Chuang Chiou-Fen, Vanhoven Miri K, Fetter Richard D, Verselis Vytas K, Bargmann Cornelia I
Howard Hughes Medical Institute, The Rockefeller University, 1230 York Avenue, New York, NY 10021, USA.
Cell. 2007 May 18;129(4):787-99. doi: 10.1016/j.cell.2007.02.052.
Gap junctions are widespread in immature neuronal circuits, but their functional significance is poorly understood. We show here that a transient network formed by the innexin gap-junction protein NSY-5 coordinates left-right asymmetry in the developing nervous system of Caenorhabditis elegans. nsy-5 is required for the left and right AWC olfactory neurons to establish stochastic, asymmetric patterns of gene expression during embryogenesis. nsy-5-dependent gap junctions in the embryo transiently connect the AWC cell bodies with those of numerous other neurons. Both AWCs and several other classes of nsy-5-expressing neurons participate in signaling that coordinates left-right AWC asymmetry. The right AWC can respond to nsy-5 directly, but the left AWC requires nsy-5 function in multiple cells of the network. NSY-5 forms hemichannels and intercellular gap-junction channels in Xenopus oocytes, consistent with a combination of cell-intrinsic and network functions. These results provide insight into gap-junction activity in developing circuits.
间隙连接在未成熟的神经回路中广泛存在,但其功能意义却鲜为人知。我们在此表明,由连接蛋白间隙连接蛋白NSY-5形成的瞬时网络在秀丽隐杆线虫发育中的神经系统中协调左右不对称性。nsy-5是左右AWC嗅觉神经元在胚胎发育过程中建立随机、不对称基因表达模式所必需的。胚胎中依赖nsy-5的间隙连接将AWC细胞体与许多其他神经元的细胞体短暂连接起来。AWC和其他几类表达nsy-5的神经元都参与了协调左右AWC不对称性的信号传导。右侧AWC可以直接对nsy-5作出反应,但左侧AWC需要网络中多个细胞的nsy-5功能。NSY-5在非洲爪蟾卵母细胞中形成半通道和细胞间间隙连接通道,这与细胞内在功能和网络功能的结合相一致。这些结果为发育中回路中的间隙连接活动提供了见解。