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主要颜色基因黑素皮质素 1 受体的选择塑造了黑素皮质素系统基因的进化。

Selection on the Major Color Gene Melanocortin-1-Receptor Shaped the Evolution of the Melanocortin System Genes.

机构信息

Department of Ecology and Evolution, Biophore, University of Lausanne, 1015 Lausanne, Switzerland.

Laboratoire de Recherche en Neuroimagerie, Centre Hospitalier Universitaire Vaudois, 1015 Lausanne, Switzerland.

出版信息

Int J Mol Sci. 2017 Dec 5;18(12):2618. doi: 10.3390/ijms18122618.

Abstract

Modular genetic systems and networks have complex evolutionary histories shaped by selection acting on single genes as well as on their integrated function within the network. However, uncovering molecular coevolution requires the detection of coevolving sites in sequences. Detailed knowledge of the functions of each gene in the system is also necessary to identify the selective agents driving coevolution. Using recently developed computational tools, we investigated the effect of positive selection on the coevolution of ten major genes in the melanocortin system, responsible for multiple physiological functions and human diseases. Substitutions driven by positive selection at the melanocortin-1-receptor () induced more coevolutionary changes on the system than positive selection on other genes in the system. Contrarily, selection on the highly pleiotropic POMC gene, which orchestrates the activation of the different melanocortin receptors, had the lowest coevolutionary influence. and possibly its main function, melanin pigmentation, seems to have influenced the evolution of the melanocortin system more than functions regulated by s such as energy homeostasis, glucocorticoid-dependent stress and anti-inflammatory responses. Although replication in other regulatory systems is needed, this suggests that single functional aspects of a genetic network or system can be of higher importance than others in shaping coevolution among the genes that integrate it.

摘要

模块化遗传系统和网络具有复杂的进化历史,这些进化历史受到单个基因以及其在网络中的综合功能的选择的影响。然而,要揭示分子共进化,就需要在序列中检测共进化的位点。还需要详细了解系统中每个基因的功能,以确定驱动共进化的选择剂。我们使用最近开发的计算工具,研究了正选择对黑色素皮质素系统中十个主要基因共进化的影响,该系统负责多种生理功能和人类疾病。黑色素皮质素-1 受体()上正选择驱动的取代比系统中其他基因上的正选择引起了更多的共进化变化。相反,高度多效的 POMC 基因(它协调不同黑色素皮质素受体的激活)的选择对系统的共进化影响最低。 和它的主要功能黑色素沉着似乎比由 s 调节的功能(如能量稳态、糖皮质激素依赖的应激和抗炎反应)对黑色素皮质素系统的进化有更大的影响。虽然需要在其他调节系统中进行复制,但这表明遗传网络或系统的单个功能方面在塑造整合它的基因之间的共进化方面可能比其他方面更为重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b7f/5751221/acc45a936631/ijms-18-02618-g001.jpg

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