Oi Hanako, Chiba Chikafumi, Saito Takehiko
Institute of Biological Sciences, The University of Tsukuba, Tsukuba, Ibaraki 305-8572, Japan.
Vision Res. 2003 Dec;43(27):2847-59. doi: 10.1016/j.visres.2003.07.006.
Changes in the gap junctional coupling and maturation of voltage-activated Na(+) currents during regeneration of newt retinas were examined by whole-cell patch-clamping in slice preparations. Progenitor cells in regenerating retinas did not exhibit Na(+) currents but showed prominent electrical and tracer couplings. Cells identified by LY-fills were typically slender. Na(+) currents were detected in premature ganglion cells with round somata in the 'intermediate-II' regenerating retina. No electrical and tracer couplings were observed between these cells. Mature ganglion cells did not exhibit electrical coupling, but showed tracer coupling. On average, the maximum Na(+) current amplitude recorded from premature ganglion cells was roughly 2.5-fold smaller than that of mature ganglion cells. In addition, the activation threshold of the Na(+) current was nearly 11 mV more positive than that of mature cells. We provide morphological and physiological evidence showing that loss of gap junctions between progenitor cells is associated with ganglion cell differentiation during retinal regeneration and that new gap junctions are recreated between mature ganglion cells. Also we provide evidence suggesting that the loss of gap junctions correlates with the appearance of voltage-activated Na(+) currents in ganglion cells.
通过在视网膜切片标本上进行全细胞膜片钳记录,研究了蝾螈视网膜再生过程中缝隙连接耦合的变化以及电压门控性钠电流(Na(+)电流)的成熟情况。再生视网膜中的祖细胞不表现出Na(+)电流,但显示出显著的电耦合和示踪剂耦合。经LY标记识别的细胞通常较为细长。在“中间-II”再生视网膜中,具有圆形胞体的早熟神经节细胞检测到了Na(+)电流。这些细胞之间未观察到电耦合和示踪剂耦合。成熟神经节细胞不表现电耦合,但显示出示踪剂耦合。平均而言,早熟神经节细胞记录到的最大Na(+)电流幅度比成熟神经节细胞小约2.5倍。此外,Na(+)电流的激活阈值比成熟细胞正约11 mV。我们提供了形态学和生理学证据,表明祖细胞之间缝隙连接的丧失与视网膜再生过程中神经节细胞的分化有关,并且成熟神经节细胞之间重新形成了新的缝隙连接。我们还提供了证据表明,缝隙连接的丧失与神经节细胞中电压门控性Na(+)电流的出现相关。