Scaffa Alejandro, Tollefson George A, Yao Hongwei, Rizal Salu, Wallace Joselynn, Oulhen Nathalie, Carr Jennifer F, Hegarty Katy, Uzun Alper, Dennery Phyllis A
Department of Molecular Biology, Cell Biology & Biochemistry, Division of Biology and Medicine, Brown University, Providence, RI 02912, USA.
Department of Pathology and Laboratory Medicine, Rhode Island Hospital, Providence, RI 02903, USA.
Antioxidants (Basel). 2022 Oct 28;11(11):2135. doi: 10.3390/antiox11112135.
Heme oxygenase-1 (HO-1) is a rate-limiting enzyme in degrading heme into biliverdin and iron. HO-1 can also enter the nucleus and regulate gene transcription independent of its enzymatic activity. Whether HO-1 can alter gene expression through direct binding to target DNA remains unclear. Here, we performed HO-1 CHIP-seq and then employed 3D structural modeling to reveal putative HO-1 DNA binding domains. We identified three probable DNA binding domains on HO-1. Using the Proteinarium, we identified several genes as the most highly connected nodes in the interactome among the HO-1 gene binding targets. We further demonstrated that HO-1 modulates the expression of these key genes using deficient cells. Finally, mutation of four conserved amino acids (E215, I211, E201, and Q27) within HO-1 DNA binding domain 1 significantly increased expression of Gtpbp3 and Eif1 genes that were identified within the top 10 binding hits normalized by gene length predicted to bind this domain. Based on these data, we conclude that HO-1 protein is a putative DNA binding protein, and regulates targeted gene expression. This provides the foundation for developing specific inhibitors or activators targeting HO-1 DNA binding domains to modulate targeted gene expression and corresponding cellular function.
血红素加氧酶-1(HO-1)是将血红素降解为胆绿素和铁的限速酶。HO-1还可进入细胞核并独立于其酶活性调节基因转录。HO-1是否能通过直接结合靶DNA来改变基因表达仍不清楚。在此,我们进行了HO-1染色质免疫沉淀测序(CHIP-seq),然后采用三维结构建模来揭示假定的HO-1 DNA结合结构域。我们在HO-1上鉴定出三个可能的DNA结合结构域。利用Proteinarium,我们在HO-1基因结合靶点之间的相互作用组中鉴定出几个基因作为连接性最高的节点。我们进一步用缺陷细胞证明HO-1调节这些关键基因的表达。最后,HO-1 DNA结合结构域1内四个保守氨基酸(E215、I211、E201和Q27)的突变显著增加了Gtpbp3和Eif1基因的表达,这两个基因在按预测与该结构域结合的基因长度标准化后的前10个结合命中结果中被鉴定出来。基于这些数据,我们得出结论,HO-1蛋白是一种假定的DNA结合蛋白,并调节靶向基因表达。这为开发靶向HO-1 DNA结合结构域的特异性抑制剂或激活剂以调节靶向基因表达和相应细胞功能奠定了基础。