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在毛发周期中对视黄酸合成和信号传导至关重要的酶、结合蛋白及受体的免疫定位。

Immunolocalization of enzymes, binding proteins, and receptors sufficient for retinoic acid synthesis and signaling during the hair cycle.

作者信息

Everts Helen B, Sundberg John P, King Lloyd E, Ong David E

机构信息

Department of Biochemistry, Vanderbilt University Medical Center, Nashville, Tennessee 37232, USA.

出版信息

J Invest Dermatol. 2007 Jul;127(7):1593-604. doi: 10.1038/sj.jid.5700753. Epub 2007 Mar 15.

Abstract

Retinoic acid (RA) is essential for maintenance of most epithelial tissues. One RA biosynthesis pathway consists of cellular retinol-binding protein (Crbp), retinol dehydrogenase (Dhrs9/eRoldh), retinal dehydrogenase 1-3 (Aldh1a1-3), and cellular RA-binding protein 2 (Crabp2). Previously, we localized Aldh1a2 and Aldh1a3 to both epithelial and mesenchymal cells within the hair follicle throughout the hair cycle. This study expands that observation by examining the complete pathway of RA biosynthesis and signaling via RA receptors alpha, beta, and gamma by immunohistochemistry in C57BL/6J mice wax-stripped to initiate and synchronize the cycle. This pathway of RA biosynthesis and signaling localized to the majority of layers of the hair follicle, sebaceous gland, and interfollicular epidermis in a hair cycle-dependent manner, suggesting that RA biosynthesis within the hair follicle is regulated in both a spatial and temporal manner. This localization pattern also revealed insights into epithelial-mesenchymal interactions and differentiation state differences within the RA biosynthesis and signaling pathway, as well as novel observations on nuclear versus cytoplasmic localization of Crabp2 and RA receptors. This complex pattern of RA biosynthesis and signaling identified by immunolocalization suggests that endogenous RA regulates specific aspects of hair follicle growth, differentiation, and cycling.

摘要

视黄酸(RA)对于大多数上皮组织的维持至关重要。一种RA生物合成途径由细胞视黄醇结合蛋白(Crbp)、视黄醇脱氢酶(Dhrs9/eRoldh)、视网膜脱氢酶1 - 3(Aldh1a1 - 3)和细胞RA结合蛋白2(Crabp2)组成。此前,我们在整个毛发周期中,将Aldh1a2和Aldh1a3定位到毛囊内的上皮细胞和间充质细胞中。本研究通过免疫组织化学方法,在C57BL/6J小鼠中,对通过RA受体α、β和γ进行的RA生物合成和信号传导的完整途径进行检测,这些小鼠经过脱毛处理以启动并同步毛发周期,从而扩展了上述观察结果。RA生物合成和信号传导的这一途径以毛发周期依赖性方式定位于毛囊、皮脂腺和毛囊间表皮的大部分层次,这表明毛囊内的RA生物合成在空间和时间上均受到调控。这种定位模式还揭示了RA生物合成和信号传导途径内上皮 - 间充质相互作用和分化状态差异的见解,以及关于Crabp2和RA受体核定位与胞质定位的新观察结果。通过免疫定位确定的这种复杂的RA生物合成和信号传导模式表明,内源性RA调节毛囊生长、分化和周期的特定方面。

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