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A typology of photoreceptor gene expression patterns in the mouse

机译:小鼠中感光细胞基因表达模式的类型学

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Mutations in photoreceptor-enriched genes have been implicated in dozens of human retinal diseases, yet no systematic analysis of rod and cone gene expression patterns has been carried out. In addition, although cone photoreceptor loss accounts for much of the morbidity of retinal disease, relatively few cone-specific genes are known. In this study, we carried out microarray and in situ hybridization analyses of the mouse Neural retina leucine zipper gene (Nrl) mutant, which shows an en masse conversion of rods into cones, to establish a typology of photoreceptor gene expression and to identify novel cone-specific genes. We found a total of 18 new cone-enriched genes, some of which map near uncloned retinal disease loci. Several of these genes have a dorsal-ventral (D-V) pattern of expression similar to that of short- or medium-wavelength opsins. We carried out microarray analysis of dorsal and ventral microdissected WT retina and found additional photoreceptor genes with an asymmetric distribution. Overall, we found that photoreceptor genes fall on an expression spectrum from rod-specific to cone-specific, with many showing varying degrees of rod and cone coexpression. These expression patterns can be reliably predicted from microarray data alone. Our results demonstrate definitive molecular differences between rods and cones that may underlie the physiological differences between these two classes of photoreceptors.
机译:富含光感受器的基因突变已牵涉到数十种人类视网膜疾病中,但尚未对杆和锥基因表达模式进行系统分析。另外,尽管视锥细胞感光细胞损失占视网膜疾病发病率的大部分,但已知相对较少的视锥细胞特异性基因。在这项研究中,我们进行了小鼠神经视网膜亮氨酸拉链基因(Nrl)突变体的微阵列和原位杂交分析,该突变体表明杆大量转化为视锥细胞,以建立光感受器基因表达的类型并鉴定新视锥细胞。特异性基因。我们发现了总共18个新的富含视锥细胞的基因,其中一些位于未克隆的视网膜疾病基因座附近。这些基因中的几个具有类似于短波或中波视蛋白的背腹(D-V)表达模式。我们进行了背面和腹侧显微解剖野生型视网膜的微阵列分析,发现了其他具有不对称分布的感光基因。总体而言,我们发现光感受器基因的表达谱范围从杆特异性到视锥特异性,其中许多显示杆和视锥共表达的程度不同。可以仅从微阵列数据可靠地预测这些表达模式。我们的结果表明,在杆和锥之间存在明确的分子差异,这可能是这两类光感受器之间生理差异的基础。

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