Fernández-Llebrez P, Hernández S, Andrades J A
Departamento de Biología Animal, Facultad de Ciencias, Universidad de Málaga, Spain.
Cell Tissue Res. 2001 Jul;305(1):115-20. doi: 10.1007/s004410100404.
The subcommissural organ (SCO) and the floor plate (FP) secrete high molecular weight glycoproteins that polymerize in the form of the Reissner's fiber (RF). To study to what extent the absence of the FP affects the expression of these glycoproteins, we have investigated the brain and spinal cord of 48-h and 72-h wildtype and cyclops (cyc) mutant zebrafish larvae by using a polyclonal antiserum against bovine RF. Wildtype larvae showed immunoreactivity in the SCO at the dorsal forebrain-midbrain boundary. In the ventricle, over the SCO surface, thin immunoreactive fibers aggregated into an RF that ran along the third and fourth ventricles and the central canal of the spinal cord until, at its caudal end, the fiber disintegrated and formed a strongly immunoreactive massa caudalis that left the neural tube and invaded the surrounding tissues of the tail fin. The rostral end of the FP, lining the pontine flexure, was also strongly immunoreactive, as was the caudal third of the FP. Cyc mutants showed an immunoreactive SCO and fibrous material in the ventricle, but an RF was missing. There was no label in the ventral midline of the neural tube except in some specimens in which the caudal FP persisted and was immunoreactive. It is concluded that the product of the cyc gene is not required for the expression of SCO glycoproteins but for their polymerization into an RF in the brain ventricles.
连合下器官(SCO)和基板(FP)分泌高分子量糖蛋白,这些糖蛋白以赖氏纤维(RF)的形式聚合。为了研究FP的缺失在多大程度上影响这些糖蛋白的表达,我们使用针对牛RF的多克隆抗血清,对48小时和72小时的野生型和独眼(cyc)突变斑马鱼幼虫的脑和脊髓进行了研究。野生型幼虫在前脑-中脑背侧边界的SCO处显示出免疫反应性。在脑室中,在SCO表面上方,细的免疫反应性纤维聚集成一条RF,该RF沿着第三和第四脑室以及脊髓中央管延伸,直到在其尾端,纤维解体并形成一个强免疫反应性的尾侧块,该尾侧块离开神经管并侵入尾鳍的周围组织。衬于脑桥曲线上的FP的头端以及FP的尾三分之一也具有强免疫反应性。Cyc突变体在脑室中显示出免疫反应性的SCO和纤维状物质,但缺少RF。神经管腹侧中线没有标记,除非在一些标本中尾侧FP持续存在并具有免疫反应性。结论是,cyc基因的产物对于SCO糖蛋白的表达不是必需的,但对于它们在脑室中聚合成RF是必需的。