首页> 美国卫生研究院文献>other >DIFFERENTIAL AND AGE-DEPENDENT EXPRESSION OF HYPERPOLARIZATION-ACTIVATED CYCLIC NUCLEOTIDE-GATED CATION CHANNEL ISOFORMS 1–4 SUGGESTS EVOLVING ROLES IN THE DEVELOPING RAT HIPPOCAMPUS
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DIFFERENTIAL AND AGE-DEPENDENT EXPRESSION OF HYPERPOLARIZATION-ACTIVATED CYCLIC NUCLEOTIDE-GATED CATION CHANNEL ISOFORMS 1–4 SUGGESTS EVOLVING ROLES IN THE DEVELOPING RAT HIPPOCAMPUS

机译:高极化激活环状核苷酸门控的阳离子通道的同工型1-4的演变在发育中的大鼠海马中的角色演变

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摘要

Hyperpolarization-activated cation currents (Ih) are found in several brain regions including thalamus and hippocampus. Important functions of these currents in promoting synchronized network activity and in determining neuronal membrane properties have been progressively recognized, but the molecular underpinnings of these currents are only emerging. Ih currents are generated by hyperpolarization-activated, cyclic nucleotide-gated cation channels (HCNs). These channel proteins are encoded by at least four HCN genes, that govern the kinetic and functional properties of the resulting channels. Because of the potential impact of Ih-mediated coordinated neuronal activity on the maturation of the functional hippocampal network, this study focused on determining the expression of the four members of the HCN gene family throughout postnatal hippocampal development at both the regional and single cell level.The results of these experiments demonstrated that HCNs 1, 2 and 4 are differentially expressed in interneuronal and principal cell populations of the rat hippocampal formation. Expression profiles of each HCN isoform evolve during postnatal development, and patterns observed during early postnatal ages differ significantly from those in mature hippocampus. The onset of HCN expression in interneurons of the hippocampus proper precedes that in the dentate gyrus, suggesting that HCN-mediated pacing activity may be generated in hippocampal interneurons prior to those in the hilus.Taken together, these findings indicate an age-dependent spatiotemporal evolution of specific HCN expression in distinct hippocampal cell populations, and suggest that these channels serve differing and evolving functions in the maturation of coordinated hippocampal activity.
机译:在包括丘脑和海马体在内的几个大脑区域都发现了超极化激活的阳离子电流(Ih)。这些电流在促进同步网络活动和确定神经元膜特性中的重要功能已得到逐步认识,但是这些电流的分子基础才刚刚出现。电流是由超极化激活的环状核苷酸门控阳离子通道(HCN)产生的。这些通道蛋白由至少四个HCN基因编码,它们控制所得通道的动力学和功能特性。由于Ih介导的协调性神经元活动对功能性海马网络成熟的潜在影响,因此本研究着重于确定整个产后海马发育过程中区域和单细胞水平的HCN基因家族四个成员的表达。这些实验的结果表明,HCN 1、2和4在大鼠海马结构的神经元间和主要细胞群中差异表达。每个HCN亚型的表达谱在产后发育过程中都会发生演变,并且在产后早期阶段观察到的模式与成熟海马体中的显着不同。 HCN在海马中间神经元中的表达开始于齿状回之前,这表明HCN介导的起搏活性可能比在hilus中的先在海马中间神经中产生。综上所述,这些发现表明年龄依赖的时空演变HCN在不同海马细胞群体中表达的差异,表明这些通道在海马协调性活动的成熟中起着不同和不断发展的功能。

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