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Molecular Prerequisites for Diminished Cold Sensitivity in Ground Squirrels and Hamsters

机译:地松鼠和仓鼠中寒冷敏感度减少的分子先决条件

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Summary Thirteen-lined ground squirrels and Syrian hamsters are known for their ability to withstand cold during hibernation. We found that hibernators exhibit cold tolerance even in the active state. Imaging and electrophysiology of squirrel somatosensory neurons reveal a decrease in cold sensitivity of TRPM8-expressing cells. Characterization of squirrel and hamster TRPM8 showed that the channels are chemically activated but exhibit poor activation by cold. Cold sensitivity can be re-introduced into squirrel and hamster TRPM8 by transferring the transmembrane domain from the cold sensitive rat ortholog. The same can be achieved in squirrel TRPM8 by mutating only six amino acids. Reciprocal mutations suppress cold sensitivity of the rat ortholog, supporting functional significance of these residues. Our results suggest that ground squirrels and hamsters exhibit reduced cold sensitivity, partially due to modifications in the transmembrane domain of TRPM8. Our?study reveals molecular adaptations that accompany cold tolerance in two species of mammalian hibernators.
机译:概述十三个衬里的地松鼠和叙利亚仓鼠以其在冬眠期间承受寒冷的能力而闻名。我们发现即使在活跃状态下也表现出耐寒性的耐寒性。松鼠躯体感觉神经元的成像和电生理学揭示了TRPM8表达细胞冷敏感性的降低。灰鼠和仓鼠TRPM8的表征表明,通道在化学上活化,但通过冷激活差。通过从冷敏大鼠矫正器转移跨膜结构域,可以将冷敏感性重新引入鼠鼠和仓鼠TRPM8。通过仅突变六个氨基酸,可以在鼠鼠TRPM8中实现该相同。互核突变抑制大鼠矫敏性的冷敏感性,支持这些残留物的功能意义。我们的结果表明,地松鼠和仓鼠表现出降低的冷敏感性,部分原因是TRPM8的跨膜结构域的修饰。我们的研究表明,伴随着两种哺乳动物冬二嵌粒子的耐寒性的分子适应。

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