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标签化 Dicer 相关解旋酶 1 及其短亚型双链核酸依赖性 ATP 酶活性的纯化和表征。

Purification and Characterization of Double-Stranded Nucleic Acid-Dependent ATPase Activities of Tagged Dicer-Related Helicase 1 and its Short Isoform in .

机构信息

Molecular Genetics Laboratory, Department of Applied Chemistry and Life Science, Toyohashi University of Technology, Toyohashi, Aichi 441-8580, Japan.

出版信息

Genes (Basel). 2020 Jul 1;11(7):734. doi: 10.3390/genes11070734.

Abstract

The Dicer-related helicases (DRHs) are members of a helicase subfamily, and mammalian DRHs such as retinoic acid-inducible gene-I (RIG-I), are involved in antiviral immunity. DRH-1 and DRH-3 play crucial roles in antiviral function and chromosome segregation, respectively. Although intrinsic double-stranded RNA-dependent ATP-hydrolyzing activity has been observed in the recombinant DRH-3 protein prepared from , there are no reports of biochemical studies of the nematode RIG-I homolog DRH-1. In this study, the secondary structure prediction by JPred4 revealed that DRH-1 and DRH-3 had distinct N-terminal regions and that a 200-amino acid N-terminal region of DRH-1 could form a structure very rich in α-helices. We investigated expressions and purifications of a codon-optimized DRH-1 with four different N-terminal tags, identifying poly-histidine (His)-small ubiquitin-like modifier (SUMO) as a suitable tag for DRH-1 preparation. Full-length (isoform a) and a N-terminal truncated (isoform b) of DRH-1 were purified as the His-SUMO-tagged fusion proteins. Finally, the nucleic acid-dependent ATPase activities were investigated for the two His-SUMO-tagged DRH-1 isoforms and His-tagged DRH-3. The tagged DRH-3 exhibited dsRNA-dependent ATPase activity. However, detectable dsRNA dependency of ATPase activities was not found in either isoform of tagged DRH-1 and a tag-free DRH-1 (isoform a) treated with SUMO protease. These observations suggest that DRH-1 and its short isoform have no or poor nucleic acid-dependent ATPase activity, unlike DRH-3 and mammalian DRHs.

摘要

Dicer 相关解旋酶 (DRHs) 是解旋酶亚家族的成员,哺乳动物 DRHs,如视黄酸诱导基因-I (RIG-I),参与抗病毒免疫。DRH-1 和 DRH-3 分别在抗病毒功能和染色体分离中发挥关键作用。虽然已经观察到从 中制备的重组 DRH-3 蛋白具有内在的双链 RNA 依赖性 ATP 水解活性,但尚未有关于线虫 RIG-I 同源物 DRH-1 的生化研究报告。在这项研究中,JPred4 的二级结构预测表明,DRH-1 和 DRH-3 具有明显的 N 端区域,并且 DRH-1 的 200 个氨基酸 N 端区域可以形成一个富含 α-螺旋的结构。我们研究了带有四个不同 N 端标签的密码子优化 DRH-1 的表达和纯化,确定多组氨酸 (His)-小泛素样修饰物 (SUMO) 作为 DRH-1 制备的合适标签。全长 (异构体 a) 和 N 端截断 (异构体 b) 的 DRH-1 被纯化为 His-SUMO 标记的融合蛋白。最后,研究了两种 His-SUMO 标记的 DRH-1 异构体和 His 标记的 DRH-3 的核酸依赖性 ATP 酶活性。标记的 DRH-3 表现出 dsRNA 依赖性 ATP 酶活性。然而,在标记的 DRH-1 的两种异构体 (异构体 a) 和未经 SUMO 蛋白酶处理的无标记 DRH-1 (异构体 a) 中,均未发现或检测到 ATP 酶活性对 dsRNA 的依赖性。这些观察结果表明,DRH-1 和其短异构体与 DRH-3 和哺乳动物 DRHs 不同,没有或几乎没有核酸依赖性 ATP 酶活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/12a8/7397212/97b2116a7f62/genes-11-00734-g001.jpg

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