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Purifying selection drives the evolution of surfactant protein C (SP-C) independently of body temperature regulation in mammals

机译:净化选择驱动器的进化表面活性剂蛋白C (SP-C)独立于身体温度调节在哺乳动物中

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The pulmonary surfactant system of heterothermic mammals must be capable of dealing with the effect of low body temperatures on the physical state of the lipid components. We have shown previously that there is a modest increase in surfactant cholesterol during periods of torpor, however these changes do not fully explain the capacity of surfactant to function under the wide range of physical conditions imposed by torpor. Here we examine indirectly the role of surfactant protein C (SP-C) in adapting to variable body temperatures by testing for the presence of positive (adaptive) selection during evolutionary transitions between heterothermy and homeothermy. We sequenced SP-C from genomic DNA of 32 mammalian species from groups of closely related heterothermic and homeothermic species (contrasts). We used phylogenetic analysis by maximum likelihood estimates of rates of non-synonymous to synonymous substitutions and fully Bayesian inference of these sequences to determine whether the mode of body temperature regulation exerts a selection pressure driving the molecular adaptation of SP-C. The protein sequence of SP-C is highly conserved with synonymous or highly conservative amino acid substitutions being predominant. The evolution of SP-C among mammals is characterised by high codon usage bias and high rates of transition/transversion. The only contrast to show evidence of positive selection was that of the bears (Ursus americanus and U. maritimus). The significance of this result is unclear. We show that SP-C is under strong evolutionary constraints, driven by purifying selection, presumably to maintain protein function despite variation in the mode of body temperature regulation.
机译:heterothermic的肺表面活性物质系统哺乳动物必须能够处理低体温对物理的影响脂质成分。以前,有一个适度的增长表面活性剂胆固醇麻木的时期,然而这些变化并不能完全解释表面活性剂作用下宽的能力麻木的身体条件范围。这里我们研究间接表面活性剂的作用蛋白C在身体适应变量(SP-C)温度测试的存在积极的(自适应)选择在进化heterothermy之间的转换和恒温。我们从基因组DNA测序SP-C 32哺乳动物物种群密切相关heterothermic和恒温的物种(对比)。最大似然率的估计同义替换和非同义贝叶斯推理的这些序列确定体温的模式监管施加选择压力开车分子SP-C改编的。SP-C是高度保守的序列同义或高度保守的氨基酸替换的。SP-C在哺乳动物的特点是高的密码子使用偏差和高转换、颠换。表明积极的选择是熊(美洲黑熊和美国maritimus)。这个结果的意义尚不清楚。表明SP-C受到强大的进化约束,由于净化选择,大概是为了保持蛋白质功能尽管体温的变化模式监管。

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