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首页> 外文期刊>Journal of Cell Science >Identification of dyneins that localize exclusively to the proximal portion of Chlamydomonas flagella.
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Identification of dyneins that localize exclusively to the proximal portion of Chlamydomonas flagella.

机译:鉴定仅位于衣藻衣藻近端部分的动力蛋白。

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摘要

The movements of cilia and flagella are driven by multiple species of dynein heavy chains (DHCs), which constitute inner- and outer-dynein arms. In Chlamydomonas, 11 DHC proteins have been identified in the axoneme, but 14 genes encoding axonemal DHCs are present in the genome. Here, we assigned each previously unassigned DHC gene to a particular DHC protein and found that DHC3, DHC4 and DHC11 encode novel, relatively low abundance DHCs. Immunofluorescence microcopy revealed that DHC11 is localized exclusively to the proximal approximately 2 microm region of the approximately 12 microm long flagellum. Analyses of growing flagella suggested that DHC3 and DHC4 are also localized to the proximal region. By contrast, the DHC of a previously identified inner-arm dynein, dynein b, displayed an inverse distribution pattern. Thus, the proximal portion of the flagellar axoneme apparently differs in dynein composition from the remaining portion; this difference might be relevant to the special function performed by the flagellar base.
机译:纤毛和鞭毛的运动是由多种种类的动力蛋白重链(DHC)驱动的,它们构成了动力蛋白的内臂和外臂。在衣藻中,已经在轴突中鉴定出11种DHC蛋白,但是在基因组中存在14种编码轴突DHC的基因。在这里,我们为每个先前未分配的DHC基因分配了一个特定的DHC蛋白,并发现DHC3,DHC4和DHC11编码新的,相对低丰度的DHC。免疫荧光显微镜检查显示DHC11仅定位在大约12微米长的鞭毛的近端2微米区域。对鞭毛生长的分析表明,DHC3和DHC4也位于近端区域。相比之下,先前鉴定出的内臂动力蛋白Dynein b的DHC显示出相反的分布模式。因此,鞭毛轴突的近端部分的动力蛋白成分与其余部分明显不同。这种差异可能与鞭毛基部执行的特殊功能有关。

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