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首页> 外文期刊>Journal of General Physiology >The light peak of the electroretinogram is dependent on voltage-gated calcium channels and antagonized by bestrophin (Best-1)
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The light peak of the electroretinogram is dependent on voltage-gated calcium channels and antagonized by bestrophin (Best-1)

机译:视网膜电图的光峰取决于电压门控的钙通道,并被Bestrophin(Best-1)拮抗

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摘要

Mutations in VMD2, encoding bestrophin (best-1), cause Best vitelliform macular dystrophy (BMD), adult-onset vitelliform macular dystrophy (AVMD), and autosomal dominant vitreoretinochoroidopathy (ADVIRC). BMD is distinguished from AVMD by a diminished electrooculogram light peak (LP) in the absence of changes in the flash electroretinogram. Although the LP is thought to be generated by best-1, we find enhanced LP luminance responsiveness with normal amplitude in Vmd2(-/-) mice and no differences in cellular Cl- currents in comparison to Vmd2(+/+) littermates. The putative Ca2+ sensitivity of best-1, and our recent observation that best-1 alters the kinetics of voltage-dependent Ca2+ channels (VDCC), led us to examine the role of VDCCs in the LP. Nimodipine diminished the LP, leading us to survey VDCC beta-subunit mutant mice. Lethargic mice, which harbor a loss of function mutation in the beta(4) subunit of VDCCs, exhibited a significant shift in LP luminance response, establishing a role for Ca2+ in LP generation. When stimulated with ATP, which increases [Ca++](I), retinal pigment epithelial cells derived from Vmd2(-/-) mice exhibited a fivefold greater response than Vmd2(+/+) littermates, indicating that best-1 can suppress the rise in [Ca2+](I) associated with the LP. We conclude that VDCCs regulated by a beta(4) subunit are required to generate the LP and that best-1 antagonizes the LP luminance response potentially via its ability to modulate VDCC function. Furthermore, we suggest that the loss of vision associated with BMD is not caused by the same pathologic process as the diminished LP, but rather is caused by as yet unidentified effects of best-1 on other cellular processes.
机译:编码Bestrophin(best-1)的VMD2突变会导致最佳黄体样黄斑营养不良(BMD),成年发作的黄体样黄斑营养不良(AVMD)和常染色体显性玻璃体视网膜脉络膜病变(ADVIRC)。 BMD与AVMD的区别在于眼电图光峰值(LP)减小,而闪光视网膜电图无变化。尽管LP被认为是由best-1生成的,但我们发现Vmd2(-/-)小鼠中LP亮度响应具有正常幅度,并且与Vmd2(+ / +)同窝仔相比,细胞Cl-电流没有差异。最佳1的假定的Ca2 +敏感性,以及我们最近对最佳1的观察改变了电压依赖性Ca2 +通道(VDCC)的动力学,导致我们研究了VDCC在LP中的作用。尼莫地平使LP减小,导致我们调查VDCCβ亚基突变小鼠。昏睡的小鼠,VDCC的beta(4)亚基中的功能突变丢失,表现出LP亮度响应的重大转变,建立了Ca2 +在LP产生中的作用。当ATP刺激增加[Ca ++](I)时,源自Vmd2(-/-)小鼠的视网膜色素上皮细胞表现出比Vmd2(+ / +)同窝幼仔大五倍的响应,表明best-1可以抑制这种升高在与LP相关的[Ca2 +](I)中。我们得出的结论是,需要由beta(4)亚基调节的VDCC才能生成LP,而best-1可能通过其调节VDCC功能的能力来拮抗LP亮度响应。此外,我们建议与BMD相关的视力丧失不是由与LP减少相同的病理过程引起的,而是由best-1对其他细胞过程的尚未确定的作用引起的。

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