and its derivative lacking the C-terminal tail (Sto-RNase H1ΔC6) by 37 and 13°C in T m, respectively. To understand the structural bases for these differences, the crystal structure of LC11-RNase H1 was determined at 1.4 ? resolution. The LC11-RNase H1 structure is highly similar to the Sto-RNase H1 structure. However, LC11-RNase H1 has two grooves on protein surface, one containing the active site and the other containing DNA-phosphate binding pocket, while Sto-RNase H1 has one groove containing the active site. In addition, LC11-RNase H1 contains more cavities and buried charged residues than Sto-RNase H1. We propose that LC11-RNase H1 does not exhibit dsRNase activity because dsRNA cannot fit to the two grooves on protein surface and that LC11-RNase H1 is less stable than Sto-RNase H1ΔC6 because of the increase in cavity volume and number of buried charged residues. Published by Wiley-Blackwell.
机译:源自基因组的LC11-RNase H1是Sulfolobus tokodaii RNase H1(Sto-RNase H1)的同源物。它没有C末端尾巴,这是Sto-RNase H1超稳定的原因。 Sto-RNase H1的特点是不仅能够切割RNA / DNA杂交体,而且还能切割双链RNA(dsRNA)。为了检查LC11-RNase H1是否同时具有RNase H和dsRNase活性,LC11-RNase H1在大肠杆菌中过量生产,纯化和鉴定。 LC11-RNase H1的RNase H活性与Sto-RNase H1相似,具有相似的金属离子偏好性,最佳pH值和底物的裂解方式。但是,LC11-RNase H1在任何检查条件下均不显示dsRNase活性。 LC11-RNase H1的稳定性较Sto-RNase H1及其衍生物缺乏C末端尾巴(Sto-RNaseH1ΔC6),在T m分别低37和13°C。为了了解这些差异的结构基础,LC11-RNase H1的晶体结构确定为1.4?解析度。 LC11-RNase H1结构与Sto-RNase H1结构高度相似。但是,LC11-RNase H1在蛋白质表面上有两个凹槽,一个包含活性位点,另一个包含DNA-磷酸结合袋,而Sto-RNase H1则具有一个包含活性位点的凹槽。此外,与Sto-RNase H1相比,LC11-RNase H1包含更多的空腔和掩埋带电残基。我们建议LC11-RNase H1不显示dsRNase活性,因为dsRNA无法适合蛋白质表面上的两个凹槽,并且LC11-RNase H1不如Sto-RNaseH1ΔC6稳定,因为空腔体积和埋入电荷残基的数量增加。由Wiley-Blackwell发布。

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