Department of Molecular & Cell Biology, University of California, Berkeley, California 94720-3200, USA.
Nature. 2011 Jan 20;469(7330):402-6. doi: 10.1038/nature09600. Epub 2010 Dec 5.
Establishing precise synaptic connections is crucial to the development of functional neural circuits. The direction-selective circuit in the retina relies upon highly selective wiring of inhibitory inputs from starburst amacrine cells (SACs) onto four subtypes of ON-OFF direction-selective ganglion cells (DSGCs), each preferring motion in one of four cardinal directions. It has been reported in rabbit that the SACs on the 'null' sides of DSGCs form functional GABA (γ-aminobutyric acid)-mediated synapses, whereas those on the preferred sides do not. However, it is not known how the asymmetric wiring between SACs and DSGCs is established during development. Here we report that in transgenic mice with cell-type-specific labelling, the synaptic connections from SACs to DSGCs were of equal strength during the first postnatal week, regardless of whether the SAC was located on the preferred or null side of the DSGC. However, by the end of the second postnatal week, the strength of the synapses made from SACs on the null side of a DSGC significantly increased whereas those made from SACs located on the preferred side remained constant. Blocking retinal activity by intraocular injections of muscimol or gabazine during this period did not alter the development of direction selectivity. Hence, the asymmetric inhibition between the SACs and DSGCs is achieved by a developmental program that specifically strengthens the GABA-mediated inputs from SACs located on the null side, in a manner not dependent on neural activity.
建立精确的突触连接对于功能性神经回路的发育至关重要。视网膜中的方向选择性回路依赖于星状无长突细胞(SAC)的抑制性输入对四种 ON-OFF 方向选择性神经节细胞(DSGC)的高度选择性布线,每种细胞都优先对四个基本方向中的一个方向的运动作出反应。已经在兔中报道,DSGC 上的 SAC 形成功能性 GABA(γ-氨基丁酸)介导的突触,而在优选侧上则不形成。然而,尚不清楚 SAC 和 DSGC 之间的不对称布线是如何在发育过程中建立的。在这里,我们报告说,在具有细胞类型特异性标记的转基因小鼠中,无论 SAC 位于 DSGC 的优选侧还是无侧,SAC 到 DSGC 的突触连接在出生后第一周的强度都是相等的。然而,到出生后第二周结束时,来自 DSGC 无侧 SAC 的突触强度显著增加,而来自 DSGC 优选侧 SAC 的突触强度保持不变。在此期间通过眼内注射毒蕈碱或加巴喷丁阻断视网膜活动并不能改变方向选择性的发育。因此,SAC 和 DSGC 之间的不对称抑制是通过一种发育程序实现的,该程序特异性地增强了来自无侧 SAC 的 GABA 介导的输入,而不依赖于神经活动。