Tuxhorn J, Daise T, Dentler W L
Department of Biochemistry, Cell, and Molecular Biology, University of Kansas, Lawrence 66045, USA.
Cell Motil Cytoskeleton. 1998;40(2):133-46. doi: 10.1002/(SICI)1097-0169(1998)40:2<133::AID-CM3>3.0.CO;2-G.
The length of eukaryotic cilia and flagella depends on the cell cycle-regulated assembly and disassembly of at least 9 doublet and 2 central microtubules, their associated proteins, and the surrounding membrane. In light-synchronized Chlamydomonas cells, flagella assembled to 10-14 microm in length near the beginning of the light period and they disassembled prior to cell division, during the dark period. Flagella on light-synchronized pf18 Chlamydomonas mutants grew to 10-12 microm near the beginning of the light period but shortened by 50% or more by the end of the light period. Flagellar length was cell-cycle regulated: when flagella were amputated at various times during the light period, new flagella regenerated to the lengths of control cells at that time of the light cycle. The later in the cycle pf18 cells were deflagellated, the shorter were the regenerated flagella. Flagellar shortening was not affected, in either pf18 or wild-type (wt) cells, by inhibitors of protein synthesis or of microtubule assembly, so flagellar length cannot depend on protein turnover. Shortening in pf18 was attenuated by Li+, which stimulated flagellar growth in wt cells, by red light, by protein kinase inhibitors, and by the Ca2+ channel blockers La3+ and Cd2+. Shortening was increased by cAMP, Na+, K+, and EGTA. Ca2+-CAM blockers did not affect pf18 shortening but they increased shortening in wt and fa1 cells. We propose that flagellar length is regulated by a signal transduction pathway that is sensitive to Ca2+ levels and red light.
真核生物纤毛和鞭毛的长度取决于至少9个双联微管和2个中央微管、它们相关的蛋白质以及周围膜的细胞周期调控的组装和拆卸。在光同步化的衣藻细胞中,鞭毛在光照期开始时组装至10 - 14微米长,并在黑暗期细胞分裂前拆卸。光同步化的pf18衣藻突变体上的鞭毛在光照期开始时生长至10 - 12微米,但在光照期结束时缩短了50%或更多。鞭毛长度受细胞周期调控:当在光照期的不同时间切除鞭毛时,新的鞭毛在光周期的那个时间再生至对照细胞的长度。pf18细胞在周期中去鞭毛的时间越晚,再生的鞭毛就越短。在pf18或野生型(wt)细胞中,蛋白质合成抑制剂或微管组装抑制剂均不影响鞭毛缩短,因此鞭毛长度不依赖于蛋白质周转。Li +可减弱pf18中的缩短,Li +可刺激wt细胞中的鞭毛生长,红光、蛋白激酶抑制剂以及Ca2 +通道阻滞剂La3 +和Cd2 +也有此作用。cAMP、Na +、K +和EGTA可增加缩短。Ca2 + - CAM阻滞剂不影响pf18中的缩短,但可增加wt和fa1细胞中的缩短。我们提出鞭毛长度受对Ca +水平和红光敏感的信号转导途径调控。