Extension Peptide of Plant Ferritin from Presents a Novel Fold.

Wenming Wang, Yuan Wang, Hongfang Xi, Zidan Song, Wenlong Zhang, Leilei Xie, Danyang Ma, Nan Qin, Hongfei Wang

Journal: Journal of agricultural and food chemistry 2023;71(1):934-943

PMID: 36576327

Abstract

The extension peptide (EP) is the most distinctive feature of mature plant ferritin. Some EPs have exhibited serine-like protease activity, which is associated with iron uptake and release. EP forms a helix and a long loop, followed by a conserved core helical bundle. However, whether the EP adopts a stable or uniform folding pattern in all plants remains unclear. To clarify this, we investigated the crystal structure of ferritin-1 from (SiFer1), a type of monocotyledon. In our structure of SiFer1, the EP is different from other EPs in other solved structures of plant ferritins and consisted of a pair of β-sheets, a shorter helix, and two loops, which masks two hydrophobic pockets on the outer surface of every subunit. Furthermore, sequence analysis and structure comparison suggest that the EPs in ferritins from monocotyledons may adopt a novel fold pattern, and the conformations of EPs in ferritins are alterable among different plant species. Furthermore, additional eight iron atoms were first founded binding in the fourfold channels, demonstrating the vital function of fourfold channels in iron diffusion. In all, our structure provides new clues for understanding plant ferritins and the functions of the EP.

Address: Institute of Molecular Science, Shanxi University, Taiyuan 030006, China.; State Key Laboratory of Medicinal Chemical Biology, Nankai University, Tianjin 300071, China.; College of Chinese Medicine and Food Engineering, Experimental Management Center, Shanxi University of Chinese Medicine, Jinzhong 030619, China.

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