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粗糙脉孢菌驱动蛋白的生物物理和运动特性表征

Characterization of the biophysical and motility properties of kinesin from the fungus Neurospora crassa.

作者信息

Steinberg G, Schliwa M

机构信息

Institute for Cell Biology, Munich, Federal Republic of Germany.

出版信息

J Biol Chem. 1996 Mar 29;271(13):7516-21. doi: 10.1074/jbc.271.13.7516.

Abstract

Neurospora kinesin (Nkin) is a distant relative of the family of conventional kinesins, members of which have been identified in various animal species. As in its animal counterparts, Nkin most likely is an organelle motor. Because it is a functional homologue of the kinesin heavy chain of higher eukaryotes, its biophysical and motility properties were compared with those of other conventional kinesins. Purified Nkin behaves as a homodimeric complex composed of two subunits of a 105-kDa polypeptide. Based on its hydrodynamic properties (Stokes radius and sedimentation coefficient), Nkin is an elongated molecule, although it is more compact than its animal counterparts. A detailed comparison of the motility properties of Nkin with those of animal conventional kinesins reveals similarities and some intriguing differences. Nkin is less effective than other kinesins in the use of natural nucleoside triphosphates but responds to a selection of ATP analogues in a similar fashion as mammalian kinesin. Even in the presence of saturating concentrations of ATP, Nkin is significantly more sensitive to ADP or tripolyphosphate than other kinesins. Both the ATP-driven microtubule gliding activity and the microtubule-stimulated ATPase activity of Nkin obey Michaelis-Menten kinetics. Surprisingly, however, the Km values for both these activities are approximately an order of magnitude higher than those of other kinesins. Whether the low affinity for ATP suggested by these high Km values is related to the high rate of motility remains to be determined.

摘要

粗糙脉孢菌驱动蛋白(Nkin)是传统驱动蛋白家族的远亲,该家族成员已在多种动物物种中得到鉴定。与动物中的对应物一样,Nkin很可能是一种细胞器马达蛋白。由于它是高等真核生物驱动蛋白重链的功能同源物,因此将其生物物理和运动特性与其他传统驱动蛋白进行了比较。纯化后的Nkin表现为一种同二聚体复合物,由两个105 kDa多肽亚基组成。根据其流体动力学特性(斯托克斯半径和沉降系数),Nkin是一种细长分子,尽管它比动物中的对应物更为紧凑。对Nkin与动物传统驱动蛋白的运动特性进行详细比较,揭示了它们的相似之处和一些有趣的差异。在使用天然核苷三磷酸时,Nkin的效率低于其他驱动蛋白,但对一系列ATP类似物的反应方式与哺乳动物驱动蛋白相似。即使在ATP浓度饱和的情况下,Nkin对ADP或三聚磷酸的敏感性也明显高于其他驱动蛋白。Nkin的ATP驱动的微管滑动活性和微管刺激的ATP酶活性均符合米氏动力学。然而,令人惊讶的是,这两种活性的Km值比其他驱动蛋白大约高一个数量级。这些高Km值所表明的对ATP的低亲和力是否与高运动速率有关,仍有待确定。

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