首页> 外文期刊>Advances in Experimental Medicine and Biology >Identifying Key Networks Linked to Light-Independent Photoreceptor Degeneration in Visual Arrestin 1 Knockout Mice
【24h】

Identifying Key Networks Linked to Light-Independent Photoreceptor Degeneration in Visual Arrestin 1 Knockout Mice

机译:识别与在视觉诱导1敲除小鼠的视觉诱导中链接到与无关的光感受器变性的关键网络

获取原文
获取原文并翻译 | 示例
       

摘要

When visual arrestin 1 (ARR1, S-antigen, 48 KDa protein) was genetically knocked out in mice (original Arr1(-/-), designated Arr1(-/-A)), rod photoreceptors degenerated in a light-dependent manner. Subsequently, a light-independent cone dystrophy was identified with minimal rod death in ARR1 knockout mice (Arr1(-/-A)Arr4(+/+), designated Arr1(-/-B)), which were F2 littermates from breeding the original Arr1(-/-A) and cone arrestin knockout 4 (Arr4(-/-)) mice. To resolve the genetic and phenotypic differences between the two ARR1 knockouts, we performed Affymetrix (TM) exon array analysis to focus on the potential differential gene expression profile and to explore the molecular and cellular pathways leading to this observed susceptibility to cone dystrophy in Arr1(-/-B) compared to Arr1(-/-A) or control Arr1(+/+) Arr4(+/+) (wild type [WT]). Only in the Arr1(-/-B) retina did we observe an up-regulation of retinal transcripts involved in the immune response, inflammatory response and JAK-STAT signaling molecules, OSMR beta and phosphorylation of STAT3. Of these responses, the complement system was significantly higher, and a variety of inflammatory responses by complement regulation and anti-inflammatory cytokine or factors were identified in Arr1(-/-B) retinal transcripts. This discovery supports that Arr1(-/-B) has a distinct genetic background from Arr1(-/-A) that results in alterations in its retinal phenotype leading to susceptibility to cone degeneration induced by inappropriate inflammatory and immune responses.
机译:当视觉诱导1(ARR1,S-Antigen,48kDa蛋白)在小鼠中遗传灭绝时(原始Arr1( - / - ),指定的ARR1( - / - A)),杆光感受器以光依赖性方式退化。随后,用ARR1敲除小鼠中的最小杆死亡(ARR1( - / - A)ARR4(+ / +),指定的ARR1( - / - B))鉴定了轻微的锥体营养不良症(Arr1( - / - a)Arr4( - / - b)),其是来自繁殖的F2凋落物原始Arr1( - / - a)和锥体捕获锁定4(Arr4( - / - ))小鼠。为了解决两个ARR1敲除之间的遗传和表型差异,我们进行了Affymetrix(TM)外显子阵列分析,重点关注潜在的差异基因表达谱,并探讨导致ARR1中对锥营养不良的易感性的分子和细胞途径( - / - b)与ARR1( - / - a)或控制ARR1(+ / +)ARR4(+ / +)(野生型[WT])相比。只有在ARR1( - / - B)视网膜中,我们是否观察到涉及免疫应答,炎症反应和JAK-STAT信号分子,OSMRβ和STAT3的磷酸化的视网膜转录物的上调。在这些反应中,补体系统显着升高,在Arr1( - / - B)视网膜转录物中鉴定了补体调节和抗炎细胞因子或因子的各种炎症反应。该发现支持ARR1( - / - B)具有来自ARR1( - / - A)的不同的遗传背景,导致其视网膜表型的改变,导致不适当的炎症和免疫应答诱导的锥变性的易感性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号