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萊茵衣藻鞭毛內運輸蛋白IFT81調控鞭毛組裝

Flagellar assembly in Chlamydomonas reinhardtii regulated by intraflagellar transport protein IFT81

  • 摘要: 利用插入突變的方式獲得了一株衣藻不運動突變體ift81,該突變體表現出鞭毛缺失或者短鞭毛的性狀.基因序列分析表明,外源基因aphⅧ插入了突變體中IFT81(intraflagellar transport,IFT)基因的第五個外顯子內,并導致該外顯子原有的52個堿基對被替換.把含有完整IFT81基因的重組質粒導入突變體ift81后,其鞭毛恢復為野生型且可以檢測到IFT81-HA融合蛋白的表達,這證明突變體的鞭毛缺陷確實是由于IFT81基因突變所導致.電鏡觀察顯示突變體中鞭毛的顯微結構發生改變,免疫熒光實驗證實IFT81蛋白主要定位于基體和鞭毛部位.上述結果表明:IFT81蛋白缺失會導致衣藻鞭毛組裝缺陷,在鞭毛組裝所需蛋白的運輸過程中,IFT81蛋白是必不可少的.

     

    Abstract: A Chlamydomonas reinhardtii immobile mutant named ift81 was screened by insertional mutagenesis. The mutant was bald or with two short flagella. Gene sequencing confirmed that fifty-two base pairs in the fifth extron of IFT81 gene were replaced by the exogenous gene aphⅧ in the mutant. After a recombinant plasmid containing full IFT81 gene was imported into the mutant ift81,the phenotype of the mutant was rescued and the expression of IFT81-HA could be detected,which confirmed that the defect in IFT81 gene led to the abnormal flagella directly. Electron microscopy images exhibited the abnormal flagella of the mutant. An immunofluorescence assay revealed that IFT81 protein was localized to the basal body and flagella. This work shows that loss of protein IFT81 will directly lead to the defects of flagellar assembly,and IFT81 protein is indispensable for flagellar assembly in Chlamydomonas reinhardtii.

     

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