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棘皮动物微管相关蛋白样蛋白4是棘皮动物微管相关蛋白家族的成员之一,可使微管稳定。

Echinoderm microtubule-associated protein like protein 4, a member of the echinoderm microtubule-associated protein family, stabilizes microtubules.

作者信息

Houtman S H, Rutteman M, De Zeeuw C I, French P J

机构信息

Department of Neuroscience, Erasmus MC, PO Box 2040, 3000 DR Rotterdam, The Netherlands.

出版信息

Neuroscience. 2007 Feb 23;144(4):1373-82. doi: 10.1016/j.neuroscience.2006.11.015. Epub 2006 Dec 27.

Abstract

Echinoderm microtubule-associated protein (EMAP) is the major microtubule binding protein in dividing sea urchin (Strongylocentrotus purpuratus) eggs. Echinoderm microtubule-associated protein like protein 4 (Eml4, restrictedly overexpressed proliferation-associated protein 120 kDa (Ropp120)) is one of the five mammalian EMAP homologues, the cellular function of which remains to be elucidated. In our first set of experiments we determined the spatio-temporal expression pattern of Eml4 in mouse brain. Our results demonstrate that Eml4 is a highly developmentally regulated gene with high expression levels in the developing nervous system of E11 embryos declining to low levels in adult. Spatially, Eml4 expression becomes restricted to the olfactory bulb, hippocampus and cerebellum. Transient transfection of a fusion construct of full-length mouse Eml4 with green fluorescent protein (GFP-Eml4) into Cos7 and HeLa cells resulted in colocalization of GFP-Eml4 with microtubules. This colocalization was observed both with microtubules of non-dividing cells and with the mitotic spindle of dividing cells. In addition, transient overexpression of GFP-Eml4 in Cos7 cells resulted in microtubules that were resistant to nocodazole treatment suggesting that Eml4 stabilizes microtubules. A consequence of microtubule stabilization is a net reduction in the amount of free tubulin. Microtubule stabilizing proteins therefore are expected to indirectly decrease the microtubule growth rate. Indeed, transient transfection of GFP-Eml4 resulted in a marked decrease in the microtubule growth rate, which is in line with our hypothesis that Eml4 functions as a microtubule stabilizing protein. In summary, our results suggest that Eml4 is a developmentally regulated protein that colocalizes with and stabilizes microtubules.

摘要

棘皮动物微管相关蛋白(EMAP)是分裂海胆(紫球海胆)卵中的主要微管结合蛋白。类棘皮动物微管相关蛋白4(Eml4,增殖相关受限过表达120 kDa蛋白(Ropp120))是五种哺乳动物EMAP同源物之一,其细胞功能仍有待阐明。在我们的第一组实验中,我们确定了Eml4在小鼠大脑中的时空表达模式。我们的结果表明,Eml4是一个高度受发育调控的基因,在E11胚胎发育中的神经系统中表达水平较高,在成体中则降至低水平。在空间上,Eml4的表达局限于嗅球、海马体和小脑。将全长小鼠Eml4与绿色荧光蛋白的融合构建体(GFP-Eml4)瞬时转染到Cos7和HeLa细胞中,导致GFP-Eml4与微管共定位。在非分裂细胞的微管和分裂细胞的有丝分裂纺锤体中均观察到这种共定位。此外,在Cos7细胞中瞬时过表达GFP-Eml4导致微管对诺考达唑处理具有抗性,表明Eml4可使微管稳定。微管稳定的一个结果是游离微管蛋白量的净减少。因此,微管稳定蛋白预计会间接降低微管生长速率。事实上,瞬时转染GFP-Eml4导致微管生长速率显著降低,这与我们关于Eml4作为微管稳定蛋白发挥作用的假设一致。总之,我们的结果表明,Eml4是一种受发育调控的蛋白,与微管共定位并使其稳定。

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