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巨型钙黏蛋白分子Fat3蛋白在小鼠发育过程中的时空表达谱。

Temporal and spatial expression profiles of the Fat3 protein, a giant cadherin molecule, during mouse development.

作者信息

Nagae Shigenori, Tanoue Takuji, Takeichi Masatoshi

机构信息

Graduate School of Biostudies, Kyoto University, Kyoto, Japan.

出版信息

Dev Dyn. 2007 Feb;236(2):534-43. doi: 10.1002/dvdy.21030.

Abstract

Cadherins constitute a superfamily of cell-cell interaction molecules that participate in morphogenetic processes of animal development. Fat cadherins are the largest members of this superfamily, with 34 extracellular cadherin repeats. Classic Fat, identified in Drosophila, is known to regulate cell proliferation and planar cell polarity. Although 4 subtypes of Fat cadherin, Fat1, Fat2, Fat3, and Fat4/Fat-J, have been identified in vertebrates, their protein localization remains largely unknown. Here we describe the mRNA and protein distributions of Fat3 during mouse development. We found that Fat3 expression was restricted to the nervous system. In the brain, Fat3 was expressed in a variety of regions and axon fascicles. However, its strongest expression was observed in the olfactory bulb and retina. Detailed analysis of Fat3 in the developing olfactory bulb revealed that Fat3 mRNA was mainly expressed by mitral cells and that its proteins were densely localized along the dendrites of these cells as well as in their axons to some extent. Fat3 transcripts in the retina were expressed by amacrine and ganglion cells, and its proteins were concentrated in the inner plexiform layer throughout development. Based on these observations, we suggest that Fat3 plays a role in the interactions between neurites derived from specific subsets of neurons during development.

摘要

钙黏蛋白构成了一个细胞间相互作用分子的超家族,参与动物发育的形态发生过程。FAT钙黏蛋白是该超家族中最大的成员,具有34个细胞外钙黏蛋白重复序列。在果蝇中发现的经典FAT已知可调节细胞增殖和平面细胞极性。尽管在脊椎动物中已鉴定出FAT钙黏蛋白的4种亚型,即Fat1、Fat2、Fat3和Fat4/Fat-J,但其蛋白质定位在很大程度上仍不清楚。在这里,我们描述了Fat3在小鼠发育过程中的mRNA和蛋白质分布。我们发现Fat3的表达仅限于神经系统。在大脑中,Fat3在各种区域和轴突束中表达。然而,在嗅球和视网膜中观察到其最强表达。对发育中的嗅球中Fat3的详细分析表明,Fat3 mRNA主要由二尖瓣细胞表达,其蛋白质密集地定位于这些细胞的树突以及轴突中。视网膜中的Fat3转录本由无长突细胞和神经节细胞表达,其蛋白质在整个发育过程中集中在内网状层。基于这些观察结果,我们认为Fat3在发育过程中特定神经元亚群衍生的神经突之间的相互作用中发挥作用。

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