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PubMed This is a summary of 13 peer-reviewed journal articles Updated

Research & Literature

Explore the leading researchers and institutions driving advances in this area, and dive into the full body of literature that informs this resource.

Explore the Literature Visualize citation networks across 13 referenced papers

Top Authors

Stefan Bröer
University of Tübingen
Stephen J. Fairweather
Australian National University
Peng Zhou
Wuhan Institute of Virology
Zheng‐Li Shi
Wuhan Institute of Virology
Markus Hoffmann
German Primate Center
Stefan Pöhlmann
University of Göttingen
François Verrey
University of Zurich
Renhong Yan
Southern University of Science and Technology
Simone M. R. Camargo
University of Zurich
Marek Bajda
Jagiellonian University

Top Institutions

Ranked by publications Top 10 institutions
08

Chinese Academy of Sciences

Beijing, China

11 papers

References

References (13)
  1. 1

    Human intestine luminal ACE2 and amino acid transporter expression increased by ACE-inhibitors.

    Vuille-dit-Bille RN, Camargo SM, Emmenegger L, et al.

    Amino acids 2015; (47(4)):693-705 doi:10.1007/s00726-014-1889-6.

    PMID: 25534429
  2. 2

    Epidemiology of paediatric renal stone disease: a 22-year single centre experience in the UK.

    Issler N, Dufek S, Kleta R, et al.

    BMC nephrology 2017; (18(1)):136 doi:10.1186/s12882-017-0505-x.

    PMID: 28420322
  3. 3

    Updates in the Metabolic Management of Calcium Stones.

    Penniston KL, Nakada SY

    Current urology reports 2018; (19(6)):41 doi:10.1007/s11934-018-0791-2.

    PMID: 29663088
  4. 4

    Intestinal IMINO transporter SIT1 is not expressed in human newborns.

    Meier C, Camargo SM, Hunziker S, et al.

    American journal of physiology. Gastrointestinal and liver physiology 2018; (315(5)):G887-G895 doi:10.1152/ajpgi.00318.2017.

    PMID: 30160974
  5. 5

    Amino Acid Transport Across the Mammalian Intestine.

    Bröer S, Fairweather SJ

    Comprehensive Physiology 2018; (9(1)):343-373 doi:10.1002/cphy.c170041.

    PMID: 30549024
  6. 6

    ACE2 and gut amino acid transport.

    Camargo SMR, Vuille-Dit-Bille RN, Meier CF, Verrey F

    Clinical science (London, England : 1979) 2020; (134(21)):2823-2833 doi:10.1042/CS20200477.

    PMID: 33140827
  7. 7

    Regulation of Angiotensin-Converting Enzyme 2: A Potential Target to Prevent COVID-19?

    Hu Y, Liu L, Lu X

    Frontiers in endocrinology 2021; (12()):725967 doi:10.3389/fendo.2021.725967.

    PMID: 34745001
  8. 8

    Expression of SARS-CoV-2 entry factors, electrolyte, and mineral transporters in different mouse intestinal epithelial cell types.

    Pearce SC, Suntornsaratoon P, Kishida K, et al.

    Physiological reports 2021; (9(21)):e15061 doi:10.14814/phy2.15061.

    PMID: 34755492
  9. 9

    Genetic mutation of SLC6A20 (c.1072T > C) in a family with nephrolithiasis: A case report.

    Jv M, Zheng J, Yang A, et al.

    Open medicine (Warsaw, Poland) 2023; (18(1)):20230648 doi:10.1515/med-2023-0648.

    PMID: 36820062
  10. 10

    The Role of Proton-Coupled Amino Acid Transporter 2 (SLC36A2) in Cold-Induced Thermogenesis of Mice.

    Shu H, Zhang J, Cheng D, et al.

    Nutrients 2023; (15(16)) doi:10.3390/nu15163552.

    PMID: 37630739
  11. 11

    The SLC6A15-SLC6A20 Neutral Amino Acid Transporter Subfamily: Functions, Diseases, and Their Therapeutic Relevance.

    Kukułowicz J, Pietrzak-Lichwa K, Klimończyk K, et al.

    Pharmacological reviews 2023; (76(1)):142-193 doi:10.1124/pharmrev.123.000886.

    PMID: 37940347
  12. 12

    Structure and function of the SIT1 proline transporter in complex with the COVID-19 receptor ACE2.

    Li HZ, Pike ACW, Lotsaris I, et al.

    Nature communications 2024; (15(1)):5503 doi:10.1038/s41467-024-48921-x.

    PMID: 38951531
  13. 13

    Cryo-EM structure of ACE2-SIT1 in complex with tiagabine.

    Bröer A, Hu Z, Kukułowicz J, et al.

    The Journal of biological chemistry 2024; (300(9)):107687 doi:10.1016/j.jbc.2024.107687.

    PMID: 39159813