Interdepartmental Program in Molecular, Cellular, and Integrative Physiology, Department of Biological Chemistry, David Geffen School of Medicine, Department of Chemistry and Biochemistry, and Department of Physiology, David Geffen School of Medicine, University of California, Los Angeles, CA 90095.
Proc Natl Acad Sci U S A. 2014 Feb 4;111(5):1861-6. doi: 10.1073/pnas.1309915111. Epub 2014 Jan 21.
DiGeorge syndrome critical region gene 8 (DGCR8) is the RNA-binding partner protein of the nuclease Drosha. DGCR8 and Drosha recognize and cleave primary transcripts of microRNAs (pri-miRNAs) in the maturation of canonical microRNAs (miRNAs) in animals. We previously reported that human, frog, and starfish DGCR8 bind heme when expressed in Escherichia coli and that Fe(III) heme activates apoDGCR8 in reconstituted pri-miRNA processing assays. However, the physiological relevance of heme in miRNA maturation has not been clear. Here, we present a live-cell pri-miRNA processing assay that produces robust signals and faithfully indicates DGCR8 and Drosha activities. We demonstrate that all known heme-binding-deficient DGCR8 mutants are defective in pri-miRNA processing in HeLa cells. DGCR8 contains a previously uncharacterized heme-binding motif, "IPCL," that is also required for its activity. Heme availability and biosynthesis in HeLa cells positively affect pri-miRNA processing and production of mature miRNA. These results establish an essential function for heme in pri-miRNA processing in mammalian cells. Our study suggests that abnormal heme biosynthesis and degradation may contribute to diseases via miRNA-mediated gene regulation networks.
DiGeorge 综合征关键区域基因 8(DGCR8)是核酶 Drosha 的 RNA 结合伴侣蛋白。DGCR8 和 Drosha 在动物中经典 miRNA(miRNA)的成熟过程中识别并切割 miRNA 的初级转录物(pri-miRNAs)。我们之前曾报道,在大肠杆菌中表达时,人类、青蛙和海星的 DGCR8 结合血红素,并且 Fe(III)血红素在体外重新组装的 pri-miRNA 加工测定中激活 apoDGCR8。然而,血红素在 miRNA 成熟中的生理相关性尚不清楚。在这里,我们提出了一种活细胞 pri-miRNA 加工测定法,该方法可产生强大的信号,并忠实地指示 DGCR8 和 Drosha 的活性。我们证明,所有已知的血红素结合缺陷型 DGCR8 突变体在 HeLa 细胞中的 pri-miRNA 加工中均存在缺陷。DGCR8 含有一个以前未被表征的血红素结合基序“IPCL”,该基序对于其活性也是必需的。HeLa 细胞中血红素的可用性和生物合成积极影响 pri-miRNA 的加工和成熟 miRNA 的产生。这些结果确立了血红素在哺乳动物细胞 pri-miRNA 加工中的重要功能。我们的研究表明,异常的血红素生物合成和降解可能通过 miRNA 介导的基因调控网络导致疾病。