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表达MC1R变异等位基因的人类黑素细胞显示出多种信号通路激活受损。

Human melanocytes expressing MC1R variant alleles show impaired activation of multiple signaling pathways.

作者信息

Newton Richard A, Roberts Donald W, Leonard J Helen, Sturm Richard A

机构信息

Melanogenix Group, Institute for Molecular Bioscience, University of Queensland, Brisbane, Qld 4072, Australia.

出版信息

Peptides. 2007 Dec;28(12):2387-96. doi: 10.1016/j.peptides.2007.10.003. Epub 2007 Oct 10.

Abstract

Variant alleles of the human MC1R gene are strongly associated with red hair color, fair skin and poor tanning ability (RHC-trait). Recently, we demonstrated that melanocytes harboring RHC-associated alleles have markedly reduced surface expression and/or impaired G-protein coupling of the corresponding receptor protein. The consequences of such a deficit on MC1R-mediated signaling pathways have now been quantitatively evaluated utilizing strains of human primary melanocytes homozygous for RHC-associated variant alleles and comparing responses to wild-type strains. The ability of melanocortin peptides to increase transcription of cAMP-dependent pigmentation genes, including MITF and SLC45A2, was abrogated in melanocytes with RHC-associated variant alleles, an effect that may contribute to the RHC phenotype. Activation of the c-Fos transcription factor gene was also severely compromised, a finding of potential relevance for non-pigmentary roles of MC1R. We also confirmed p38 signaling as an MC1R-regulated pathway and identified a large synergistic interaction between UV irradiation and MC1R stimulation for the activation of p38. This synergism was impaired in melanocytes expressing RHC variants of MC1R which may be relevant for the poor tanning ability associated with individuals possessing these alleles.

摘要

人类MC1R基因的变异等位基因与红头发、白皙皮肤和较差的晒黑能力(RHC性状)密切相关。最近,我们证明携带与RHC相关等位基因的黑素细胞相应受体蛋白的表面表达明显降低和/或G蛋白偶联受损。现在,利用纯合RHC相关变异等位基因的人类原代黑素细胞系并与野生型细胞系比较反应,已对这种缺陷对MC1R介导的信号通路的影响进行了定量评估。黑素皮质素肽增加包括MITF和SLC45A2在内的cAMP依赖性色素沉着基因转录的能力在携带RHC相关变异等位基因的黑素细胞中被消除,这一效应可能导致RHC表型。c-Fos转录因子基因的激活也受到严重损害,这一发现可能与MC1R的非色素作用相关。我们还证实p38信号传导是一条受MC1R调节的途径,并确定紫外线照射与MC1R刺激之间存在很大的协同相互作用以激活p38。这种协同作用在表达MC1R的RHC变异体的黑素细胞中受损,这可能与拥有这些等位基因的个体晒黑能力差有关。

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