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Retinal pathways influence temporal niche

机译:视网膜通路影响颞位

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摘要

In mammals, light input from the retina entrains central circadian oscillators located in the suprachiasmatic nuclei (SCN). The phase of circadian activity rhythms with respect to the external light:dark cycle is reversed in diurnal and nocturnal species, although the phase of SCN rhythms relative to the light cycle remains unchanged. Neural mechanisms downstream from the SCN are therefore believed to determine diurnality or noctumality. Here, we report a switch from nocturnal to diurnal entrainment of circadian activity rhythms in double-knockout mice lacking the inner-retinal photopigment melanopsin (OPN4) and RPE65, a key protein used in retinal chromophore recycling. These mice retained only a small amount of rod function. The change in entrainment phase of Rpe65~(-/-);Opn4~(-/-) mice was accompanied by a reversal of the rhythm of clock gene expression in the SCN and a reversal in acute masking effects of both light and darkness on activity, suggesting that the nocturnal to diurnal switch is due to a change in the neural response to light upstream from the SCN. A switch from nocturnal to diurnal activity rhythms was also found in wild-type mice transferred from standard intensity light:dark cycles to light:dark cycles in which the intensity of the light phase was reduced to scotopic levels. These results reveal a novel mechanism by which changes in retinal input can mediate acute temporal-niche switching.
机译:在哺乳动物中,来自视网膜的光输入会带动位于视交叉上核(SCN)的中央昼夜节律振荡器。昼夜活动和昼夜活动物种相对于外部光的昼夜活动节律的相位相反,尽管相对于光循环的SCN节律的相位保持不变。因此,据信SCN下游的神经机制决定了昼夜或夜尿。在这里,我们报道了缺乏内视网膜光色素黑素(OPN4)和RPE65(一种用于视网膜发色团回收的关键蛋白)的双敲除小鼠的昼夜节律活动节律从夜间转为昼夜转换。这些小鼠仅保留少量的杆功能。 Rpe65〜(-/-); Opn4〜(-/-)小鼠的夹带相的变化伴随着SCN中Clock基因表达的节奏的逆转以及明暗对小鼠的急性掩蔽效应的逆转这表明夜间向昼夜转换是由于对SCN上游光的神经反应发生了变化。在从标准强度的光:暗周期转移到光:暗周期的野生型小鼠中,也发现了从夜间活动到昼夜活动节律的转换,其中光相的强度降低到了暗视水平。这些结果揭示了一种新颖的机制,通过该机制,视网膜输入的变化可以介导急性时空位转换。

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