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Biological clock in total darkness: The Clock/MOP3 circadian system of the blind subterranean mole rat

机译:完全黑暗中的生物钟:地下mole鼠的Clock / MOP3昼夜节律系统

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摘要

Blind subterranean mole rats retain a degenerated, subcutaneous, visually blind but functionally circadian eye involved in photoperiodic perception. Here we describe the cloning, sequence, and expression of the circadian Clock and MOP3 cDNAs of the Spalax ehrenbergi superspecies in Israel. Both genes are relatively conserved, although characterized by a significant number of amino acid substitutions. The glutamine-rich area of Clock, which is assumed to function in circadian rhythmicity, is expanded in Spalax compared with that of humans and mice, and is different in amino acid composition from that of rats. We also show that MOP3 is a bona fide partner of Spalax Clock and that the Spalax Clock/MOP3 dimer is less potent than its human counterpart in driving transcription. We suggest that this reduction in transcriptional activity may be attributed to the Spalax Clock glutamine-rich domain, which is unique in its amino acid composition compared with other studied mammalian species. Understanding Clock/MOP3 function could highlight circadian mechanisms in blind mammals and their unique pattern as a result of adapting to life underground.
机译:盲地下痣动物保留了退化的,皮下的,视觉上盲的但功能上昼夜节律的眼睛,参与了光周期感知。在这里,我们描述了Spalax ehrenbergi超级物种在以色列的昼夜节律时钟和MOP3 cDNA的克隆,序列和表达。这两个基因相对保守,尽管以大量的氨基酸取代为特征。与人和小鼠相比,Clock中富含谷氨酰胺的Clock假定具有昼夜节律性,并且在Spalax中的位置扩大了,并且氨基酸组成与大鼠不同。我们还表明,MOP3是Spalax Clock的真诚合作伙伴,并且Spalax Clock / MOP3二聚体在驱动转录方面的功能不如人类。我们建议这种转录活性的降低可能归因于Spalax Clock富含谷氨酰胺的域,与其他研究的哺乳动物物种相比,其氨基酸组成独特。了解Clock / MOP3的功能可能会突出盲人哺乳动物的昼夜节律机制及其因适应地下生物而产生的独特模式。

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