棉花GhKCH2是一种植物特异性的激酶,与微管的结合是低亲和的,不依赖于核苷酸。

Tao Xu, Xuewei Sun, Shiling Jiang, Dongtao Ren, Guoqin Liu
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引用次数: 16

摘要

运动蛋白是一种atp驱动的微管运动蛋白,在控制微管动力学、细胞内运输、细胞分裂和信号转导中起重要作用。驱动蛋白超家族由许多成员组成,分为14个亚家族。动物动力蛋白已被很好地表征。相比之下,植物动力蛋白尚未得到充分的表征。本文从棉花纤维中克隆了一种新的植物特异性运动蛋白基因GhKCH2,并通过原核表达、亲和纯化、atp酶活性测定和微管结合分析对其进行了生化鉴定。GhKCH2 M396-734对应氨基酸Q396-N734的假定运动结构域与6xHis-tag融合,在大肠杆菌中可溶表达并大量亲和纯化。生化分析表明,M396-734的基础atp酶活性不受Ca2+的激活,而是受到微管的30倍最大刺激。酶的激活是微管浓度依赖性的,与半最大激活相对应的微管浓度约为11微米,远高于其他报道的激酶。共沉淀实验表明,无论核苷酸AMP-PNP是否存在,M396-734都能在体外与微管结合。棉花GhKCH2作为一种植物特异性的微管依赖性激酶,具有较低的微管亲和力和不依赖于核苷酸的微管结合能力,可能参与了纤维素微原纤维在纤维中的沉积或细胞壁形成过程中的微管功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cotton GhKCH2, a plant-specific kinesin, is low-affinitive and nucleotide-independent as binding to microtubule.

Kinesin is an ATP-driven microtubule motor protein that plays important roles in control of microtubule dynamics, intracellular transport, cell division and signal transduction. The kinesin superfamily is composed of numerous members that are classified into 14 subfamilies. Animal kinesins have been well characterized. In contrast, plant kinesins have not yet to be characterized adequately. Here, a novel plant-specific kinesin gene, GhKCH2, has been cloned from cotton (Gossypium hirsutum) fibers and biochemically identified by prokaryotic expression, affinity purification, ATPase activity assay and microtubule-binding analysis. The putative motor domain of GhKCH2, M396-734 corresponding to amino acids Q396-N734 was fused with 6xHis-tag, soluble-expressed in E. coli and affinity-purified in a large amount. The biochemical analysis demonstrated that the basal ATPase activity of M396-734 is not activated by Ca2+, but stimulated 30-fold max by microtubules. The enzymatic activation is microtubule-concentration-dependent, and the concentration of microtubules that corresponds to half-maximum activation was about 11 microM, much higher than that of other kinesins reported. The cosedimentation assay indicated that M396-734 could bind to microtubules in vitro whenever the nucleotide AMP-PNP is present or absent. As a plant-specific microtubule-dependent kinesin with a lower microtubule-affinity and a nucleotide-independent microtubule-binding ability, cotton GhKCH2 might be involved in the function of microtubules during the deposition of cellulose microfibrils in fibers or the formation of cell wall.

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