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首页> 外文期刊>BMC Genomics >Multiple splice variants within the bovine silver homologue (SILV) gene affecting coat color in cattle indicate a function additional to fibril formation in melanophores
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Multiple splice variants within the bovine silver homologue (SILV) gene affecting coat color in cattle indicate a function additional to fibril formation in melanophores

机译:牛银同源物(SILV)基因内的多个剪接变体会影响牛的皮毛颜色,这表明除黑素细胞中的原纤维形成外,还有其他功能

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Background The silver homologue(SILV) gene plays a major role in melanosome development. SILV is a target for studies concerning melanoma diagnostics and therapy in humans as well as on skin and coat color pigmentation in many species ranging from zebra fish to mammals. However, the precise functional cellular mechanisms, in which SILV is involved, are still not completely understood. While there are many studies addressing SILV function upon a eumelaneic pigment background, there is a substantial lack of information regarding the further relevance of SILV, e.g. for phaeomelanosome development. Results In contrast to previous results in other species reporting SILV expression exclusively in pigmented tissues, our experiments provide evidence that the bovine SILV gene is expressed in a variety of tissues independent of pigmentation. Our data show that the bovine SILV gene generates an unexpectedly large number of different transcripts occurring in skin as well as in non-pigmented tissues, e.g. liver or mammary gland. The alternative splice sites are generated by internal splicing and primarily remove complete exons. Alternative splicing predominantly affects the repeat domain of the protein, which has a functional key role in fibril formation during eumelanosome development. Conclusion The expression of the bovine SILV gene independent of pigmentation suggests SILV functions exceeding melanosome development in cattle. This hypothesis is further supported by transcript variants lacking functional key elements of the SILV protein relevant for eumelanosome development. Thus, the bovine SILV gene can serve as a model for the investigation of the putative additional functions of SILV. Furthermore, the splice variants of the bovine SILV gene represent a comprehensive natural model to refine the knowledge about functional domains in the SILV protein. Our study exemplifies that the extent of alternative splicing is presumably much higher than previously estimated and that alternatively spliced transcripts presumably can generate molecules of deviating function compared to their constitutive counterpart.
机译:背景银同源物(SILV)基因在黑素体发育中起主要作用。 SILV是涉及人类黑素瘤诊断和治疗以及从斑马鱼到哺乳动物的许多物种的皮肤和毛色色素沉着研究的目标。然而,涉及SILV的精确功能性细胞机制仍未完全了解。尽管有许多研究针对常绿颜料背景下的SILV功能进行研究,但实际上缺乏有关SILV进一步相关性的信息,例如用于phaeomelanosome发展。结果与之前其他物种仅在有色组织中报告SILV表达的其他结果相反,我们的实验提供了牛SILV基因在多种组织中表达的证据,这些组织独立于色素沉着。我们的数据表明,牛SILV基因产生出乎意料的大量不同的转录本,它们出现在皮肤以及非色素沉着的组织中。肝或乳腺。备选剪接位点是通过内部剪接产生的,主要去除了完整的外显子。选择性剪接主要影响蛋白质的重复结构域,该结构域在真黑素体形成过程中的原纤维形成中具有功能性关键作用。结论牛SILV基因的表达与色素沉着无关,表明SILV的功能超过了牛黑素体的发育。缺少与真黑素体发育相关的SILV蛋白功能关键元件的转录变体进一步支持了该假设。因此,牛SILV基因可以用作研究SILV的假定附加功能的模型。此外,牛SILV基因的剪接变体代表了一个全面的自然模型,以完善关于SILV蛋白中功能域的知识。我们的研究表明,选择性剪接的程度可能比以前估计的要高得多,并且与本构对应物相比,选择性剪接的转录本可能会产生功能偏离的分子。

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