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Whole Number Distribution and Co-Expression of Brn3 Transcription Factors in Retinal Ganglion Cells of Adult Albino and Pigmented Rats

机译:整数在成年白化和色素的大鼠视网膜神经节细胞分布和共同表达BRN3转录因子

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摘要

The three members of the Pou4f family of transcription factors: Pou4f1, Pou4f2, Pou4f3 (Brn3a, Brn3b and Brn3c, respectively) play, during development, essential roles in the differentiation and survival of sensory neurons. The purpose of this work is to study the expression of the three Brn3 factors in the albino and pigmented adult rat. Animals were divided into these groups: i) untouched; ii) fluorogold (FG) tracing from both superior colliculli; iii) FG-tracing from one superior colliculus; iv) intraorbital optic nerve transection or crush. All retinas were dissected as flat-mounts and subjected to single, double or triple immunohistofluorescence The total number of FG-traced, Brn3a, Brn3b, Brn3c or Brn3 expressing RGCs was automatically quantified and their spatial distribution assessed using specific routines. Brn3 factors were studied in the general RGC population, and in the intrinsically photosensitive (ip-RGCs) and ipsilateral RGC sub-populations. Our results show that: i) 70% of RGCs co- express two or three Brn3s and the remaining 30% express only Brn3a (26%) or Brn3b; ii) the most abundant Brn3 member is Brn3a followed by Brn3b and finally Brn3c; iii) Brn3 a-, b- or c- expressing RGCs are similarly distributed in the retina; iv) The vast majority of ip-RGCs do not express Brn3; v) The main difference between both rat strains was found in the population of ipsilateral-RGCs, which accounts for 4.2% and 2.5% of the total RGC population in the pigmented and albino strain, respectively. However, more ipsilateral-RGCs express Brn3 factors in the albino than in the pigmented rat; vi) RGCs that express only Brn3b and RGCs that co-express the three Brn3 members have the biggest nuclei; vii) After axonal injury the level of Brn3a expression in the surviving RGCs decreases compared to control retinas. Finally, this work strengthens the validity of Brn3a as a marker to identify and quantify rat RGCs.
机译:Pou4f转录因子家族的三个成员:Pou4f1,Pou4f2,Pou4f3(分别为Brn3a,Brn3b和Brn3c)在发育过程中在感觉神经元的分化和存活中起重要作用。这项工作的目的是研究白化病和有色成年大鼠中三种Brn3因子的表达。将动物分为以下几类:i)未被触摸; ii)来自两个上丘陵的氟金(FG)示踪图; iii)从一个上丘的FG追踪; iv)眶内视神经横断或挤压。将所有视网膜切成平板,并进行单次,两次或三次免疫组织荧光分析。自动定量FG示踪的Brn3a,Brn3b,Brn3c或Brn3表达的RGC总数,并使用特定程序评估其空间分布。在一般的RGC群体以及本征光敏(ip-RGCs)和同侧RGC亚群中研究了Brn3因子。我们的结果表明:i)70%的RGC共表达两个或三个Brn3,其余30%仅表达Brn3a(26%)或Brn3b; ii)最丰富的Brn3成员是Brn3a,其次是Brn3b,最后是Brn3c; iii)Brn3 a-,b-或c-表达的RGCs同样分布在视网膜中; iv)绝大多数ip-RGC不表达Brn3; v)两种大鼠品系之间的主要差异是在同侧-RGCs群体中,分别占有色和白化品系中RGC总数的4.2%和2.5%。然而,与有色素的大鼠相比,在白化病中更多的同侧RGCs表达Brn3因子。 vi)仅表达Brn3b的RGC和共同表达三个Brn3成员的RGC具有最大的核; vii)轴突损伤后,存活RGC中的Brn3a表达水平与对照视网膜相比降低。最后,这项工作加强了Brn3a作为鉴定和定量大鼠RGC的标志物的有效性。

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