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重新评估肌营养不良蛋白在小鼠视网膜中的定位。

Reevaluation of dystrophin localization in the mouse retina.

机构信息

Translational Medicine and Neurogenetics, Institut de Ge´ne´tique et deBiologie Mole´culaire et Cellulaire, Universite´ de Strasbourg, Illkirch Cedex, France.

出版信息

Invest Ophthalmol Vis Sci. 2011 Oct 7;52(11):7901-8. doi: 10.1167/iovs.11-7519.

Abstract

PURPOSE. The roles of dystrophins in retinal physiology remain elusive. The lack of proper clustering of the potassium channel Kir4.1 and of the aquaporin AQP4 was proposed to be the basis of the ERG abnormality observed in many Duchenne muscular dystrophy (DMD) patients. However, the electroretinogram of Dp71-null mice, in which this clustering is disrupted, shows only a moderate reduction of the b-wave with no change in the implicit times. Additionally, the deficit in color discrimination found in DMD patients is hard to explain through the known expression of DMD gene products. The authors thus decided to reexamine their distribution in the mouse retina. METHODS. Messenger RNA distribution was assessed by PCR coupled to laser microdissection of the outer and inner nuclear layers and by in situ hybridization for Dp427. Mouse retinas were double labeled for dystrophins versus presynaptic and postsynaptic proteins or antibodies specific for Dp427 or Dp427+Dp260. RESULTS. Messengers for Dp427, Dp260, and Dp140 were present in the inner nuclear layer. Dp427 mRNA was further detected in bipolar cells and in some amacrine cells by in situ hybridization. Comparative labeling in wild-type and mdx(5Cv) retinas (lacking Dp427) indicated a differential distribution of Dp427 and Dp260 between rod and cone terminals. CONCLUSIONS. In addition to their localization in photoreceptor terminals, Dp427, Dp260, and Dp140 are expressed in inner nuclear layer neurons, notably in bipolar cells for Dp427. Dp427 was proportionally more expressed in cone- than in rod-associated synapses compared with Dp260.

摘要

目的

在视网膜生理学中,dystrophins 的作用仍然难以捉摸。有人提出,钾通道 Kir4.1 和水通道蛋白 AQP4 的适当聚集缺失是许多杜氏肌营养不良症(DMD)患者观察到的 ERG 异常的基础。然而,Dp71 缺失小鼠的视网膜电图显示,尽管这种聚集被破坏,但 b 波只有适度降低,而潜伏期没有变化。此外,DMD 患者的色觉辨别缺陷很难通过已知的 DMD 基因产物表达来解释。因此,作者决定重新检查它们在小鼠视网膜中的分布。

方法

通过激光微切割外核层和内核层并进行原位杂交,评估信使 RNA 的分布,用于 Dp427。对小鼠视网膜进行双重标记,用于 dystrophins 与突触前和突触后蛋白或针对 Dp427 或 Dp427+Dp260 的抗体。

结果

Dp427、Dp260 和 Dp140 的信使存在于内核层中。通过原位杂交,Dp427 mRNA 进一步在双极细胞和一些无长突细胞中被检测到。在野生型和 mdx(5Cv) 视网膜(缺乏 Dp427)的比较标记中,Dp427 和 Dp260 在视杆和视锥末端之间表现出不同的分布。

结论

除了在光感受器末端的定位外,Dp427、Dp260 和 Dp140 还在内核层神经元中表达,特别是在双极细胞中表达 Dp427。与 Dp260 相比,Dp427 在与视锥相关的突触中表达比例更高。

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