| Literature DB >> 32907880 |
Bowen Yu1,2, Chen Cheng1,2, Yichun Wu1,2, Luqiang Guo1,2, Dandan Kong1,2, Ze Zhang1,2, Yuanyuan Wang1,2, Enlin Zheng1,2, Yingbin Liu3,4, Yongning He5,2,3,4.
Abstract
Scavenger receptors are a superfamily of membrane-bound receptors that recognize both self and nonself targets. Scavenger receptor class A (SR-A) has five known members (SCARA1 to -5 or SR-A1 to -A5), which are type II transmembrane proteins that form homotrimers on the cell surface. SR-A members recognize various ligands and are involved in multiple biological pathways. Among them, SCARA5 can function as a ferritin receptor; however, the interaction between SCARA5 and ferritin has not been fully characterized. Here, we determine the crystal structures of the C-terminal scavenger receptor cysteine-rich (SRCR) domain of both human and mouse SCARA5 at 1.7 and 2.5 Å resolution, respectively, revealing three Ca2+-binding sites on the surface. Using biochemical assays, we show that the SRCR domain of SCARA5 recognizes ferritin in a Ca2+-dependent manner, and both L- and H-ferritin can be recognized by SCARA5 through the SRCR domain. Furthermore, the potential binding region of SCARA5 on the surface of ferritin is explored by mutagenesis studies. We also examine the interactions of ferritin with other SR-A members and find that SCARA1 (SR-A1, CD204) and MARCO (SR-A2, SCARA2), which are highly expressed on macrophages, also interact with ferritin. By contrast, SCARA3 and SCARA4, the two SR-A members without the SRCR domain, have no detectable binding with ferritin. Overall, these results provide a mechanistic view regarding the interactions between the SR-A members and ferritin that may help to understand the regulation of ferritin homeostasis by scavenger receptors.Entities:
Keywords: SCARA5; SR class A; SRCR domain; X-ray crystallography; cell surface receptor; ferritin; protein structure; scavenger receptor
Year: 2020 PMID: 32907880 PMCID: PMC7667961 DOI: 10.1074/jbc.RA120.014690
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157