Hisanaga S, Murofushi H, Okuhara K, Sato R, Masuda Y, Sakai H, Hirokawa N
Department of Anatomy and Cell Biology, Faculty of Medicine, University of Tokyo, Japan.
Cell Motil Cytoskeleton. 1989;12(4):264-72. doi: 10.1002/cm.970120407.
The molecular structure of bovine adrenal kinesin was studied by electron microscopy using the low-angle rotary shadowing technique. Adrenal kinesin exhibited either a folded or an extended configuration; the ratio of the two is dependent on the salt concentration. Almost all adrenal kinesin molecules were folded in a low-ionic solution, and the ratio of extended molecules increased to 40-50% in a solution containing 1 M ammonium acetate. Kinesin in the extended configuration displayed a rod-shaped structure with a mean length of about 80 nm. The morphologies of the ends were different; one end was composed of two globular particles, similar to the two-headed structure of myosin, while the other end had a more ill-defined structure, appearing either as a globular particle, an aggregate of two to four small granules, or a frayed, fan-like structure. The folded kinesin molecule possessed a hinge region in the middle of the rod, at about 32 nm from the neck of the two heads. In our preparations, the majority of adrenal kinesin molecules were folded at physiological salt concentrations. Adrenal kinesin bound to microtubules in the presence of adenylyl imidodiphosphate (AMP-PNP) also displayed a folded morphology.
利用低角度旋转阴影技术,通过电子显微镜对牛肾上腺驱动蛋白的分子结构进行了研究。肾上腺驱动蛋白呈现出折叠或伸展的构象;两者的比例取决于盐浓度。在低离子溶液中,几乎所有肾上腺驱动蛋白分子都是折叠的,而在含有1 M醋酸铵的溶液中,伸展分子的比例增加到40 - 50%。处于伸展构象的驱动蛋白呈现出棒状结构,平均长度约为80 nm。两端的形态不同;一端由两个球状颗粒组成,类似于肌球蛋白的双头结构,而另一端的结构则更不明确,呈现为球状颗粒、两到四个小颗粒的聚集体或磨损的扇形结构。折叠的驱动蛋白分子在棒状结构的中部有一个铰链区,距双头的颈部约32 nm。在我们的制备中,大多数肾上腺驱动蛋白分子在生理盐浓度下是折叠的。在腺苷酰亚胺二磷酸(AMP-PNP)存在的情况下,与微管结合的肾上腺驱动蛋白也呈现出折叠形态。