首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Isolation, Characterization, and Structure Analysis of a Vacuolar Processing Enzyme Gene (MhVPEγ) from Malus hupehensis (Pamp) Rehd
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Isolation, Characterization, and Structure Analysis of a Vacuolar Processing Enzyme Gene (MhVPEγ) from Malus hupehensis (Pamp) Rehd

机译:平邑甜茶(Hampehensis(Pamp)Rehd)液泡加工酶基因(MhVPEγ)的分离,鉴定和结构分析

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摘要

Vacuolar processing enzymes (VPEs) have received considerable attention recently, as they exhibit caspase-1-like cleavage activity and regulate the process of PCD. However, knowledge about their detailed characteristics and structures is relatively limited. In this study, a gamma vacuolar processing enzyme gene, MhVPEγ, has been isolated from the leaves of Malus hupehensis (Ramp) Rehd. var pinyiensis Jiang. MhVPEγ coded-translated protein sequence comprised of 494 amino acids with a signal peptide and a transmembrane helix structure at N-terminal, peptidase_C13 domain, and vacuolar sorting signal at C-terminal. Consequently, genomic walking approach was performed for the isolation of its upstream sequence. Computational analysis demonstrated several motifs of the promoter exhibiting hypothetic MeJA, ABA, and light-induced characteristics, as well as some typical domains universally discovered in promoter, such as TATA-box and CAAT-box. MhVPEγ transcript level was enhanced during wounding treatment, and WUN-motif, as one of the cis-acting regulatory elements existing in the upstream sequence perhaps regulates its expression. In silico-constructed 3D models revealed that MhCPYL successively interacts with MhVPEγ like that of "Induced Fit-Lock and Key" model, providing molecular conformation evidence that CPYis a direct substrate of VPEγ. This study is the first stride to understand the molecular mechanism of VPEγ and CPYL interactions.
机译:液泡加工酶(VPE)最近受到了相当大的关注,因为它们显示出caspase-1样的裂解活性并调节PCD的过程。但是,有关其详细特征和结构的知识相对有限。在这项研究中,已经从平邑甜茶(Malus hupehensis(Ramp)Rehd)的叶片中分离出了γ液泡加工酶基因MhVPEγ。变品江MhVPEγ编码的翻译蛋白质序列,由494个氨基酸组成,在N端具有信号肽和跨膜螺旋结构,peptidase_C13结构域,在C端具有液泡分类信号。因此,进行了基因组步行方法以分离其上游序列。计算分析表明启动子的几个基元表现出假想的MeJA,ABA和光诱导特性,以及启动子中普遍发现的一些典型结构域,例如TATA-box和CAAT-box。在伤口处理过程中,MhVPEγ转录水平得到了提高,而WUN-motif作为上游序列中存在的顺式作用调节元件之一,可能调节了其表达。在计算机模拟的3D模型中显示,MhCPYL与MhVPEγ连续相互作用,就像“诱导的Fit-Lock and Key”模型一样,提供了分子构象证据,表明CPY是VPEγ的直接底物。这项研究是了解VPEγ和CPYL相互作用的分子机理的第一步。

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