Tam Lai-Wa, Dentler William L, Lefebvre Paul A
Department of Plant Biology, University of Minnesota, St. Paul, MN 55108, USA.
J Cell Biol. 2003 Nov 10;163(3):597-607. doi: 10.1083/jcb.200307143.
Four long-flagella (LF) genes are important for flagellar length control in Chlamydomonas reinhardtii. Here, we characterize two new null lf3 mutants whose phenotypes are different from previously identified lf3 mutants. These null mutants have unequal-length flagella that assemble more slowly than wild-type flagella, though their flagella can also reach abnormally long lengths. Prominent bulges are found at the distal ends of short, long, and regenerating flagella of these mutants. Analysis of the flagella by electron and immunofluorescence microscopy and by Western blots revealed that the bulges contain intraflagellar transport complexes, a defect reported previously (for review see Cole, D.G., 2003. Traffic. 4:435-442) in a subset of mutants defective in intraflagellar transport. We have cloned the wild-type LF3 gene and characterized a hypomorphic mutant allele of LF3. LF3p is a novel protein located predominantly in the cell body. It cosediments with the product of the LF1 gene in sucrose density gradients, indicating that these proteins may form a functional complex to regulate flagellar length and assembly.
四个长鞭毛(LF)基因对莱茵衣藻鞭毛长度的控制很重要。在此,我们鉴定了两个新的lf3无效突变体,其表型与先前鉴定的lf3突变体不同。这些无效突变体的鞭毛长度不等,组装速度比野生型鞭毛慢,不过它们的鞭毛也能达到异常长的长度。在这些突变体的短、长及再生鞭毛的末端发现了明显的凸起。通过电子显微镜、免疫荧光显微镜和蛋白质免疫印迹对鞭毛进行分析,结果显示这些凸起含有鞭毛内运输复合体,这是先前在一部分鞭毛内运输缺陷的突变体中报道过的一种缺陷(综述见Cole, D.G., 2003. Traffic. 4:435 - 442)。我们克隆了野生型LF3基因,并鉴定了一个LF3的亚效突变等位基因。LF3p是一种主要位于细胞体中的新型蛋白质。它在蔗糖密度梯度中与LF1基因的产物共同沉降,表明这些蛋白质可能形成一个功能复合体来调节鞭毛的长度和组装。