首页> 外文期刊>The Journal of Biochemistry >Biochemical characterization of the novel rice kinesin K23 and its kinetic study using fluorescence resonance energy transfer between an intrinsic tryptophan residue and a fluorescent ATP analogue.
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Biochemical characterization of the novel rice kinesin K23 and its kinetic study using fluorescence resonance energy transfer between an intrinsic tryptophan residue and a fluorescent ATP analogue.

机译:新型水稻驱动蛋白K23的生化表征及其动力学研究,使用固有色氨酸残基与荧光ATP类似物之间的荧光共振能量转移。

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摘要

We previously demonstrated that the rice kinesin K16, which belongs to the kinesin-7 subfamily, has unique enzymatic properties and atomic structure within key functional regions. In this study, we focused on a novel rice plant kinesin, K23, which also belongs to the kinesin-7 subfamily. The biochemical characterization of the K23 motor domain (K23MD) was studied and compared with the rice kinesin K16 and other related kinesins. K23 exhibits approximately 45-fold (1.3 Pi mol(-1) site mol(-1) s(-1)) lower microtubule-dependent ATPase activity than conventional kinesins, whereas its affinity for microtubules is comparable with conventional kinesins. MgADP-free K23 is unstable compared with the unusually stable MgADP-free K16MD. The enzymatic properties of K23MD are somewhat different from those of K16. We used a fluorescent ATP analogue 2'(3')-O-(N'-methylanthraniloyl)-ATP (mant-ATP) for the kinetic characterization of K23. The fluorescence of mant-ATP was not significantly altered during its hydrolysis by K23. However, significant fluorescence resonance energy transfer (FRET) between mant-ATP and W21 in the motor domain was observed. The kinetic study using FRET revealed that K23 has unique kinetic characteristics when compared with other kinesins.
机译:先前我们证明,属于驱动蛋白7亚家族的水稻驱动蛋白K16在关键功能区内具有独特的酶学性质和原子结构。在这项研究中,我们专注于一种新型水稻植物驱动蛋白K23,它也属于驱动蛋白7亚家族。研究了K23运动域(K23MD)的生化特性,并将其与水稻驱动蛋白K16和其他相关驱动蛋白进行了比较。 K23表现出约45倍(1.3 Pi mol(-1)站点mol(-1)s(-1))低于传统驱动蛋白的微管依赖性ATPase活性,而其对微管的亲和力可与常规驱动蛋白相媲美。与异常稳定的无MgADP的K16MD相比,无MgADP的K23不稳定。 K23MD的酶学性质与K16有所不同。我们使用荧光ATP类似物2'(3')-O-(N'-甲基蒽基)-ATP(mant-ATP)进行K23的动力学表征。 mant-ATP的荧光在被K23水解的过程中没有显着改变。但是,在运动域中,在mant-ATP和W21之间观察到了显着的荧光共振能量转移(FRET)。使用FRET进行的动力学研究表明,与其他驱动蛋白相比,K23具有独特的动力学特性。

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