Novel cystine transporter in renal proximal tubule identified as a missing partner of cystinuria-related plasma membrane protein rBAT/SLC3A1
Новый цистиновый транспортер в проксимальном канальце почки идентифицирован как недостающий партнёр мембранного белка, связанного с цистинурией, rBAT/SLC3A1
2016-01-06
SCID: 54.1/bzqgmchr
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AGT1/SLC7A13cystine transporterheterodimeric amino acid transporterrBAT/SLC3A1renal proximal tubule S3 segment
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Abstract (AI)
Heterodimeric amino acid transporters play crucial roles in epithelial transport, as well as in cellular nutrition. Among them, the heterodimer of a membrane protein b(0,+)AT/SLC7A9 and its auxiliary subunit rBAT/SLC3A1 is responsible for cystine reabsorption in renal proximal tubules. The mutations in either subunit cause cystinuria, an inherited amino aciduria with impaired renal reabsorption of cystine and dibasic amino acids. However, an unsolved paradox is that rBAT is highly expressed in the S3 segment, the late proximal tubules, whereas b(0,+)AT expression is highest in the S1 segment, the early proximal tubules, so that the presence of an unknown partner of rBAT in the S3 segment has been proposed. In this study, by means of coimmunoprecipitation followed by mass spectrometry, we have found that a membrane protein AGT1/SLC7A13 is the second partner of rBAT. AGT1 is localized in the apical membrane of the S3 segment, where it forms a heterodimer with rBAT. Depletion of rBAT in mice eliminates the expression of AGT1 in the renal apical membrane. We have reconstituted the purified AGT1-rBAT heterodimer into proteoliposomes and showed that AGT1 transports cystine, aspartate, and glutamate. In the apical membrane of the S3 segment, AGT1 is suggested to locate itself in close proximity to sodium-dependent acidic amino acid transporter EAAC1 for efficient functional coupling. EAAC1 is proposed to take up aspartate and glutamate released into luminal fluid by AGT1 due to its countertransport so that preventing the urinary loss of aspartate and glutamate. Taken all together, AGT1 is the long-postulated second cystine transporter in the S3 segment of proximal tubules and a possible candidate to be involved in isolated cystinuria.
Key Findings
1
AGT1 is the long-postulated cystine transporter in the S3 segment and a candidate gene for isolated cystinuria.
2
AGT1 likely functions near EAAC1 in the S3 apical membrane, with EAAC1 recapturing aspartate and glutamate released by AGT1 countertransport.
3
AGT1 localizes to the apical membrane of the S3 (late) segment and forms a heterodimer with rBAT there.
4
AGT1/SLC7A13 identified as a second partner of rBAT/SLC3A1 in renal proximal tubules via coimmunoprecipitation and mass spectrometry.
5
Knockout/depletion of rBAT in mice abolishes AGT1 expression in the renal apical membrane, indicating rBAT-dependent localization.
6
Purified AGT1–rBAT heterodimer reconstituted into proteoliposomes transports cystine, aspartate, and glutamate.
Research Object
Membrane amino acid transporter AGT1/SLC7A13 in the apical membrane of renal proximal tubule S3 segment (as heterodimer with rBAT/SLC3A1)
Research Subject
AGT1's role as the missing cystine transporter: its heterodimerization with rBAT, localization in S3 apical membrane, and transport activity for cystine, aspartate, and glutamate (functional coupling with EAAC1 and implication for cystinuria)
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2016-01-06
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