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小眼畸形基因座的基因组分析及MITF-J/Mitf-J亚型的鉴定。

Genomic analysis of the Microphthalmia locus and identification of the MITF-J/Mitf-J isoform.

作者信息

Hershey Christine L, Fisher David E

机构信息

Division of Pediatric Hematology/Oncology and Melanoma Program in Medical Oncology, Dana-Farber Cancer Institute and Children's Hospital, Harvard Medical School, 44 Binney Street, Dana 630, Boston, MA 02115, USA.

出版信息

Gene. 2005 Feb 28;347(1):73-82. doi: 10.1016/j.gene.2004.12.002.

Abstract

The deafness-pigmentary disorder Waardenburg Syndrome Type 2 is caused by mutations in the human Microphthalmia-associated transcription factor (MITF) gene. Multiple related deafness-pigmentary disorders result from mutations in genes that regulate MITF expression or its activity. Similarly in mouse, homozygous mutations in the Mitf gene disrupt the development of melanocytes as well as retinal pigment epithelial (RPE) cells, osteoclasts, mast cells, and NK cells. Because abnormalities in Mitf/MITF function are associated with numerous inherited disorders of mouse and man, a detailed understanding of its gene structure is important for both diagnostic and structure/function analyses. While at least eight distinct isoforms of MITF/Mitf have been identified to date, each differing in their promoter and initial exon usage, the positions of these exons and their order within the locus have yet to be fully defined. In this study, we provide a detailed description of the MITF/Mitf locus, identify corresponding human and mouse isoforms, and utilize an informatics-based approach to identify a novel ninth MITF/Mitf isoform, MITF-J/Mitf-J, which we show is expressed in multiple cell types. The MITF/Mitf locus is over 200 kb in length, with strong but imperfect exon conservation between human and mouse. MITF/Mitf tissue expression data are presented from multiple datasets, including EST expression patterns and isoform-specific RT-PCR. The majority of isoforms were found to be broadly expressed, with the M- and Mc-isoforms being tissue-restricted to melanocytes and mast cells, respectively. Consequently, a detailed characterization of this complex locus may help to identify additional unknown deafness-pigmentary syndrome mutations in human kindred and permit a better understanding of tissue-regulated expression that likely underlies divergent biological functions of this factor across multiple cell types.

摘要

2型瓦尔登堡综合征(Waardenburg Syndrome Type 2)这种耳聋-色素沉着障碍是由人类小眼相关转录因子(MITF)基因突变引起的。多种相关的耳聋-色素沉着障碍是由调节MITF表达或其活性的基因突变导致的。同样在小鼠中,Mitf基因的纯合突变会破坏黑素细胞以及视网膜色素上皮(RPE)细胞、破骨细胞、肥大细胞和自然杀伤(NK)细胞的发育。由于Mitf/MITF功能异常与小鼠和人类的多种遗传性疾病相关,因此详细了解其基因结构对于诊断以及结构/功能分析都很重要。虽然迄今为止已鉴定出至少八种不同的MITF/Mitf亚型,它们在启动子和初始外显子使用上各有不同,但这些外显子的位置及其在基因座内的顺序尚未完全确定。在本研究中,我们详细描述了MITF/Mitf基因座,鉴定了相应的人类和小鼠亚型,并利用基于信息学的方法鉴定了一种新的第九种MITF/Mitf亚型,即MITF-J/Mitf-J,我们发现它在多种细胞类型中表达。MITF/Mitf基因座长度超过200 kb,人类和小鼠之间外显子保守性很强但并不完全相同。从多个数据集展示了MITF/Mitf组织表达数据,包括EST表达模式和亚型特异性逆转录聚合酶链反应(RT-PCR)。发现大多数亚型广泛表达,而M亚型和Mc亚型分别在黑素细胞和肥大细胞中受到组织限制。因此,对这个复杂基因座的详细表征可能有助于在人类家族中鉴定出其他未知的耳聋-色素沉着综合征突变,并有助于更好地理解可能是该因子在多种细胞类型中不同生物学功能基础的组织调节表达。

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