合成和降解2- 5as和其他2'-5'寡核苷酸的酶分析。

Q2 Biochemistry, Genetics and Molecular Biology
Jesper Buchhave Poulsen, Karina Hansen Kjær, Just Justesen, Pia Møller Martensen
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引用次数: 8

摘要

背景:5'-三磷酸化,2'-5'连接的寡腺苷酸多核糖核苷酸(2- 5a)是干扰素诱导的抗病毒2- 5a系统的核心。2-5As结合并激活RNase L,一种降解病毒和细胞RNA的内啡肽酶,从而抑制病毒复制。2-5A系统受到2-5A的合成和降解的严格控制。虽然合成是由2'-5'低聚腺苷酸合成酶家族介导的,但降解似乎是由多种酶核酸酶介导的,包括磷酸二酯酶12、外核苷酸焦磷酸酶/磷酸二酯酶1和a激酶锚定蛋白7。结果:在这里,我们提出了用于鉴定和表征调节细胞2-5A水平的酶的检测工具。描述了生产2'-5'低聚腺苷酸的过程,然后将其作为底物用于开发和演示分别测量合成酶和核酸酶活性的酶测定。合成酶分析只产生一个单一的反应产物,允许对酶进行非常精确的动力学评估。我们提出了一种使用dATP和A(pA)3四聚体核心作为底物的实验,这需要事先分离A(pA)3。还提出了一种合成酶试验,使用dNTPs单独与NAD(+)作为底物。核酸酶反应利用分离的2'-5'低聚腺苷酸产生较短反应产物的混合物,这些反应产物通过离子交换色谱法分解以确定酶的活性。纯化的人2'-5'低聚腺苷酸合成酶和纯化的人磷酸二酯酶12,以及表达这些蛋白质的粗提取物,用于验证检测。结论:本文包含一个检测工具箱,用于鉴定和表征调节细胞2-5A水平的合成酶和核酸酶。提出了两种酶家族的测定方法。基于这些蛋白质固有的多底物特异性,这些检测也可用于解决OAS酶的更广泛的细胞作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enzyme assays for synthesis and degradation of 2-5As and other 2'-5' oligonucleotides.

Enzyme assays for synthesis and degradation of 2-5As and other 2'-5' oligonucleotides.

Enzyme assays for synthesis and degradation of 2-5As and other 2'-5' oligonucleotides.

Enzyme assays for synthesis and degradation of 2-5As and other 2'-5' oligonucleotides.

Background: The 5'-triphosphorylated, 2'-5'-linked oligoadenylate polyribonucleotides (2-5As) are central to the interferon-induced antiviral 2-5A system. The 2-5As bind and activate the RNase L, an endoRNase degrading viral and cellular RNA leading to inhibition of viral replication. The 2-5A system is tightly controlled by synthesis and degradation of 2-5As. Whereas synthesis is mediated by the 2'-5' oligoadenylate synthetase family of enzymes, degradation seems to be orchestrated by multiple enzyme nucleases including phosphodiesterase 12, the ectonucleotide pyrophosphatase/phosphodiesterase 1 and the A-kinase anchoring protein 7.

Results: Here we present assay tools for identification and characterization of the enzymes regulating cellular 2-5A levels. A procedure is described for the production of 2'-5' oligoadenylates, which are then used as substrates for development and demonstration of enzyme assays measuring synthetase and nuclease activities, respectively. The synthetase assays produce only a single reaction product allowing for very precise kinetic assessment of the enzymes. We present an assay using dATP and the A(pA)3 tetramer core as substrates, which requires prior isolation of A(pA)3. A synthetase assay using either of the dNTPs individually together with NAD(+) as substrates is also presented. The nuclease reactions make use of the isolated 2'-5' oligoadenylates in producing a mixture of shorter reaction products, which are resolved by ion-exchange chromatography to determine the enzyme activities. A purified human 2'-5' oligoadenylate synthetase and a purified human phosphodiesterase 12 along with crude extracts expressing those proteins, are used to demonstrate the assays.

Conclusions: This paper comprises an assay toolbox for identification and characterization of the synthetases and nucleases regulating cellular 2-5A levels. Assays are presented for both enzyme families. The assays can also be used to address a broader cellular role of the OAS enzymes, based on the multiple substrate specificity intrinsic to these proteins.

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来源期刊
BMC Biochemistry
BMC Biochemistry BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
4.80
自引率
0.00%
发文量
0
审稿时长
3 months
期刊介绍: BMC Biochemistry is an open access journal publishing original peer-reviewed research articles in all aspects of biochemical processes, including the structure, function and dynamics of metabolic pathways, supramolecular complexes, enzymes, proteins, nucleic acids and small molecular components of organelles, cells and tissues. BMC Biochemistry (ISSN 1471-2091) is indexed/tracked/covered by PubMed, MEDLINE, BIOSIS, CAS, EMBASE, Scopus, Zoological Record, Thomson Reuters (ISI) and Google Scholar.
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