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Molecular cloning and characterization of caspase-3 in large yellow croaker (Pseudosciaena crocea)

机译:大黄鱼(Cseudosciaena crocea)中caspase-3的分子克隆和鉴定

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Caspases-3, a member of the cysteine-aspartic acid protease (caspase) family, plays critical roles in the execution of apoptotic pathway. In this study, a caspase-3 homologue was cloned and characterized from large yellow croaker (Pseudosciaena crocea). The full-length cDNA of large yellow croaker caspase-3 (Lyccasp3) is 2222bp with an open reading frame of 858bp encoding a polypeptide of 285 amino acids (aa). Lyccasp3 exhibited a conserved caspase-3 architecture including a prodomain, a large subunit and a small subunit. Moreover, several residues known to be critical in the caspase-3 catalytic centre and binding pocket, as well as the active-site pentapeptide motif Q172ACRG176 were present in the deduced Lyccasp3. Recombinant Lyccasp3 (rLyccasp3) produced in Escherichia coli exhibited obvious hydrolyzing activity against synthetic peptide substrate Ac-DEVD-pNA. The Lyccasp3 was constitutively expressed in all the tissues examined, although the expression levels varied from tissue to tissue. Real-time PCR analysis revealed that Lyccasp3 transcript in spleen and kidney was quickly increased after stimulation with either poly (I:C) or inactivated trivalent bacterial vaccine. Enzyme activities of Lyccasp3 were also up-regulated in these two tissues post-stimulation when analyzed by hydrolyzing activity assay. Since the activity of large yellow croaker caspase-9 (Lyccasp9) in the spleen and kidney also increased when the fish was stimulated with the poly(I:C) or bacterial vaccine , we therefore proposed that the intrinsic apoptotic pathway, which is initiated by caspase-9 and executed by caspase-3, was activated during the immune response induced by poly(I:C) or bacterial vaccine in large yellow croaker.
机译:Caspases-3是半胱氨酸天冬氨酸蛋白酶(caspase)家族的成员,在凋亡途径的执行中起关键作用。在这项研究中,从大黄鱼(Pseudosciaena crocea)克隆了caspase-3同源物并进行了鉴定。大黄鱼caspase-3(Lyccasp3)的全长cDNA为2222bp,开放阅读框为858bp,编码285个氨基酸(aa)的多肽。 Lyccasp3展示了一个保守的caspase-3结构,包括一个前结构域,一个大亚基和一个小亚基。此外,推导的Lyccasp3中存在一些在caspase-3催化中心和结合口袋中至关重要的残基,以及活性位点的五肽基序Q172ACRG176。在大肠杆菌中产生的重组Lyccasp3(rLyccasp3)对合成肽底物Ac-DEVD-pNA具有明显的水解活性。 Lyccasp3在所有检查的组织中组成性表达,尽管表达水平因组织而异。实时PCR分析显示,用聚(I:C)或灭活的三价细菌疫苗刺激后,脾脏和肾脏中的Lyccasp3转录物迅速增加。当通过水解活性测定法分析时,在刺激后的这两个组织中,Lyccasp3的酶活性也被上调。由于用poly(I:C)或细菌疫苗刺激鱼时,脾脏和肾脏中的大黄鱼半胱天冬酶9(Lyccasp9)的活性也增加,因此我们提出内在的凋亡途径是由在大黄鱼中,由聚(I:C)或细菌疫苗诱导的免疫应答过程中激活了由caspase-3执行的caspase-9。

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