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Rod Bipolar Cells and Horizontal Cells Form Displaced Synaptic Contacts With Rods in the Outer Nuclear Layer of the nob2 Retina

机译:杆双极细胞和水平细胞与nob2视网膜外核层中的杆形成位移的突触接触。

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摘要

The nob2 mouse carries a null mutation in the Cacna1f gene, which encodes the pore-forming subunit of the L-type calcium channel, Cav1.4. The loss of the electroretinogram b-wave in these mice suggests a severe reduction in transmission between photoreceptors and second-order neurons in the retina and supports a central role for the Cav1.4 calcium channel at photoreceptor ribbon synapses, to which it has been localized. Here we show that the loss of Cav1.4 leads to the aberrant outgrowth of rod bipolar cell dendrites and horizontal cell processes into the outer nuclear layer (ONL) of the nob2 retina and to the formation of ectopic synaptic contacts with rod photoreceptors in the ONL. Ectopic contacts are predominantly between rods and rod bipolar cells, with horizontal cell processes also present at some sites. Ectopic contacts contain apposed pre-and postsynaptic specializations, albeit with malformed synaptic ribbons. Cone photoreceptor terminals do not participate in ectopic contacts in the ONL. During retinal development, ectopic contacts appear in the days after eye opening, appearing progressively farther into the ONL at later postnatal stages. Ectopic contacts develop at the tips of rod bipolar cell dendrites and are less frequently associated with the tips of horizontal cell processes, consistent with the adult phenotype. The relative occurrence of pre- and postsynaptic markers in the ONL during development suggests a mechanism for the formation of ectopic synaptic contacts that is driven by the retraction of rod photoreceptor terminals and neurite outgrowth by rod bipolar cell dendrites.
机译:nob2小鼠在Cacna1f基因中携带一个无效突变,该基因编码L型钙通道Cav1.4的成孔亚基。这些小鼠的视网膜电图b波消失表明视网膜感光细胞和二级神经元之间的传输严重降低,并支持了Cav1.4钙通道在感光带突触中的核心作用。在这里我们表明,Cav1.4的丧失导致杆状双极细胞树突的异常生长和水平细胞过程进入nob2视网膜的外核层(ONL),并导致与杆状光感受器在ONL中形成异位突触接触。异位接触主要发生在杆和杆双极细胞之间,在某些部位还存在水平细胞过程。异位接触包含突触前和突触后专长,尽管突触带畸形。圆锥形感光终端不参与ONL中的异位接触。在视网膜发育过程中,异位接触出现在睁眼后的几天,并在产后后期逐渐进入ONL。异位接触发生在杆状双极细胞树突的尖端,与成年表型相一致的水平细胞过程的尖端较少出现。发育过程中ONL中突触前和突触后标记的相对出现提示异位突触接触的形成机制,该机制是由杆状双极细胞树突使杆状光感受器末端回缩和神经突向外生长驱动的。

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