Key Laboratory of Gene Engineering of the Ministry of Education, School of Life Sciences, Sun Yat-Sen University, Guangzhou, People's Republic of China.
PLoS One. 2011;6(12):e28644. doi: 10.1371/journal.pone.0028644. Epub 2011 Dec 7.
TRPA1 is a calcium ion channel protein recently identified as the infrared receptor in pit organ-containing snakes. Therefore, understanding the molecular evolution of TRPA1 may help to illuminate the origin of "heat vision" in snakes and reveal the molecular mechanism of infrared sensitivity for TRPA1. To this end, we sequenced the infrared sensory gene TRPA1 in 24 snake species, representing nine snake families and multiple non-snake outgroups. We found that TRPA1 is under strong positive selection in the pit-bearing snakes studied, but not in other non-pit snakes and non-snake vertebrates. As a comparison, TRPV1, a gene closely related to TRPA1, was found to be under strong purifying selection in all the species studied, with no difference in the strength of selection between pit-bearing snakes and non-pit snakes. This finding demonstrates that the adaptive evolution of TRPA1 specifically occurred within the pit-bearing snakes and may be related to the functional modification for detecting infrared radiation. In addition, by comparing the TRPA1 protein sequences, we identified 11 amino acid sites that were diverged in pit-bearing snakes but conserved in non-pit snakes and other vertebrates, 21 sites that were diverged only within pit-vipers but conserved in the remaining snakes. These specific amino acid substitutions may be potentially functional important for infrared sensing.
瞬时受体电位通道 A1(TRPA1)是一种钙离子通道蛋白,最近被鉴定为含坑器官蛇类的红外感受器。因此,了解 TRPA1 的分子进化可能有助于阐明蛇类“热视觉”的起源,并揭示 TRPA1 对红外敏感性的分子机制。为此,我们对 24 种蛇类进行了包含坑器官的红外感应基因 TRPA1 的测序,这些蛇类代表了 9 个蛇科和多个非蛇类的外群。我们发现,在研究的含坑蛇类中,TRPA1 受到强烈的正选择,但在其他非坑蛇类和非蛇类脊椎动物中则没有。相比之下,与 TRPA1 密切相关的基因 TRPV1 在所有研究的物种中都受到强烈的纯化选择,在含坑蛇类和非坑蛇类之间选择强度没有差异。这一发现表明,TRPA1 的适应性进化专门发生在含坑蛇类中,可能与探测红外辐射的功能修饰有关。此外,通过比较 TRPA1 蛋白序列,我们鉴定出 11 个在含坑蛇类中分化但在非坑蛇类和其他脊椎动物中保守的氨基酸位点,以及 21 个仅在坑蝮蛇中分化但在其余蛇类中保守的氨基酸位点。这些特定的氨基酸取代可能对红外感应具有潜在的功能重要性。