Pazour G J, Dickert B L, Vucica Y, Seeley E S, Rosenbaum J L, Witman G B, Cole D G
Department of Cell Biology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
J Cell Biol. 2000 Oct 30;151(3):709-18. doi: 10.1083/jcb.151.3.709.
Intraflagellar transport (IFT) is a rapid movement of multi-subunit protein particles along flagellar microtubules and is required for assembly and maintenance of eukaryotic flagella. We cloned and sequenced a Chlamydomonas cDNA encoding the IFT88 subunit of the IFT particle and identified a Chlamydomonas insertional mutant that is missing this gene. The phenotype of this mutant is normal except for the complete absence of flagella. IFT88 is homologous to mouse and human genes called Tg737. Mice with defects in Tg737 die shortly after birth from polycystic kidney disease. We show that the primary cilia in the kidney of Tg737 mutant mice are shorter than normal. This indicates that IFT is important for primary cilia assembly in mammals. It is likely that primary cilia have an important function in the kidney and that defects in their assembly can lead to polycystic kidney disease.
鞭毛内运输(IFT)是多亚基蛋白质颗粒沿鞭毛微管的快速移动,是真核生物鞭毛组装和维持所必需的。我们克隆并测序了衣藻中编码IFT颗粒IFT88亚基的cDNA,并鉴定出一个缺失该基因的衣藻插入突变体。该突变体除了完全没有鞭毛外,表型正常。IFT88与小鼠和人类中称为Tg737的基因同源。Tg737有缺陷的小鼠出生后不久死于多囊肾病。我们发现Tg737突变小鼠肾脏中的初级纤毛比正常的短。这表明IFT对哺乳动物初级纤毛的组装很重要。初级纤毛可能在肾脏中具有重要功能,其组装缺陷可能导致多囊肾病。