首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Inner dynein arms but not outer dynein arms require the activity of kinesin homologue protein KHP1(FLA10) to reach the distal part of flagella in Chlamydomonas
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Inner dynein arms but not outer dynein arms require the activity of kinesin homologue protein KHP1(FLA10) to reach the distal part of flagella in Chlamydomonas

机译:内达因臂但非外达因臂要求驱动蛋白同源蛋白KHP1(FLA10)的活性才能到达衣藻鞭毛的远端

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摘要

Inner dynein arms, but not outer dynein arms, require the activity of KHP1(FLA10) to reach the distal part of axonemes before binding to outer doublet microtubules. We have analyzed the rescue of inner or outer dynein arms in quadriflagellate dikaryons by immunofluorescence microscopy of p28(IDA4), an inner dynein arm light chain, or IC69(ODA6), an outer dynein arm intermediate chain. In dikaryons two strains with different genetic backgrounds share the cytoplasm. As a consequence, wild-type axonemal precursors are transported to and assembled in mutant axonemes to complement the defects. The rescue of inner dynein arms containing p28 in ida4-wild-type dikaryons progressively occurred from the distal part of the axonemes and with time was extended towards the proximal part. In contrast, the rescue of outer dynein arms in oda2-wild-type dikaryons progressively occurred along the entire length of the axoneme. Rescue of inner dynein arms containing p28 in ida4fla10-fla10 dikaryons was similar to the rescue observed in ida4-wild-type dikaryons at 21 degrees C, whereas it was inhibited at 32 degrees C, a nonpermissive temperature for KHP1(FLA10). In contrast, rescue of outer dynein arms in oda2fla10-fla10 dikaryons was similar to the rescue observed in oda2-wild-type dikaryons at both 21 degrees and 32 degrees C and was not inhibited at 32 degrees C. Positioning of substructures in the internal part of the axonemal shaft requires the activity of kinesin homologue protein 1.
机译:内达因臂,而不是外达因臂,需要KHP1(FLA10)的活性才能到达轴突的远端,然后再与外部双态微管结合。我们已经通过免疫荧光显微镜对p28(IDA4)(内部达因臂轻链)或IC69(ODA6)(外部达因臂中间链)的免疫荧光显微镜分析了四鞭形双核中内或外达因臂的拯救。在双核生物中,两个具有不同遗传背景的菌株共享细胞质。结果,野生型轴突前体被运输到突变轴突中并组装成突变轴突,以弥补缺陷。 ida4-野生型双核子中含有p28的动力蛋白内部臂的抢救是从轴突的远端逐渐进行的,随着时间的延长,其向近端延伸。相比之下,在oda2野生型双核糖体中,外部达因臂的抢救是沿着轴突的整个长度逐渐进行的。在ida4fla10-fla10双核子中包含p28的动力蛋白内部臂的救援与在21摄氏度下在ida4野生型双核子中观察到的救援相似,而在32摄氏度(KHP1(FLA10)的不允许温度)下被抑制。相比之下,在oda2fla10-fla10双核子中对外部达因臂的拯救与在21度和32摄氏度下在oda2野生型双核子中所观察到的拯救相似,并且在32摄氏度下不受抑制。内部子结构的位置轴突干需要驱动蛋白激酶1的活性。

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