O'Connor V, Houtman S H, De Zeeuw C I, Bliss T V P, French P J
Neurophysiology Division, National Institute for Medical Research, London, UK.
Gene. 2004 Jul 7;336(1):127-37. doi: 10.1016/j.gene.2004.04.012.
We have isolated a novel transcript with homology to the major microtubule-associated protein in dividing sea urchin embryos, EMAP. The protein has a predicted MW of approximately 180 kDa and we have named it Eml5 (EMAP-like protein 5). Eml5 contains 11 putative WD40 domains and 3 hydrophobic stretches of 43 aa, HELP domains, which have been suggested to be involved in microtubule binding. Eml5 appears to consist of two tandem repeats of the complete EMAP protein separated by a putative dimerization domain. Eml5 mRNA and protein is expressed at high levels in the hippocampus, cerebellum and olfactory bulb, as determined by in situ hybridization and immunocytochemistry. Eml5 transcripts can be detected in fore- and hindbrain structures from embryonic day 13 onwards. Because other EMAP-like proteins are involved in regulating microtubule dynamics, it is likely that Eml5 plays a role in the regulation of cytoskeletal rearrangements during neuronal development and in adult brain
我们分离出了一种与分裂海胆胚胎中的主要微管相关蛋白EMAP具有同源性的新转录本。该蛋白预测分子量约为180 kDa,我们将其命名为Eml5(EMAP样蛋白5)。Eml5包含11个假定的WD40结构域和3个由43个氨基酸组成的疏水片段,即HELP结构域,据推测这些结构域参与微管结合。Eml5似乎由完整EMAP蛋白的两个串联重复序列组成,中间由一个假定的二聚化结构域隔开。通过原位杂交和免疫细胞化学测定,Eml5 mRNA和蛋白在海马体、小脑和嗅球中高水平表达。从胚胎第13天开始,在前脑和后脑结构中可以检测到Eml5转录本。由于其他EMAP样蛋白参与调节微管动力学,因此Eml5可能在神经元发育过程中以及成体大脑中细胞骨架重排的调节中发挥作用。