首页> 外文期刊>Visual Neuroscience: An International Journal for Empirical and Theoretical Research >Dopamine depletion with 6-OHDA enhances dopamine D1-receptor modulation of potassium currents in retinal bipolar cells.
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Dopamine depletion with 6-OHDA enhances dopamine D1-receptor modulation of potassium currents in retinal bipolar cells.

机译:用6-OHDA消耗多巴胺会增强视网膜双极细胞中钾电流的多巴胺D1受体调节。

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摘要

Ascorbate modulates IK(V) of ON-type mixed rod/cone bipolar cells (Mb) in the goldfish retinal slice through a dopamine D1/G-protein/PKA-coupled mechanism. We investigated the effects of dopamine depletion with intraocular injections of 6-OHDA on IK(V) and its modulation by ascorbate over 1-7 weeks following 6-OHDA treatment. Dopamine depletion was verified by tyrosine hydroxylase immunocytochemistry. Slices were perfused in a saline containing 200 microM sodium ascorbate. One-second puffs of ascorbate-free saline (zero [AA]o), delivered through a 2-3 microm diameter pipette, were directed at the bipolar cells. IK(V) was recorded by conventional whole-cell patch-clamp methods. In normal retinas, puffs of zero [AA]o caused a rapid (<100 ms) suppression of IK(V) of about 50% that lasted for several minutes. This effect was blocked by 1 microM SCH23390 and was unaffected by 2 mM Co2+ or 5 microM spiperone. 6-OHDA treatment resulted in major effects. First, IK(V) was reduced by approximately 50% for weeks 1-6, recovering to a 20% reduction by week 7. Second, puffs of zero [AA]o enhanced IK(V) rather than suppressed it. The enhancement was blocked by SCH23390 and the PKA inhibitor, Wiptide, but was insensitive to spiperone. Third, all parts of the Mb bipolar cell (except for the axon) were sensitive to puffs of zero [AA]o in both normal and 6-OHDA-treated retinas. Fourth, bath application of 20 microM dopamine restored the amplitude of IK(V) but did not reverse the effects of puffed zero [AA]o. IK(V) was fit by two exponentials; all of the effects on IK(V) were on the amplitude of the components and not on the time constants. Chronic dopamine depletion caused reversible changes in the properties of K+ channels underlying IK(V), as well as a long-term change in the intracellular coupling mechanisms between D1-receptor activation and the modulation of IK(V).
机译:抗坏血酸通过多巴胺D1 / G蛋白/ PKA偶联机制调节金鱼视网膜切片中ON型混合杆/锥双极细胞(Mb)的IK(V)。我们调查了6-OHDA治疗后1-7周内眼内注射6-OHDA对多巴胺耗竭对IK(V)的影响及其抗坏血酸对其的调节作用。通过酪氨酸羟化酶免疫细胞化学验证了多巴胺的消耗。将切片在含有200 microM抗坏血酸钠的盐水中灌注。通过2-3微米直径的移液管将一秒钟的无抗坏血盐盐水(零[AA] o)吹向双极细胞。 IK(V)通过常规的全细胞膜片钳方法记录。在正常的视网膜中,[AA] o为零时会导致快速(<100 ms)抑制IK(V)约50%,持续了几分钟。此作用被1 microM SCH23390阻断,而不受2 mM Co2 +或5 microM spiperone的影响。 6-OHDA处理产生重大影响。首先,第1-6周的IK(V)降低了约50%,到第7周恢复了20%的降低。其次,零[AA] o的喷吹增强了IK(V)而不是抑制了它。增强作用被SCH23390和PKA抑制剂Wiptide阻断,但对沙哌隆不敏感。第三,在正常和6-OHDA处理的视网膜中,Mb双极细胞的所有部分(轴突除外)都对零泡[AA]敏感。第四,洗澡应用20 microM多巴胺可恢复IK(V)的幅度,但不会逆转膨化零[AA] o的作用。 IK(V)由两个指数拟合;对IK(V)的所有影响都取决于分量的幅度,而不是时间常数。慢性多巴胺耗竭导致IK(V)下的K +通道特性发生可逆变化,以及D1受体激活与IK(V)调节之间的细胞内偶联机制发生长期变化。

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