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Amino Acid Transport Associated to Cluster of Differentiation 98 Heavy Chain (CD98hc) Is at the Cross-road of Oxidative Stress and Amino Acid Availability.

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2016-03-05

Authors

de la Ballina, Laura R
Cano-Crespo, Sara
González-Muñoz, Elena
Bial, Susanna
Estrach, Soline
Cailleteau, Laurence
Tissot, Floriane
Daniel, Hannelore
Zorzano, Antonio
Ginsberg, Mark H

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Abstract

CD98hc functions as an amino acid (AA) transporter (together with another subunit) and integrin signaling enhancer. It is overexpressed in highly proliferative cells in both physiological and pathological conditions. CD98hc deletion induces strong impairment of cell proliferation in vivo and in vitro Here, we investigate CD98hc-associated AA transport in cell survival and proliferation. By using chimeric versions of CD98hc, the two functions of the protein can be uncoupled. Although recovering the CD98hc AA transport capacity restores the in vivo and in vitro proliferation of CD98hc-null cells, reconstitution of the integrin signaling function of CD98hc is unable to restore in vitro proliferation of those cells. CD98hc-associated transporters (i.e. xCT, LAT1, and y(+)LAT2 in wild-type cells) are crucial to control reactive oxygen species and intracellular AA levels, thus sustaining cell survival and proliferation. Moreover, in CD98hc-null cells the deficiency of CD98hc/xCT cannot be compensated, leading to cell death by ferroptosis. Supplementation of culture media with β-mercaptoethanol rescues CD98hc-deficient cell survival. Under such conditions null cells show oxidative stress and intracellular AA imbalance and, consequently, limited proliferation. CD98hc-null cells also present reduced intracellular levels of branched-chain and aromatic amino acids (BCAAs and ARO AAs, respectively) and induced expression of peptide transporter 1 (PEPT1). Interestingly, external supply of dipeptides containing BCAAs and ARO AAs rescues cell proliferation and compensates for impaired uptake of CD98hc/LAT1 and CD98hc/y(+)LAT2. Our data establish CD98hc as a master protective gene at the cross-road of redox control and AA availability, making it a relevant therapeutic target in cancer.

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Amino Acid Transport System y+
Amino Acid Transport System y+L
Amino Acids
Animals
Biological Transport, Active
Cell Differentiation
Cell Line
Cell Proliferation
Cell Survival
Fusion Regulatory Protein 1, Heavy Chain
Fusion Regulatory Protein 1, Light Chains
Gene Deletion
Mice
Mouse Embryonic Stem Cells
Oxidative Stress
Reactive Oxygen Species

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Keywords

SLC3A2/CD98hc/4F2hc, SLC7 family, amino acid transport, cell proliferation, oxidative stress, peptide transport, stress response

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