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Computational Prediction of acyl-coA Binding Proteins Structure in Brassica napus

机译:甘蓝型油菜中酰基辅酶A结合蛋白结构的计算预测

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摘要

Acyl-coA binding proteins could transport acyl-coA esters from plastid to endoplasmic reticulum, prior to fatty acid biosynthesis, leading to the formation of triacylglycerol. The structure and the subcellular localization of acyl-coA binding proteins (ACBP) in Brassica napus were computationally predicted in this study. Earlier, the structure analysis of ACBPs was limited to the small ACBPs, the current study focused on all four classes of ACBPs. Physicochemical parameters including the size and the length, the intron-exon structure, the isoelectric point, the hydrophobicity, and the amino acid composition were studied. Furthermore, identification of conserved residues and conserved domains were carried out. Secondary structure and tertiary structure of ACBPs were also studied. Finally, subcellular localization of ACBPs was predicted. The findings indicated that the physicochemical parameters and subcellular localizations of ACBPs in Brassica napus were identical to Arabidopsis thaliana. Conserved domain analysis indicated that ACBPs contain two or three kelch domains that belong to different families. Identical residues in acyl-coA binding domains corresponded to eight amino acid residues in all ACBPs of B. napus. However, conserved residues of common ACBPs in all species of animal, plant, bacteria and fungi were only inclusive in small ACBPs. Alpha-helixes were displayed and conserved in all the acyl-coA binding domains, representing almost the half of the protein structure. The findings confirm high similarities in ACBPs between A. thaliana and B. napus, they might share the same functions but loss or gain might be possible.
机译:酰基-coA结合蛋白可以在脂肪酸生物合成之前将酰基-coA酯从质体转运到内质网,导致三酰基甘油的形成。通过计算预测了甘蓝型油菜中酰基辅酶A结合蛋白(ACBP)的结构和亚细胞定位。早先,ACBP的结构分析仅限于小型ACBP,当前的研究集中在所有四类ACBP上。研究了物理化学参数,包括大小和长度,内含子外显子结构,等电点,疏水性和氨基酸组成。此外,进行了保守残基和保守域的鉴定。还研究了ACBP的二级结构和三级结构。最后,预测了ACBPs的亚细胞定位。结果表明,甘蓝型油菜中ACBP的理化参数和亚细胞定位与拟南芥相同。保守域分析表明,ACBP包含两个或三个属于不同家族的海藻域。酰基辅酶A结合域中的相同残基对应于甘蓝型油菜的所有ACBP中的八个氨基酸残基。但是,所有动物,植物,细菌和真菌中常见ACBP的保守残基仅包括在小型ACBP中。在所有酰基-coA结合结构域中展示并保守了α-螺旋,几乎代表了蛋白质结构的一半。这些发现证实了拟南芥和甘蓝型油菜的ACBP具有高度相似性,它们可能具有相同的功能,但损失或收获都是可能的。

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