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外泌体在肿瘤诊断和治疗中的作用及应用进展

Indication of Premelanosome Protein (PMEL) Expression Outside of Pigmented Bovine Skin Suggests Functions Beyond Eumelanogenesis.

机构信息

Institute for Genome Biology, Leibniz Institute for Farm Animal Biology (FBN), 18196 Dummerstorf, Germany.

Institute for Muscle Biology and Growth, Leibniz Institute for Farm Animal Biology (FBN), 18196 Dummerstorf, Germany.

出版信息

Genes (Basel). 2020 Jul 13;11(7):788. doi: 10.3390/genes11070788.

Abstract

The premelanosome protein (PMEL) is important for fibril formation within melanosomes during vertebrate melanogenesis. Fibrils form a matrix for pigment deposition within pigmented tissues such as skin and hair. PMEL mutations are known to modulate eumelanic pigmentation in vertebrates. However, in bovines, PMEL mutations were also found to alter pheomelanic pigmentation resulting in coat color dilution. Furthermore, epistatic effects of a mutated PMEL allele were detected in the phenotypic expression of the bovine hair defect "rat-tail syndrome" (RTS) characterized by charcoal coat color and hair deformation. Reports about gene expression in non-pigmented tissues raised the hypothesis that there may be unknown functions of the PMEL protein beyond eumelanin deposition to PMEL fibrils. In our study, we analysed the PMEL protein expression in pigmented skin and non-pigmented bovine tissues (non-pigmented skin, thyroid gland, rumen, liver, kidney, and adrenal gland cortex). We found that a processed form of the bovine PMEL protein is expressed in pigmented as well as in non-pigmented tissues, which is in line with gene expression data from targeted RT-PCR and whole transcriptome RNAseq analysis. The PMEL protein is located in membranes and within the cytosol of epithelial cells. Based on our data from bovine tissues, we concluded that at least in cattle PMEL potentially has additional, yet unexplored functions, which might contribute to effects of PMEL mutations on pheomelanin coat color dilution and charcoal coat color in RTS animals. However, indication of PMEL protein in unpigmented cells and tissues will require further confirmation in the future, because there have been no confirmed reports before, which had detected bovine PMEL protein with specific antibodies either in pigmented or unpigmented tissue.

摘要

前黑素小体蛋白(PMEL)在脊椎动物黑色素生成过程中对黑素小体内部原纤维的形成很重要。原纤维在色素组织(如皮肤和毛发)中形成了色素沉积的基质。PMEL 突变已知可调节脊椎动物真黑色素的色素沉着。然而,在牛中,PMEL 突变也被发现改变了褐黑色素的色素沉着,导致毛色稀释。此外,在表现型为“鼠尾综合征”(RTS)的牛毛缺陷中,还检测到了一个突变 PMEL 等位基因的上位效应,其特征是木炭色毛色和毛发变形。关于非色素组织中基因表达的报道提出了这样一种假设,即 PMEL 蛋白可能存在未知的功能,除了真黑色素沉积到 PMEL 原纤维之外。在我们的研究中,我们分析了色素沉着皮肤和非色素牛组织(非色素皮肤、甲状腺、瘤胃、肝脏、肾脏和肾上腺皮质)中的 PMEL 蛋白表达。我们发现牛 PMEL 的一种加工形式在色素沉着和非色素组织中均有表达,这与靶向 RT-PCR 和全转录组 RNAseq 分析的基因表达数据一致。PMEL 蛋白位于上皮细胞的膜和细胞质中。基于我们从牛组织获得的数据,我们得出结论,至少在牛中,PMEL 可能具有其他尚未探索的功能,这可能有助于 PMEL 突变对褐黑色素毛色稀释和 RTS 动物木炭色毛色的影响。然而,在未来,需要进一步证实 PMEL 蛋白在非色素细胞和组织中的存在,因为以前没有证实的报道曾用特异性抗体检测过色素组织或非色素组织中的牛 PMEL 蛋白。

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