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首页> 外文期刊>The Journal of Comparative Neurology >Differential expression of connexin26 and connexin32 in the pre-Botzinger complex of neonatal and adult rat.
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Differential expression of connexin26 and connexin32 in the pre-Botzinger complex of neonatal and adult rat.

机译:connexin26和connexin32在新生和成年大鼠的Botzinger前复合体中的差异表达。

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The pre-Botzinger complex (pre-BotC) is hypothesized to be the site for respiratory rhythm generation in mammals. Studies examining the cellular mechanisms mediating rhythm generation have focused on the role of chemically mediated synaptic interactions; however, electrotonic synaptic interactions (i.e., electrotonic coupling), which occur by means of gap junctions, may also play a role. Here, we used immunoblot and immunohistochemical analyses to determine whether the pre-BotC contains the gap junction proteins necessary for electrotonic communication and whether the presence and distribution of these gap junction proteins show a developmental change in expression. We found that both connexin26 (Cx26) and connexin32 (Cx32) were expressed in pre-BotC neurons of neonatal and adult rats; however, the relative amounts and their distribution varied by age. Cx26 labeling was seen in a high proportion of pre-BotC neurons in neonatal rats < or = 7 days postnatal (P7) but declined with increasing age. In contrast, Cx32 labeling was sparse in pre-BotC neurons of neonatal rats < or = P7, but increased with increasing age; the highest proportion was seen in adult rats. These data suggest the potential for gap junctional communication in the pre-BotC of both neonatal and adult rats, and we propose that the gap junction proteins Cx26 and Cx32 form the neuroanatomic substrate for this gap junctional communication, which may be important in the synchronization of neural activity generating respiratory rhythm. Copyright 2001 Wiley-Liss, Inc.
机译:据推测,前伯钦格复合体(pre-BotC)是哺乳动物呼吸节奏发生的部位。研究介导节律产生的细胞机制的研究集中于化学介导的突触相互作用的作用。然而,通过间隙连接发生的电突触相互作用(即,电声耦合)也可能起作用。在这里,我们使用免疫印迹和免疫组化分析来确定pre-BotC是否包含电渗通讯必需的间隙连接蛋白,以及这些间隙连接蛋白的存在和分布是否在表达上显示出发育变化。我们发现连接蛋白26(Cx26)和连接蛋白32(Cx32)都在新生和成年大鼠的BotC前神经元中表达。但是,相对数量及其分布随年龄而变化。新生大鼠在出生后7天(或P7)(P7)的高比例的BotC前神经元中可见Cx26标记,但随着年龄的增长而下降。相反,新生大鼠<或= P7的BotC前神经元中的Cx32标记稀疏,但随着年龄的增长而增加。在成年大鼠中比例最高。这些数据表明在新生和成年大鼠的pre-BotC中可能存在间隙连接通讯,我们建议间隙连接蛋白Cx26和Cx32形成这种间隙连接通讯的神经解剖底物,这可能对同步化神经节很重要神经活动产生呼吸节律。版权所有2001 Wiley-Liss,Inc.

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