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首页> 外文期刊>Journal of Investigative Dermatology Symposium Proceedings >Epididymal Cysteine-Rich Secretory Protein 1 Encoding Gene Is Expressed in Murine Hair Follicles and Downregulated in Mice Overexpressing Hoxc13
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Epididymal Cysteine-Rich Secretory Protein 1 Encoding Gene Is Expressed in Murine Hair Follicles and Downregulated in Mice Overexpressing Hoxc13

机译:附睾半胱氨酸丰富的分泌蛋白1编码基因在小鼠毛囊中表达,并在Hoxc13过表达的小鼠中下调。

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Members of the Hox gene family of transcriptional regulators are believed to play essential roles in hair follicle differentiation, although little is known about the molecular mechanisms mediating these putative control functions. Transgenic mice overexpressing Hoxc13 in hair follicles (GC13 mice) exhibit complex phenotypic alterations including hair shaft defects and alopecia, as well as severe epidermal abnormalities. To identify some of the genetic pathways affected by Hoxc13 overexpression in hair, we performed large-scale differential gene expression analysis on the skin of 5-d GC13 versus normal FVB mice using DNA chip assays. A surprising result of these experiments was the identification of the epididymal cysteine-rich secretory protein 1 (Crisp1) gene as one of the genes with the greatest expression differential, in this case with greater than 20-fold downregulation in skin from GC13 mice. Crisp1 encodes a secreted protein that has originally been found to be abundantly expressed in the epididymis, where it plays a role in sperm maturation. We have localized Crisp1 mRNA in 5-d postnatal murine scapular skin by in situ hybridization, showing its expression to be restricted to the medulla of the hair shaft. Furthermore, we provide evidence for specific interaction of Hoxc13 with at least one cognate binding site found in the Crisp1 promoter region, thus supporting the concept of a Hoxc13/Crisp1 regulatory relationship. In summary, these data establish the hair as a novel site for Crisp1 expression where its functional role remains to be determined.
机译:尽管对调解这些假定控制功能的分子机制知之甚少,但转录调节因子的Hox基因家族成员被认为在毛囊分化中起着至关重要的作用。在毛囊中过表达Hoxc13的转基因小鼠(GC13小鼠)表现出复杂的表型改变,包括毛干缺损和脱发以及严重的表皮异常。为了确定受头发中Hoxc13过表达影响的某些遗传途径,我们使用DNA芯片分析对5-d GC13与正常FVB小鼠的皮肤进行了大规模差异基因表达分析。这些实验的令人惊讶的结果是鉴定出附睾丰富的半胱氨酸分泌蛋白1(Crisp1)基因是表达差异最大的基因之一,在这种情况下,GC13小鼠皮肤中的下调超过20倍。 Crisp1编码一种分泌蛋白,最初发现该蛋白在附睾中大量表达,并在其中参与精子的成熟。我们已经通过原位杂交在出生后的5天小鼠肩部皮肤中定位了Crisp1 mRNA,显示其表达局限于发干的髓质。此外,我们为Hoxc13与在Crisp1启动子区域中发现的至少一个同源结合位点的特异性相互作用提供了证据,从而支持了Hoxc13 / Crisp1调控关系的概念。总之,这些数据将头发确定为Crisp1表达的新位点,其功能作用尚待确定。

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