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首页> 外文期刊>Protein Expression and Purification >Cloning, overexpression, and purification of a gene of unknown function of prophage loci from 'Candidatus Liberibacter asiaticus,' the destructive bacterial pathogen of huanglongbing disease in citrus plants
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Cloning, overexpression, and purification of a gene of unknown function of prophage loci from 'Candidatus Liberibacter asiaticus,' the destructive bacterial pathogen of huanglongbing disease in citrus plants

机译:从“Candidatus Libibactersisiaticus”,柑橘植物中黄龙疾病破坏性细菌病原体未知功能的克隆,过度表达和纯化。

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Citrus Huanglongbing (HLB) or citrus greening is one of the most destructive diseases affecting citrus industry worldwide. The causal agent in Asia is a phloem-limited, Gram-negative bacterium, 'Candidates Liberibacter asiaticus' (CLas). Within the genome of CLas lies prophage regions, classified as Type-A, B, C, and D. In particular, Type-D has been indicated to correlate with the blotchy-mottle symptoms of citrus trees. Here we reported the cloning, overexpression, and purification of the ORF1, an open reading frame from the partial Type-D region of CLas obtained from an infected lime tree (Citrus aurantifolia Swingle). Overexpression of the ORF1 was toxic to the E. coli BL21(DE3), and the transient expression of ORF1 in Arabidopsis seedlings by Agrobacterium-mediated transformation exhibited rapid and total chlorosis of the seedlings within two days post-transformation. The native-PAGE of the purified protein showed multiple bands, indicative of various conformations in solution. The ESI-TOF mass spectrum confirmed the molecular weight of the purified ORF1 to be 15,364.3150 Da, corresponding to the [M + 1](+) of the ORF1 without an N-terminal methionine. The protein predominantly consisted of a-helix as evidenced by circular dichroism (CD), and the transition toward random coil structure upon heating was reversible. The template-based modeling (I-TASSER) of the ORF1 indicated eight a-helices connected through variable loops. The simulated CD spectrum, generated from the atomic coordinates of the I-TASSER model, was notably similar to the experimental spectrum. Our report offers the basis for understanding the contributions of genes within Type-D prophage region toward the disease pathogenicity of citrus HLB.
机译:柑橘黄龙兵(HLB)或柑橘绿化是影响全世界柑橘行业的最具破坏性疾病之一。亚洲的因果因子是韧皮肽有限的革兰阴性细菌,“候选者无情的Asiaticus”(Clas)。在Clas的基因组内,呈现出版物区域,分类为A型,B,C和D.特别地,已表明D型与柑橘树的斑块斑块症状相关。在这里,我们报道了ORF1的克隆,过度表达和纯化,从受感染的石灰树(Citrus Aurantifolia Swingle)获得的CLA的部分类型D区的开放阅读框架。 ORF1的过度表达对大肠杆菌BL21(DE3)有毒,并且通过农杆菌介导的转化的拟南芥幼苗血液表达的瞬时表达在转化后两天内表现出幼苗的快速和总萎缩。纯化蛋白质的天然页面显示多条带,指示溶液中的各种构象。 ESI-TOF质谱证实纯化的ORF1的分子量为15,364.3150Da,对应于ORF1的[M + 1](+)而没有N-末端甲硫氨酸。主要由A螺旋组成的蛋白质,如圆形二色性(CD)所证明的,并且在加热时向随机线圈结构的过渡是可逆的。 ORF1的基于模板的建模(I-Tasser)指示通过可变环路连接的八个A-Helces。从I-Tasser模型的原子坐标产生的模拟CD光谱非常类似于实验谱。我们的报告提供了理解D型Prophage地区基因的贡献,朝向柑橘HLB疾病致病性的基础。

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