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首页> 外文期刊>The Journal of Physiology >Free magnesium concentration in salamander photoreceptor outer segments.
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Free magnesium concentration in salamander photoreceptor outer segments.

机译:sal感光体外部部分的游离镁浓度。

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Magnesium ions (Mg2+) play an important role in biochemical functions. In vertebrate photoreceptor outer segments, numerous reactions utilize MgGTP and MgATP, and Mg2+ also regulates several of the phototransduction enzymes. Although Mg2+ can pass through light-sensitive channels under certain conditions, no clear extrusion mechanism has been identified and removing extracellular Mg2+ has no significant effect on the light sensitivity or the kinetics of the photoresponse. We have used the fluorescent Mg2+ dye Furaptra to directly measure and monitor the free Mg2+ concentration in photoreceptor outer segments and examine whether the free Mg2+ concentration changes under physiological conditions. Resting free Mg2+ concentrations in bleached salamander rod and cone photoreceptor cell outer segments were 0.86 +/- 0.06 and 0.81 +/- 0.09 mM, respectively. The outer segment free Mg2+ concentration was not significantly affected by changes in extracellular pH, Ca2+ and Na+, excluding a significant role for therespective exchangers in the regulation of Mg2+ homeostasis. The resting free Mg2+ concentration was also not significantly affected by exposure to 0 Mg2+, suggesting the lack of significant basal Mg2+ flux. Opening the cGMP-gated channels led to a significant increase in the Mg2+ concentration in the absence of Na+ and Ca2+, but not in their presence, indicating that depolarization can cause a significant Mg2+ influx only in the absence of other permeant ions, but not under physiological conditions. Finally, light stimulation did not change the Mg2+ concentration in the outer segments of dark-adapted photoreceptors. The results suggest that there are no influx and efflux pathways that can significantly affect the Mg2+ concentration in the outer segment under physiological conditions. Therefore, it is unlikely that Mg2+ plays a significant role in the dynamic modulation of phototransduction.
机译:镁离子(Mg2 +)在生化功能中起重要作用。在脊椎动物感光体外部,许多反应利用MgGTP和MgATP,Mg2 +也调节几种光转导酶。尽管Mg2 +可以在某些条件下通过光敏通道,但尚未确定明确的挤出机制,并且去除细胞外Mg2 +对光敏性或光响应动力学没有明显影响。我们已经使用荧光Mg2 +染料Furaptra直接测量和监测感光器外部片段中的游离Mg2 +浓度,并检查在生理条件下游离Mg2 +浓度是否发生变化。漂白sal棒和视锥细胞感光细胞外部的静止Mg2 +浓度分别为0.86 +/- 0.06和0.81 +/- 0.09 mM。外段游离Mg2 +的浓度不受细胞外pH,Ca2 +和Na +的变化的显着影响,除了各自的交换子在调节Mg2 +稳态中的重要作用外。静置的游离Mg2 +浓度也不受暴露于0 Mg2 +的显着影响,表明缺乏显着的基础Mg2 +通量。在不存在Na +和Ca2 +的情况下,打开cGMP门控通道会导致Mg2 +浓度的显着增加,但在不存在它们的情况下,则表明去极化仅在不存在其他渗透离子的情况下才能引起大量Mg2 +的流入,但在没有其他渗透离子的情况下不会发生。生理条件。最后,光刺激并没有改变暗适应的感光细胞外部的Mg2 +浓度。结果表明,在生理条件下,没有可显着影响外段Mg2 +浓度的流入和流出途径。因此,Mg2 +不太可能在光转导的动态调制中起重要作用。

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