Warnhoff Kurt, Roh Hyun C, Kocsisova Zuzana, Tan Chieh-Hsiang, Morrison Andrew, Croswell Damari, Schneider Daniel L, Kornfeld Kerry
Department of Developmental Biology, Washington University School of Medicine, St. Louis, Missouri, United States of America.
PLoS Biol. 2017 Jan 17;15(1):e2000094. doi: 10.1371/journal.pbio.2000094. eCollection 2017 Jan.
Nuclear receptors were originally defined as endocrine sensors in humans, leading to the identification of the nuclear receptor superfamily. Despite intensive efforts, most nuclear receptors have no known ligand, suggesting new ligand classes remain to be discovered. Furthermore, nuclear receptors are encoded in the genomes of primitive organisms that lack endocrine signaling, suggesting the primordial function may have been environmental sensing. Here we describe a novel Caenorhabditis elegans nuclear receptor, HIZR-1, that is a high zinc sensor in an animal and the master regulator of high zinc homeostasis. The essential micronutrient zinc acts as a HIZR-1 ligand, and activated HIZR-1 increases transcription of genes that promote zinc efflux and storage. The results identify zinc as the first inorganic molecule to function as a physiological ligand for a nuclear receptor and direct environmental sensing as a novel function of nuclear receptors.
核受体最初被定义为人类中的内分泌传感器,这导致了核受体超家族的鉴定。尽管付出了巨大努力,但大多数核受体尚无已知的配体,这表明仍有待发现新的配体类别。此外,核受体由缺乏内分泌信号传导的原始生物的基因组编码,这表明其原始功能可能是环境感知。在此,我们描述了一种新型的秀丽隐杆线虫核受体HIZR-1,它是动物中的高锌传感器以及高锌稳态的主要调节因子。必需的微量营养素锌作为HIZR-1的配体,活化的HIZR-1会增加促进锌流出和储存的基因的转录。这些结果确定锌是第一种作为核受体生理配体发挥作用的无机分子,并将直接环境感知确定为核受体的一种新功能。