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Different Regulation of N-Cadherin and Cadherin-11 in Rat Hippocampus

机译:大鼠海马中N-Cadherin和Cadherin-11的不同调控

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Cadherin-mediated specific cell adhesion is an important process in brain development as well as in synaptic plasticity in the adult brain. In this study the authors quantified mRNA levels of N-cadherin and cadherin-11 in different brain regions for the first time. In hippocampus N-cadherin mRNA levels were very high at embryonic stages and decreased during further development, whereas cadherin-11 mRNA levels were highest at postnatal stages. However, N-cadherin protein level was not altered during hippocampal development and cadherin-11 protein was low at embryonic but high at postnatal and adult stages. In cultured hippocampal neurons both cadherins became colocalized and recruited to synaptic sites during ongoing differentiation, with especially high accumulation of cadherin-11 at synapses. These data hint at a critical role of N-cadherin at early embryonic stages and early synaptogenesis, whereas cadherin-11 might be more important for further stabilization of synapses in the postnatal period and adulthood.
机译:钙黏着蛋白介导的特定细胞粘附是大脑发育以及成年大脑中突触可塑性的重要过程。在这项研究中,作者首次量化了不同大脑区域中N-cadherin和cadherin-11的mRNA水平。在海马中,N-cadherin mRNA水平在胚胎期非常高,在进一步发育过程中下降,而cadherin-11 mRNA水平在出生后阶段最高。然而,在海马发育过程中,N-钙黏着蛋白水平并没有改变,而钙黏着蛋白11蛋白在胚胎发育时较低,而在产后和成年阶段则较高。在培养的海马神经元中,两个钙粘着蛋白在持续分化过程中都共定位并被募集到突触位点,在突触中钙粘着蛋白11的积累特别高。这些数据暗示了N-钙粘着蛋白在胚胎早期阶段和早期突触形成中的关键作用,而钙粘着蛋白11可能对于进一步稳定突触在出生后和成年时期更为重要。

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