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果蝇驱动蛋白:微管运动性及ATP酶活性的表征

Drosophila kinesin: characterization of microtubule motility and ATPase.

作者信息

Saxton W M, Porter M E, Cohn S A, Scholey J M, Raff E C, McIntosh J R

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Proc Natl Acad Sci U S A. 1988 Feb;85(4):1109-13. doi: 10.1073/pnas.85.4.1109.

Abstract

Preparations of kinesin, a microtubule-based force-producing protein, have been isolated from Drosophila melanogaster embryos by incubation of microtubules with a nonhydrolyzable ATP analogue and gel filtration of proteins released from the microtubules by ATP. These preparations induced MgATP-dependent microtubule gliding in vitro with a Km for MgATP of 44 microM and a Vmax for gliding of 0.9 micron/sec. Samples of Drosophila proteins that were active in motility assays possessed an average ATPase activity in solution of 17 nmol/min per mg that increased to an average of 106 nmol/min per mg in the presence of microtubules. The major polypeptides that copurified with these activities showed relative molecular masses of 115 kDa and 58 kDa. An antiserum raised against the 115-kDa polypeptide also recognized the 110-kDa component of squid kinesin preparations and the 130-kDa component of sea urchin kinesin preparations.

摘要

驱动蛋白是一种基于微管产生力的蛋白质,通过将微管与一种不可水解的ATP类似物一起孵育,并对由ATP从微管中释放的蛋白质进行凝胶过滤,已从黑腹果蝇胚胎中分离出驱动蛋白制剂。这些制剂在体外诱导了MgATP依赖的微管滑动,MgATP的Km为44 microM,滑动的Vmax为0.9微米/秒。在运动测定中具有活性的果蝇蛋白质样品在溶液中的平均ATP酶活性为每毫克17 nmol/分钟,在微管存在下增加到平均每毫克106 nmol/分钟。与这些活性共纯化的主要多肽的相对分子质量为115 kDa和58 kDa。针对115 kDa多肽产生的抗血清也识别鱿鱼驱动蛋白制剂的110 kDa成分和海胆驱动蛋白制剂的130 kDa成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b71/279715/37adab6a0a38/pnas00256-0149-a.jpg

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