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Human genetic variants in SLC39A8 impact uptake and steady-state metal levels within the cell

Life Science Alliance. 2020-05; 
Wen-An Wang; Andrea Garofoli; Evandro Ferrada; Christoph Klimek; Barbara Steurer; Alvaro Ingles-Prieto; Tanja Osthushenrich; Aidan MacNamara; Anders Malarstig; Tabea Wiedmer; Giulio Superti-Furga
Products/Services Used Details Operation
Codon Optimization hSLC39A8 gene harbouring the WT or variant sequences was codon-optimized and carries C-terminal STREPII and HA tags (#132177; Addgene) (generated by GenScript). The WT or the variant hSLC39A8 gene was cloned into a JTI R4 CMV-TO MCS pA vector backbone (#A15004; Thermo Fisher Scientific) and introduced into Get A Quote

摘要

This report investigates the effect of 21 variants in the hSLC39A8 gene experimentally on protein expression, localization, and uptake of metal ions, and computationally on dimerization stability.The human SLC39A8 ( hSLC39A8 ) gene encodes a plasma membrane protein SLC39A8 (ZIP8) that mediates the specific uptake of the metals Cd 2+ , Mn 2+ , Zn 2+ , Fe 2+ , Co 2+ , and Se 4+ . Pathogenic variants within hSLC39A8 are associated with congenital disorder of glycosylation type 2 (CDG type II) or Leigh-like syndrome. However, numerous mutations of uncertain significance are also linked to different conditions or benign traits. Our study characterized 21 hSLC39A8 variants and measured their impact on protein localiz... More

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