Department of Molecular Microbiology, B. Rappaport Faculty of Medicine, Technion - Israel Institute of Technology, Haifa, Israel.
Bioinformatics Knowledge Unit, Technion - Israel Institute of Technology, Haifa, Israel.
Elife. 2022 Oct 6;11:e80604. doi: 10.7554/eLife.80604.
Heme can serve as iron source in many environments, including the iron-poor animal host environment. The fungal pathobiont expresses a family of extracellular CFEM hemophores that capture heme from host proteins and transfer it across the cell wall to the cell membrane, to be endocytosed and utilized as heme or iron source. Here, we identified Frp1 and Frp2, two ferric reductase (FRE)-related proteins that lack an extracellular N-terminal substrate-binding domain, as being required for hemoglobin heme utilization and for sensitivity to toxic heme analogs. Frp1 and Frp2 redistribute to the plasma membrane in the presence of hemin, consistent with a direct role in heme trafficking. Expression of Frp1 with the CFEM hemophore Pga7 can promote heme utilization in as well, confirming the functional interaction between these proteins. Sequence and structure comparison reveals that the CFEM hemophores are related to the FRE substrate-binding domain that is missing in Frp1/2. We conclude that Frp1/2 and the CFEM hemophores form a functional complex that evolved from FREs to enable extracellular heme uptake.
血红素可以作为许多环境中的铁源,包括缺铁的动物宿主环境。真菌共生菌表达一系列细胞外 CFEM 血影蛋白,这些蛋白从宿主蛋白中捕获血红素,并将其穿过细胞壁转移到细胞膜,然后被内吞并用作血红素或铁源。在这里,我们鉴定了 Frp1 和 Frp2,这两种铁还原酶 (FRE) 相关蛋白缺乏细胞外 N 端底物结合结构域,是血红蛋白血红素利用和对有毒血红素类似物敏感所必需的。在血红素存在下,Frp1 和 Frp2 重新分布到质膜,这与血红素转运的直接作用一致。与 CFEM 血影蛋白 Pga7 表达 Frp1 可以促进 在 中的血红素利用,证实了这些蛋白质之间的功能相互作用。序列和结构比较表明,CFEM 血影蛋白与 FRE 底物结合结构域有关,而 Frp1/2 缺失了该结构域。我们得出结论,Frp1/2 和 CFEM 血影蛋白形成了一个功能复合物,该复合物是从 FRE 进化而来的,能够实现细胞外血红素摄取。