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首页> 外文期刊>ACS Omega >Effect of the His-Tag Location on Decapping Scavenger Enzymes and Their Hydrolytic Activity toward Cap Analogs
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Effect of the His-Tag Location on Decapping Scavenger Enzymes and Their Hydrolytic Activity toward Cap Analogs

机译:HIS-TAG位置在卷取清除剂酶及其对帽类似物的水解活性的影响

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Decapping scavenger enzymes (DcpSs) are important players in mRNA degradation machinery and conserved in eukaryotes. Importantly, human DcpS is the recognized target for spinal muscular atrophy (SMA) and acute myeloid leukemia (AML) therapy, and has recently been connected to development of intellectual disability. Most recombinant DcpSs used in biochemical and biophysical studies are prepared as tagged proteins, with polyhistidine (His-tag) at the N-terminus or C-terminus. Our work is the first report on the parallel characterization of three versions of DcpSs (native and N- or C-terminally tagged) of three species (humans, Caenorhabditis elegans , and Ascaris suum ). The native forms of all three enzymes were prepared by N-(His)_(10) tag cleavage. Protein thermal stability, measured by differential scanning fluorimetry (DSF), was unaffected in the case of native and tagged versions of human and A. suum DcpS; however, the melting temperature (T _(m)) of C. elagans DcpS of was significantly influenced by the presence of the additional N- or C-tag. To investigate the impact of the tag positioning on the catalytic properties of DcpS, we tested the hydrolytic activity of native DcpS and their His-tagged counterparts toward cap dinucleotides (m~(7)GpppG and m_(3)~(2,2,7)GpppG) and m~(7)GDP. The kinetic data indicate that dinucleotide substrates are hydrolyzed with comparable efficiency by native human and A. suum DcpS and their His-tagged forms. In contrast, both His-tagged C. elegans DcpSs exhibited higher activity toward m~(7)GpppG than the native enzyme. m~(7)GDP is resistant to enzymatic cleavage by all three forms of human and nematode DcpS.
机译:卷积清除剂(DCPS)是MRNA降解机械中的重要参与者,在真核生物中保守。重要的是,人类DCP是脊柱肌肉萎缩(SMA)和急性髓性白血病(AML)治疗的公认靶标,并最近与智力障碍的发展有关。生物化学和生物物理研究中使用的大多数重组DCPS在标记的蛋白质中制备,在N-末端或C-末端具有多亚氨基(HIS-TAG)。我们的作品是关于三种类型的三种DCPS(本机和N-或C末端标记)的并联表征的第一个报告(人, Caenorhabditis elegans 和 ascaris sum)。通过N-(HIS)_(10)标签切割制备所有三种酶的本地形式。通过差示扫描荧光测量(DSF)测量的蛋白质热稳定性在天然和标记版本的人和 a的情况下不受影响。 Suum DCPS;但是, C的熔化温度( t_(m))。 ELAGANS DCPS受到额外的N-或C标签的存在显着影响。为了探讨标签定位对DCPS催化性质的影响,我们测试了天然DCP的水解活性及其朝向二核苷酸的其标记对应物(M〜(7)Gpppg和M_(3)〜(2,2, 7)GPPPG)和M〜(7)GDP。动力学数据表明,二核苷酸底物通过天然人和 a以可比的效率水解。 Suum DCP和他们标记的形式。相比之下,他标记的 c。 elegans dcpss对m〜(7)Gpppg的活动表现出比本土酶更高。 M〜(7)GDP通过所有三种形式的人和线虫DCPS抵抗酶促切割。

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