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RGS9 基因敲除导致 ON-双极细胞的光反应出现短暂延迟。

RGS9 knockout causes a short delay in light responses of ON-bipolar cells.

机构信息

Albert Eye Research Institute, Duke University, Durham, North Carolina, United States of America.

出版信息

PLoS One. 2011;6(11):e27573. doi: 10.1371/journal.pone.0027573. Epub 2011 Nov 11.

Abstract

RGS9 and R9AP are components of the photoreceptor-specific GTPase activating complex responsible for rapid inactivation of the G protein, transducin, in the course of photoresponse recovery from excitation. The amount of this complex in photoreceptors is strictly dependent on the expression level of R9AP; consequently, the knockouts of either RGS9 or R9AP cause comparable delays in photoresponse recovery. While RGS9 is believed to be present only in rods and cones, R9AP is also expressed in dendritic tips of ON-bipolar cells, which receive synaptic inputs from photoreceptors. Recent studies demonstrated that knockouts of R9AP and its binding partner in ON-bipolar cells, RGS11, cause a small delay in ON-bipolar cell light responses manifested as a delayed onset of electroretinography b-waves. This led the authors to suggest that R9AP and RGS11 participate in regulating the kinetics of light responses in these cells. Here we report the surprising finding that a nearly identical b-wave delay is observed in RGS9 knockout mice. Given the exclusive localization of RGS9 in photoreceptors, this result argues for a presynaptic origin of the b-wave delay in this case and perhaps in the case of the R9AP knockout as well, since R9AP is expressed in both photoreceptors and ON-bipolar cells. We also conducted a detailed analysis of the b-wave rising phase kinetics in both knockout animal types and found that, despite a delayed b-wave onset, the slope of the light response is unaffected or increased, dependent on the light stimulus intensity. This result is inconsistent with a slowdown of response propagation in ON-bipolar cells caused by the R9AP knockout, further arguing against the postsynaptic nature of the delayed b-wave phenotype in RGS9 and R9AP knockout mice.

摘要

RGS9 和 R9AP 是光感受器特异性 GTP 酶激活复合物的组成部分,负责在光响应恢复过程中快速失活 G 蛋白转导素。该复合物在光感受器中的数量严格依赖于 R9AP 的表达水平;因此,RGS9 或 R9AP 的敲除都会导致光响应恢复的延迟相当。虽然 RGS9 被认为仅存在于视杆和视锥细胞中,但 R9AP 也在接收来自光感受器的突触输入的 ON-双极细胞的树突末梢中表达。最近的研究表明,ON-双极细胞中的 R9AP 和其结合伴侣 RGS11 的敲除会导致 ON-双极细胞光反应的小延迟,表现为视网膜电图 b 波的起始延迟。这导致作者提出 R9AP 和 RGS11 参与调节这些细胞中光反应的动力学。在这里,我们报告了一个令人惊讶的发现,即在 RGS9 敲除小鼠中观察到几乎相同的 b 波延迟。鉴于 RGS9 的专有定位在光感受器中,这一结果表明在这种情况下 b 波延迟具有突触前起源,并且在 R9AP 敲除的情况下也是如此,因为 R9AP 既在光感受器中表达,也在 ON-双极细胞中表达。我们还对两种敲除动物类型的 b 波上升相动力学进行了详细分析,发现尽管 b 波起始延迟,但光响应的斜率不受影响或增加,这取决于光刺激强度。这一结果与 R9AP 敲除导致 ON-双极细胞中反应传播减慢的情况不一致,进一步反对 RGS9 和 R9AP 敲除小鼠中延迟 b 波表型的突触后性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c6a7/3214071/c20c3bcb6811/pone.0027573.g001.jpg

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