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Xenotropic and polytropic retrovirus receptor 1 (XPR1) functions as a phosphate exporter and is pivotal in maintaining human phosphate homeostasis. It has been identified as a causative gene for primary familial brain calcification. Here we present the cryogenic electron microscopy (cryo-EM) structure of human XPR1 (HsXPR1). HsXPR1 exhibits a dimeric structure in which only TM1 directly constitutes the dimer interface of the transmembrane domain. Each HsXPR1 subunit can be divided spatially into a core domain and a scaffold domain. The core domain of HsXPR1 forms a pore-like structure, along which two phosphate-binding sites enriched with positively charged residues are identified. Mutations of key residues at either site substantially diminish the transport activity of HsXPR1. Phosphate binding at the central site may trigger a conformational change at TM9, leading to the opening of the extracellular gate. In addition, our structural analysis reveals a new conformational state of HsXPR1 in which the cytoplasmic SPX domains form a V-shaped structure. Altogether, our results elucidate the overall architecture of HsXPR1 and shed light on XPR1-mediated phosphate export.
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http://dx.doi.org/10.1038/s41467-025-58195-6 | DOI Listing |
BMC Cancer
September 2025
Department of Guangyuan Central Hospital, Jingxiangzi, No. 16, Guangyuan Sichuan, 628000, China.
Background: XPR1 is crucial in the development of some tumors, yet its association with endometrial cancer (EC) remains uncertain. We propose that XPR1 exhibits elevated expression in EC and is significantly linked to unfavorable patient outcomes, positioning it as a prospective prognostic biomarker.
Methods: This study investigated XPR1 expression in 554 Uterine Corpus Endometrial Carcinoma(UCEC) cases and 35 normal tissue samples using the The Cancer Genome Atlas(TCGA) database.
Mol Cell
September 2025
Interdisciplinary Research Center on Biology and Chemistry, Shanghai Institute of Organic Chemistry, Chinese Academy of Sciences, Shanghai 201210, China; Shanghai Key Laboratory of Aging Studies, Shanghai 201210, China; State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistr
XPR1 is emerging as the only known inorganic phosphate (Pi) exporter in humans, critical for Pi homeostasis, with its activity stimulated by inositol pyrophosphate InsP8 and regulated by neuronal scaffold protein KIDINS220. Our structural studies reveal that InsP8 specifically activates XPR1 in a stepwise manner, involving profound SYG1/PHO/XPR1 (SPX) domain movements. Each XPR1 subunit functions with four gating states, in which Pi permeates a constriction site via a "knock-kiss-kick" process.
View Article and Find Full Text PDFJ Endocrinol Invest
August 2025
Department of Endocrinology, Key Laboratory of Endocrinology, State Key Laboratory of Complex Severe and Rare Diseases, Peking Union Medical College Hospital, National Commission of Health, Chinese Academy of Medical Sciences, Dongcheng District, Shuaifuyuan No.1, Wangfujing Street, Beijing, 100730,
Purpose: X-linked hypophosphatemia (XLH) is the most common type of hereditary hypophosphatemic rickets caused by elevated fibroblast growth factor 23 (FGF23). Multiple cases have reported XLH had Fanconi syndrome (FS) with unidentified mechanism. We investigated the association between genetic polymorphisms of phosphate transporters in renal proximal tubules and XLH with FS for the first time.
View Article and Find Full Text PDFeNeuro
June 2025
Department of Neurology, The Second Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou 310009, China
The genetic role and specific effects of primary familial cerebral calcification (PFBC) are still unclear. We aim to analyze bibliometric features in studies related to PFBC, investigate variant detection rates in patients with brain calcifications, and examine the phenotypic characteristics of PFBC patients. A comprehensive search of studies on the genetic effects of PFBC up until December 31, 2024, was conducted across Web of Science, PubMed, Embase, and Scopus.
View Article and Find Full Text PDFNat Commun
May 2025
Verna and Marrs McLean Department of Biochemistry and Molecular Pharmacology, Baylor College of Medicine, Houston, TX, USA.
Maintaining a balance of inorganic phosphate (Pi) is vital for cellular functionality. Proper phosphate levels are managed through Pi import and export; and the processes governing Pi export remain the least understood. Xenotropic and Polytropic retrovirus Receptor 1 (XPR1) has been identified as the only known Pi export protein in mammals.
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