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果蝇胚胎中囊泡运输的发育调控:力与动力学

Developmental regulation of vesicle transport in Drosophila embryos: forces and kinetics.

作者信息

Welte M A, Gross S P, Postner M, Block S M, Wieschaus E F

机构信息

Department of Molecular Biology, Howard Hughes Medical Institute, Princeton University, New Jersey 08544, USA.

出版信息

Cell. 1998 Feb 20;92(4):547-57. doi: 10.1016/s0092-8674(00)80947-2.

Abstract

In Drosophila embryos, microtubules oriented along apical-basal directions support saltatory vesicle movement. Vesicle traffic includes lipid droplets whose distribution shifts twice during early embryogenesis. Using microscopy, optical tweezers, and a novel squashed-mount embryo preparation, we tracked single droplets and measured the forces these generated. Droplet stalling forces change developmentally, in a roughly quantized fashion, consistent with variation in the number of active motors. We characterized a mutation, klarsicht, that affects droplet transport. Klar+ facilitates changes in force, possibly by coordinating the activity of multiple motors. Alterations in transport affected motion in both apical and basal directions, indicating tight coupling between motors of opposite polarity. Mutations in klar also affect nuclear migration during eye development, suggesting multiple roles for klar-based transport.

摘要

在果蝇胚胎中,沿顶 - 基方向排列的微管支持跳跃式囊泡运动。囊泡运输包括脂滴,其分布在胚胎早期发育过程中会发生两次变化。利用显微镜、光镊和一种新型的压片胚胎制备方法,我们追踪了单个脂滴并测量了它们产生的力。脂滴停滞力在发育过程中以大致量化的方式变化,这与活跃马达数量的变化一致。我们鉴定了一个影响脂滴运输的突变体klarsicht。Klar +可能通过协调多个马达的活动来促进力的变化。运输的改变影响了顶向和基向的运动,表明相反极性的马达之间存在紧密耦合。klar突变也影响眼睛发育过程中的核迁移,这表明基于klar的运输具有多种作用。

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