No conventional function for the conventional kinesin?

No conventional function for the conventional kinesin?
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常规驱动蛋白没有常规功能吗?

DOI:
10.1111/j.1600-0854.2008.00818.x
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发表时间:
2008
期刊:
Traffic (Copenhagen, Denmark)
影响因子:
--
通讯作者:
Muresan,Zoia
Muresan,Zoia
中科院分区:
--
文献类型:
--
作者:
Muresan,Virgil;Muresan,Zoia

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DeGiorgis等人的论文(DeGiorgis JA,Petukhova TA,Evans TA,Reese TS.驱动蛋白-3是鱿鱼巨轴突中的细胞器马达。交通2008; DOI:10.1111/j.1600 - 0854.2008.00809.x)在这一期的交通报告的第二个鱿鱼驱动蛋白,驱动蛋白-3马达的识别和功能。正如预期的那样,新发现的电机与轴浆organellesin situ和权力的运动沿着微管的囊泡分离鱿鱼轴浆。不太令人期待的是,发现驱动蛋白-3可能是鱿鱼轴突中顺行细胞器运动的主要马达,这挑战了迄今为止无可争议的观点,即这种功能是由传统的驱动蛋白驱动蛋白-1实现的。这些新的发现让我们想知道驱动蛋白1 --鱿鱼轴突中最丰富的运动蛋白--的真实的功能到底是什么。
A paper by DeGiorgis et al. (DeGiorgis JA, Petukhova TA, Evans TA, Reese TS. Kinesin‐3 is an organelle motor in the squid giant axon. Traffic 2008; DOI: 10.1111/j.1600‐0854.2008.00809.x) in this issue of Traffic reports on the identification and function of a second squid kinesin, a kinesin‐3 motor. As expected, the newly discovered motor associates with axoplasmic organellesin situand powers motility along microtubules of vesicles isolated from squid axoplasm. Less expected was the finding that kinesin‐3 may be the predominant motor for anterograde organelle movement in the squid axon, which challenges the so far undisputed view that this function is fulfilled by the conventional kinesin, kinesin‐1. These novel findings let us wonder what the real function of kinesin‐1 – the most abundant motor in squid axons – actually is.
与先天性手指屈曲挛缩相关的家族性关节病的病理特征。
DOI: --
发表时间: 1978
影响因子: --
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