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Altered gene expression in tree shrew retina and retinal pigment epithelium produced by short periods of minus-lens wear

机译:短时佩戴负透镜会导致树sh视网膜和视网膜色素上皮细胞基因表达改变

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摘要

Hyperopic refractive error is detected by retinal neurons, which generate GO signals through a direct emmetropization signaling cascade: retinal pigment epithelium (RPE) into choroid and then into sclera, thereby increasing axial elongation. To examine signaling early in this cascade, we measured gene expression in the retina and RPE after short exposure to hyperopia produced by minus-lens wear. Gene expression in each tissue was compared with gene expression in combined retina+RPE. Starting 24 days after normal eye opening, three groups of juvenile tree shrews (n = 7 each) wore a monocular −5 D lens. The untreated fellow eye served as a control. The “6h” group wore the lens for 6 hours (h); the “24h” group wore the lens for 24 h; each group provided separate retina and RPE tissues. Group “24hC” wore the lens for 24 h and provided combined retina+RPE tissue. Quantitative PCR was used to measure the relative differences (treated eye vs. control eye) in mRNA levels for 66 candidate genes. In the retina after 6 h, mRNA levels for seven genes were significantly regulated: EGR1 and FOS (early intermediate genes) were down-regulated in the treated eyes. Genes with secreted protein products, BMP2 and CTGF, were down-regulated, whilst FGF10, IL18, and SST were up-regulated. After 24 h the pattern changed; only one of the seven genes still showed differential expression; BMP2 was still down-regulated. Two new genes with secreted protein products, IGF2 and VIP, were up-regulated. In the RPE, consistent with its role in receiving, processing, and transmitting GO signaling, differential expression was found for genes whose protein products are at the cell surface, intracellular, in the nucleus, and are secreted. After 6 h, mRNA levels for 17 genes were down-regulated in the treated eyes, whilst four genes (GJA1, IGF2R, LRP2, and IL18) were up-regulated. After 24 h the pattern was similar; mRNA levels for 14 of the same genes were still down-regulated; only LRP2 remained up-regulated. mRNA levels for six genes no longer showed differential expression, whilst nine genes, not differentially expressed at 6 h, now showed differential expression. In the combined retina+RPE after 24 h, mRNA levels for only seven genes were differentially regulated despite the differential expression of many genes in the RPE. Four genes showed the same expression in combined tissue as in retina alone, including up-regulation of VIP despite significant VIP down-regulation in RPE. Thus, hyperopia-induced GO signaling, as measured by differential gene expression, differs in the retina and the RPE. Retinal gene expression changed between 6 h and 24 h of treatment, suggesting evolution of the retinal response. Gene expression in the RPE was similar at both time points, suggesting sustained signaling. The combined retina+RPE does not accurately represent gene expression in either retina or, especially, RPE. When gene expression signatures were compared with those in choroid and sclera, GO signaling, as encoded by differential gene expression, differs in each compartment of the direct emmetropization signaling cascade.
机译:远视屈光不正由视网膜神经元检测,视网膜神经元通过直接正视信号传导级联产生GO信号:视网膜色素上皮(RPE)进入脉络膜,然后进入巩膜,从而增加轴向伸长率。为了检查该级联中的早期信号传导,我们在短时暴露由负透镜佩戴产生的远视后,测量了视网膜和RPE中的基因表达。将每个组织中的基因表达与组合的视网膜+ RPE中的基因表达进行比较。从正常睁眼后24天开始,三组幼树tree(每组n = 7)戴了单眼-5 D晶状体。未经治疗的另一只眼睛作为对照。 “ 6h”组戴了6个小时(h)的镜片; “ 24小时”小组戴了24小时的眼镜;每组提供单独的视网膜和RPE组织。 “ 24hC”组佩戴晶状体24小时,并提供视网膜+ RPE联合组织。定量PCR用于测量66个候选基因在mRNA水平上的相对差异(治疗眼与对照眼)。 6小时后,在视网膜中,七个基因的mRNA水平受到显着调节:在治疗后的眼睛中EGR1和FOS(早期中间基因)被下调。具有分泌蛋白产物BMP2和CTGF的基因被下调,而FGF10,IL18和SST被上调。 24小时后,模式改变了。七个基因中只有一个仍显示差异表达。 BMP2仍被下调。具有分泌蛋白产物的两个新基因IGF2和VIP被上调。在RPE中,与其在接收,处理和传递GO信号中的作用一致,发现其蛋白质产物位于细胞表面,细胞内,细胞核中并被分泌的基因存在差异表达。 6小时后,处理过的眼睛中17个基因的mRNA水平下调,而四个基因(GJA1,IGF2R,LRP2和IL18)上调。 24小时后,模式相似。 14个相同基因的mRNA水平仍被下调;只有LRP2保持上调。 6个基因的mRNA水平不再显示差异表达,而6小时时没有差异表达的9个基因现在显示差异表达。在24小时后的视网膜+ RPE联合治疗中,尽管RPE中许多基因的差异表达,但仅七个基因的mRNA水平受到差异调节。四个基因在合并组织中的表达与单独在视网膜中的表达相同,包括VIP的上调,尽管RPE中VIP显着下调。因此,通过差异基因表达测量的远视眼诱发的GO信号转导在视网膜和RPE中是不同的。视网膜基因表达在治疗的6小时至24小时之间发生变化,表明视网膜反应的演变。在两个时间点,RPE中的基因表达相似,表明持续的信号传导。视网膜+ RPE的组合不能准确代表视网膜或RPE中的基因表达。当将基因表达特征与脉络膜和巩膜中的基因表达特征进行比较时,由差异基因表达编码的GO信号传导在直接正离子化信号传导级联的每个区室中都不同。

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