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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Identification and localization of multiple classic cadherins in developing rat limbic system.
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Identification and localization of multiple classic cadherins in developing rat limbic system.

机译:在发育中的大鼠边缘系统中鉴定和定位多种经典钙粘蛋白。

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Classic cadherins are multifunctional adhesion proteins that play roles in tissue histogenesis, neural differentiation, neurite outgrowth and synapse formation. Several lines of evidence suggest that classic cadherins may establish regional or laminar recognition cues by virtue of their differential expression and tight, and principally homophilic, cell adhesion. As a first step toward investigating the role this family plays in generating limbic system connectivity, we used RT-PCR to amplify type I and type II classic cadherins present in rat hippocampus during the principal period of synaptogenesis. We identified nine different cadherins, one of which, cadherin-9, is novel in hippocampus. Using in situ hybridization, we compared the cellular and regional distribution of five of the cadherins (N, 6, 8, 9 and 10) during the first two postnatal weeks in hippocampus, subiculum, entorhinal cortex, cingulate cortex, anterior thalamus, hypothalamus and amygdala. We find that each cadherin is differentially distributed in distinct, but highly overlapping fields that largely correspond to known anatomical boundaries and are often coordinately expressed in interconnected regions. For example, cadherin-6 expression defines CA1 and its principal target, the subiculum; cadherin-10 is differentially expressed in CA1 and CA3 in a manner correlating with the organization of interconnecting Schaffer collateral axons; and cadherin-9 shows a striking concentration in CA3. Some cadherin mRNAs are highly restricted to particular anatomical fields over the entire time course, while others are more broadly expressed and become concentrated within particular domains coincident with the timing of afferent ingrowth. Our data indicate that classic cadherins are sufficiently diverse and differentially distributed to support a role in cell surface recognition and adhesion during the formation of limbic system connectivity.
机译:经典钙粘蛋白是多功能粘附蛋白,在组织组织发生,神经分化,神经突增生和突触形成中起作用。几条证据表明,经典的钙粘着蛋白可以通过它们的差异表达和紧密的(主要是同源的)细胞粘附来建立区域或层状识别线索。作为研究该家族在产生边缘系统连通性中所起作用的第一步,我们使用了RT-PCR来扩增突触形成主要时期大鼠海马中存在的I型和II型经典钙粘着蛋白。我们鉴定了九种不同的钙粘蛋白,其中一种钙粘蛋白9在海马中是新颖的。使用原位杂交,我们比较了出生后前两周中海马,下丘脑,内嗅皮层,扣带状皮层,前丘脑,下丘脑和下丘脑中五个钙黏着蛋白(N,6、8、9和10)在细胞和区域分布杏仁核。我们发现每个钙粘着蛋白在不同的但高度重叠的字段中差异分布,这些字段在很大程度上对应于已知的解剖边界,并且通常在互连区域中协调表达。例如,钙粘着蛋白6表达式定义了CA1及其主要靶标亚分支;钙黏着蛋白10在CA1和CA3中的差异表达与与Schaffer侧支轴突相互连接的组织有关。 cadherin-9在CA3中显示出惊人的浓度。在整个时间过程中,某些钙粘蛋白mRNA高度受限于特定的解剖学领域,而另一些钙粘蛋白mRNA则更广泛地表达并集中在与传入长入的时间一致的特定域内。我们的数据表明经典的钙粘着蛋白足够多样且差异地分布,以支持边缘系统连接形成过程中细胞表面识别和粘附的作用。

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