Zentrum für Molekulare Neurobiologie Hamburg, Universität Hamburg, Martinistrasse 52, D-20246 Hamburg, Germany.
Mech Dev. 2002 Dec;119 Suppl 1:S135-41. doi: 10.1016/s0925-4773(03)00106-0.
We have identified a zebrafish homolog of the F3/F11/contactin (F3) recognition molecule. The gene shares 55% amino acid identity with F3 molecules in other vertebrates. Expression of F3 mRNA is first detectable at 16 h post-fertilization (hpf) in trigeminal and Rohon-Beard neurons. At 18-24 hpf, additional weaker expression is present in discrete cell clusters in the hindbrain, in the anterior lateral line/acoustic ganglion and in spinal motor neurons. Transcription factors of the LIM homeodomain class (LIM-HD) and their associated cofactors CLIM/NLI/Ldb (CLIM) have been implicated in the development of peripheral axons of trigeminal and Rohon-Beard neurons. We demonstrate that ectopic overexpression of a dominant-negative CLIM molecule early during zebrafish development strongly reduces expression of F3 mRNA in these neurons indicating regulation of F3 by the LIM-HD protein network. These results and the spatiotemporal correlation of F3 expression with axonal differentiation in a subset of primary neurons suggest an important role of F3 for axon growth.
我们鉴定了一个斑马鱼同源物的 F3/F11/contactin(F3)识别分子。该基因与其他脊椎动物的 F3 分子共享 55%的氨基酸同一性。F3 mRNA 的表达在受精后 16 小时(hpf)首次在三叉神经和 Rohon-Beard 神经元中检测到。在 18-24 hpf 时,在后脑、前侧线/听神经节和脊髓运动神经元中存在离散的细胞簇中,表达较弱。LIM 同源域类(LIM-HD)的转录因子及其相关的共因子 CLIM/NLI/Ldb(CLIM)已被牵连到三叉神经和 Rohon-Beard 神经元的外周轴突的发育中。我们证明,在斑马鱼发育早期过表达显性负 CLIM 分子强烈地降低了这些神经元中 F3 mRNA 的表达,表明 LIM-HD 蛋白网络对 F3 的调控。这些结果和 F3 表达与一组初级神经元中的轴突分化的时空相关性表明 F3 对轴突生长有重要作用。