首页> 外文期刊>Cell motility and the cytoskeleton >The Chlamydomonas MBO2 locus encodes a conserved coiled-coil protein important for flagellar waveform conversion.
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The Chlamydomonas MBO2 locus encodes a conserved coiled-coil protein important for flagellar waveform conversion.

机译:衣藻MBO2基因座编码保守的卷曲螺旋蛋白,对鞭毛波形转换很重要。

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Chlamydomonas flagella can undergo a calcium-dependent conversion between an asymmetric ciliary waveform and a symmetric flagellar waveform. Mutations at three MBO loci abolish the predominant ciliary waveform and result in cells that move backward only with the flagellar waveform. We have cloned and characterized the MBO2 gene. It encodes a novel protein with extensive alpha-helical coiled-coils and two leucine zippers. Sequences highly similar to MBO2p were found in a variety of organisms with cilia and flagella, suggesting that the MBO2 gene function may be conserved in many diverse taxa. Antibodies to MBO2p recognized an axonemal protein of 110 kDa, which appeared to be tightly associated with doublet microtubules. The protein was present in flagella of a variety of paralyzed flagellar mutants that lacked different axonemal structures, indicating that MBO2p is a component of a previously uncharacterized flagellar protein complex. In contrast to the earlier suggestion that the MBO2 gene may encode a component of an intramicrotubular beak-like structure present only proximally in flagella, we localized an epitope-tagged MBO2p along the entire length of the flagella. Moreover, the insertion of a hemagglutinin (HA) epitope in the conserved C-terminal domain of MBO2p reduced the swimming velocity of cells transformed with the epitope-tagged gene. These results indicate that MBO2p may play a role both in the assembly of the beak-like structure and the regulation of the force-generation machinery during the ciliary beat. Cell Motil. Cytoskeleton 51:197-212, 2002.
机译:衣藻鞭毛可以在不对称的睫状波形和对称的鞭毛波形之间进行钙依赖的转换。三个MBO位点的突变消除了主要的纤毛波形,并导致仅以鞭毛波形向后移动的细胞。我们已经克隆并鉴定了MBO2基因。它编码一种新型蛋白质,具有广泛的α-螺旋卷曲螺旋和两个亮氨酸拉链。在具有纤毛和鞭毛的多种生物中发现了与MBO2p高度相似的序列,这表明MBO2基因的功能可能在许多不同的类群中得以保留。 MBO2p的抗体识别出110 kDa的轴突蛋白,该蛋白似乎与双峰微管紧密相关。该蛋白存在于许多瘫痪的鞭毛突变体的鞭毛中,这些突变体缺少不同的轴突结构,表明MBO2p是以前未鉴定的鞭毛蛋白复合物的组成部分。与较早的建议(MBO2基因可能编码仅存在于鞭毛近端的微管内喙状结构的组成部分)相反,我们沿鞭毛的整个长度定位了带有抗原决定簇的MBO2p。此外,在MBO2p的保守C端结构域中插入血凝素(HA)表位降低了用表位标记基因转化的细胞的游泳速度。这些结果表明,MBO2p可能在喙状结构的组装和睫状跳动过程中对力产生机制的调节中都发挥作用。细胞动力。 Cytoskeleton 51:197-212,2002。

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