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Conformational change of the loop L5 in rice kinesin motor domain induced by nucleotide binding

机译:核苷酸结合诱导水稻胰岛型电机结构域环L5的构象变化

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摘要

Loop L5 of kinesin is located near the ATPase site, in common with kinesins of various animal species. The rice plant-specific kinesin K16 also has a corresponding loop that is slightly shorter than that of mouse brain kinesin. The present study was designed to monitor conformational changes in loop L5 during ATP hydrolysis. For this purpose, we introduced one reactive cysteine into the L5 of rice kinesin and modified it with fluorescent probes. The cysteine in L5 was labeled with a fluorescent probe 2(4 '(iodoacetamide) anilino-naphthalene-6-sulufonic acid sodium salt) [IAANS]. IAANS was incorporated into L5 at an almost equimolar ratio in the absence of nucleotides. In contrast, the incorporated amount was reduced to 0.62 and 0.32 mol IAANS/mol motor domain in the presence of ATP and ADP, respectively. Upon nucleotide addition, the fluorescent intensity of IAANS incorporated into L5 was significantly reduced to 63% and 51% for ATP and ADP, respectively. These results suggest that L5 of rice kinesin significantly changes its conformation during ATP hydrolysis.
机译:Kinesin的循环L5位于ATP酶网站附近,与各种动物物种的Kinesins共同。大米植物特异性的Kinesin K16还具有比小鼠脑动素略短的相应环。本研究旨在在ATP水解期间监测环L5的构象变化。为此目的,我们将一个反应性半胱氨酸引入水稻kinesin的L5并用荧光探针进行改性。将L5中的半胱氨酸用荧光探针2(4'(碘乙酰胺)苯硅 - 萘-6-亚磺酸钠盐)标记。在没有核苷酸的情况下,以几乎等摩尔比以几乎等摩尔的比例掺入L5中的IAAN。相反,在ATP和ADP的存在下,掺入量减少至0.62和0.32mol IAANS / Mol Motor结构域。添加到核苷酸后,掺入L5中的IAAn的荧光强度分别显着降低至ATP和ADP的63%和51%。这些结果表明,在ATP水解期间,水稻蛋白的L5显着改变其构象。

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