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Genomic expression differences between cutaneous cells from red hair colour individuals and black hair colour individuals based on bioinformatic analysis

机译:基于生物信息学分析,来自红色头发颜色个体的皮肤细胞和黑色头发颜色个体之间的基因组表达差异

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摘要

The MC1R gene plays a crucial role in pigmentation synthesis. Loss-of-function MC1R variants, which impair protein function, are associated with red hair color (RHC) phenotype and increased skin cancer risk. Cultured cutaneous cells bearing loss-of-function MC1R variants show a distinct gene expression profile compared to wild-type MC1R cultured cutaneous cells. We analysed the gene signature associated with RHC co-cultured melanocytes and keratinocytes by Protein-Protein interaction (PPI) network analysis to identify genes related with non-functional MC1R variants. From two detected networks, we selected 23 nodes as hub genes based on topological parameters. Differential expression of hub genes was then evaluated in healthy skin biopsies from RHC and black hair color (BHC) individuals. We also compared gene expression in melanoma tumors from individuals with RHC versus BHC. Gene expression in normal skin from RHC cutaneous cells showed dysregulation in 8 out of 23 hub genes (CLN3, ATG10, WIPI2, SNX2, GABARAPL2, YWHA, PCNA and GBAS). Hub genes did not differ between melanoma tumors in RHC versus BHC individuals. The study suggests that healthy skin cells from RHC individuals present a constitutive genomic deregulation associated with the red hair phenotype and identify novel genes involved in melanocyte biology.
机译:MC1R基因在色素沉着合成中起关键作用。功能丧失的MC1R变体会损害蛋白质功能,与红头发(RHC)表型和皮肤癌风险增加相关。与野生型MC1R培养的皮肤细胞相比,带有功能丧失的MC1R变异体的培养皮肤细胞显示出独特的基因表达谱。我们通过蛋白-蛋白质相互作用(PPI)网络分析来分析与RHC共培养的黑素细胞和角质形成细胞相关的基因标记,以鉴定与非功能性MC1R变体相关的基因。从两个检测到的网络中,我们根据拓扑参数选择了23个节点作为集线器基因。然后,在RHC和黑发(BHC)个人的健康皮肤活检中评估了毂基因的差异表达。我们还比较了RHC与BHC个体在黑色素瘤肿瘤中的基因表达。 RHC皮肤细胞在正常皮肤中的基因表达在23个中枢基因(CLN3,ATG10,WIPI2,SNX2,GABARAPL2,YWHA,PCNA和GBAS)中的8个中表达失调。在RHC和BHC个人的黑色素瘤肿瘤之间,Hub基因没有差异。该研究表明,来自RHC个体的健康皮肤细胞呈现出与红发表型有关的组成型基因组失调,并鉴定出涉及黑素细胞生物学的新基因。

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