用分子力进行研究的单基因素分子
K Visscher1, M J Schnitzer, S M Block
1Department of Molecular Biology, Princeton Materials Institute, Princeton University, New Jersey 08544, USA.
Nature
|July 17, 1999
概括
素运动蛋白使用ATP沿着微管子移动. 新的研究揭示了基因素的作用.
科学领域:
- 分子运动蛋白的功能分子运动蛋白.
- 动力发动机的机械化学.
- 细胞运输机制的细胞运输机制.
背景情况:
- 氨酸是一种由ATP驱动的运动蛋白质,在8纳米的步骤中沿着微管子移动.
- 在ATP水解和kinesin中的机械运动之间精确的合机制尚未完全理解.
- 了解这个过程对于理解细胞内运输至关重要.
研究的目的:
- 为了研究基因素运动蛋白功能的机械化学细节.
- 阐明ATP的化学能量如何转化为机械工作.
- 分析基因素对不同的ATP度和外部负荷的反应.
主要方法:
- 开发了一种使用反驱动光学陷的新型强力仪器.
- 在受控,恒定的负载下测量单动力发动机运动.
- 在不同的ATP度和力量中分析素的机械化学行为.
主要成果:
- 在广泛的力范围内,素步骤与ATP水解 (每8纳米步骤一次水解) 紧密结合.
- 动因素阻滞力取决于ATP度.
- 增加的机械负载会降低最大速度,并增加迈凯利斯-门常数,表明动力循环中的负载依赖转变.
结论:
- 激素电机循环包括至少一个负载依赖的过渡,影响ATP结合和水解承诺.
- 另一个负载依赖率可能会影响整体营业额.
- 这些发现需要对动力运动机械和功能的理解进行修订.
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