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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Exceptionally high thermal sensitivity of rattlesnake TRPA1 correlates with peak current amplitude
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Exceptionally high thermal sensitivity of rattlesnake TRPA1 correlates with peak current amplitude

机译:响尾蛇TRPA1异常高的热灵敏度与峰值电流幅度相关

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Extraordinary infrared-sensing ability of snake pit organs closely correlates with rich expression of TRPA1 transcripts in pit-innervating sensory neurons, strongly suggesting that TRPA1 is the molecular basis of the infrared detection. Here, it is shown that temperature coefficient Q10 (the fold current increase over 10 degrees C increase) of rattlesnake TRPA1 heterologously expressed in Xenopus oocytes increases proportionally to current amplitudes when appraised with two independent methods, the canonical Arrhenius plot analysis and newly devised Q10 scanning that assigns Q10 to each recorded temperature point Moreover, for larger TRPA1 currents, the rise of Q10 from elevation of current sizes was steeper, yielding maximal Q10s up to similar to 100,000. TRPA1 from boas with less sensitive infrared-sensing ability was also sharply activated by temperature increase in oocytes, while Q10 rise from escalating current amplitudes was moderate compared to rattlesnake TRPA1. In contrast, thermal sensitivity of Drosophila TRPA1 was little dependent on current sizes, indicating that the steeply proportional current amplitude/thermosensitivity relationship is unique to the snake TRPA1s. Taken together, rattlesnake and boa TRPA1s are regulated to generate sufficient thermal sensitivity for infrared detection, providing an interesting context to further study the temperature-dependent activation mechanism of thermo-TRPs. (C) 2015 Elsevier B.V. All rights reserved.
机译:蛇窝器官的非凡的红外传感能力与激活神经的感觉神经元中TRPA1转录本的丰富表达密切相关,强烈暗示TRPA1是红外检测的分子基础。在这里,当用两种独立的方法,规范的阿伦尼乌斯图分析法和新设计的Q10扫描法评估时,在爪蟾卵母细胞中异源表达的响尾蛇TRPA1的温度系数Q10(倍数电流增加超过10摄氏度)表明与电流幅度成正比。将Q10分配给每个记录的温度点。此外,对于更大的TRPA1电流,Q10从电流大小的升高中的上升更陡峭,产生的最大Q10高达100,000。卵母细胞温度升高也使具有较弱红外感应能力的蟒蛇的TRPA1急剧活化,而与响尾蛇TRPA1相比,Q10来自不断升高的电流幅度的上升幅度适中。相比之下,果蝇TRPA1的热敏性几乎不依赖于电流大小,这表明陡峭比例的电流幅度/热敏性关系是蛇形TRPA1所特有的。两者合在一起,响尾蛇和蟒蛇TRPA1s受到监管,以产生足够的红外检测热敏性,为进一步研究温度依赖性TRPs的活化机制提供了有趣的环境。 (C)2015 Elsevier B.V.保留所有权利。

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