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Biochemical characterization of recombinant Avihepatovirus 3C protease and its localization

机译:重组猪肝病毒3C蛋白酶的生化特性及其定位

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The picornaviral 3C protease mediates viral polyprotein maturation and multiple cleavages of host proteins to modulate viral translation and transcription. The 3C protease has been regarded as a valid target due to its structural similarity among different picornaviruses and minimal sequence similarity with host proteins; therefore, the development of potent inhibitors against the 3C protease as an antiviral drug is ongoing. Duck hepatitis A virus (DHAV) belongs to the Picornavidea family and is a major threat to the poultry industry. To date, little is known about the roles of the DHAV 3C protease plays during infection. In this study, we compared the full-length DHAV 3C protein sequence with other 3C sequences to obtain an alignment for the construction of a phylogenetic tree. Then, we expressed and purified recombinant DHAV 3C protease in the BL21 expression system using nickel-NTA affinity chromatography. The optimization of the cleavage assay conditions and the kinetic analysis for DHAV 3C protease were done by in vitro cleavage assays with a fluorogenic peptide respectively. The inhibitory activity of rupintrivir against the DHAV 3C protease was further evaluated. The localization of the 3C protease in infected and transfected cells was determined using immunofluorescence and confocal microscopy. Under different expression conditions, the 3C protease was found to be highly expressed after induction with 1?mM IPTG at 16?°C for 10?h. We synthesized a fluorogenic peptide derived from the cleavage site of the DHAV polyprotein and evaluated the protease activity of the DHAV 3C protease for the first time. We used fluorimetric based kinetic analysis to determine kinetic parameters, and Vmax and Km values were determined to be 16.52?nmol/min and 50.78?μM, respectively. Rupintrivir was found to exhibit inhibitory activity against the DHAV 3C protease. Using polyclonal antibody and an indirect immunofluorescence microscopy assay (IFA), it was determined that the DHAV 3C protease was found in the nucleus during infection. In addition, the DHAV 3C protease can enter into the nucleus without the cooperation of viral proteins. This is the first study to examine the activity of the DHAV 3C protease, and the activity of the DHAV 3C protease is temperature-, pH- and NaCl concentration- dependent. The DHAV 3C protease localizes throughout DHAV-infected cells and can enter into the nucleus in the absence of other viral proteins. The kinetic analysis was calculated, and the Vmax and Km values were 16.52?nmol/min and 50.78?μM, respectively, using the Lineweaver–Burk plot.
机译:微小病毒3C蛋白酶介导病毒多蛋白成熟和宿主蛋白的多次切割,以调节病毒的翻译和转录。 3C蛋白酶因其在不同小核糖核酸病毒之间的结构相似性以及与宿主蛋白的最小序列相似性而被视为有效靶标。因此,正在进行抗3C蛋白酶的有效抑制剂作为抗病毒药的开发。鸭甲型肝炎病毒(DHAV)属于Picornavidea家族,是对家禽业的重大威胁。迄今为止,关于DHAV 3C蛋白酶在感染过程中所起的作用知之甚少。在这项研究中,我们比较了全长DHAV 3C蛋白序列与其他3C序列,以获得用于构建系统树的序列。然后,我们使用镍-NTA亲和色谱法在BL21表达系统中表达和纯化了重组DHAV 3C蛋白酶。 DHAV 3C蛋白酶的裂解试验条件的优化和动力学分析分别通过使用荧光肽的体外裂解试验进行。进一步评估了鲁比三韦对DHAV 3C蛋白酶的抑制活性。使用免疫荧光和共聚焦显微镜确定3C蛋白酶在感染和转染细胞中的定位。在不同的表达条件下,发现3C蛋白酶在16?C下用1?mM IPTG诱导10?h后高度表达。我们合成了衍生自DHAV多蛋白切割位点的荧光肽,并首次评估了DHAV 3C蛋白酶的蛋白酶活性。我们使用基于荧光的动力学分析来确定动力学参数,确定的Vmax和Km值分别为16.52?nmol / min和50.78?μM。发现Rupintrivir对DHAV 3C蛋白酶表现出抑制活性。使用多克隆抗体和间接免疫荧光显微镜分析(IFA),确定在感染过程中在细胞核中发现了DHAV 3C蛋白酶。另外,DHAV 3C蛋白酶无需病毒蛋白的配合即可进入细胞核。这是第一个研究DHAV 3C蛋白酶活性的研究,并且DHAV 3C蛋白酶的活性取决于温度,pH和NaCl浓度。 DHAV 3C蛋白酶遍布DHAV感染的整个细胞,并且在没有其他病毒蛋白的情况下可以进入细胞核。计算了动力学分析,使用Lineweaver–Burk图,Vmax和Km值分别为16.52?nmol / min和50.78?μM。

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