Functional Characterization of the Lysosomal Peptide/Histidine Transporter PHT1 (SLC15A4) by Solid Supported Membrane Electrophysiology (SSME).

Pujol-Giménez, Jonai; Baumann, Sven P.; Ho, Manh Tin; Augustynek, Bartlomiej; Hediger, Matthias A. (2024). Functional Characterization of the Lysosomal Peptide/Histidine Transporter PHT1 (SLC15A4) by Solid Supported Membrane Electrophysiology (SSME). Biomolecules, 14(7) MDPI 10.3390/biom14070771

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The peptide/histidine transporter PHT1 (SLC15A4) is expressed in the lysosomal membranes of immune cells where it plays an important role in metabolic and inflammatory signaling. PHT1 is an H+-coupled/histidine symporter that can transport a wide range of oligopeptides, including a variety of bacterial-derived peptides. Moreover, it enables the scaffolding of various metabolic signaling molecules and interacts with key regulatory elements of the immune response. Not surprisingly, PHT1 has been implicated in the pathogenesis of autoimmune diseases such as systemic lupus erythematosus (SLE). Unfortunately, the pharmacological development of PHT1 modulators has been hampered by the lack of suitable transport assays. To address this shortcoming, a novel transport assay based on solid-supported membrane-based electrophysiology (SSME) is presented. Key findings of the present SSME studies include the first recordings of electrophysiological properties, a pH dependence analysis, an assessment of PHT1 substrate selectivity, as well as the transport kinetics of the identified substrates. In contrast to previous work, PHT1 is studied in its native lysosomal environment. Moreover, observed substrate selectivity is validated by molecular docking. Overall, this new SSME-based assay is expected to contribute to unlocking the pharmacological potential of PHT1 and to deepen the understanding of its functional properties.

Item Type:

Journal Article (Original Article)

Division/Institute:

04 Faculty of Medicine > Pre-clinic Human Medicine > BioMedical Research (DBMR) > Unit Childrens Hospital > Forschungsgruppe Nephrologie / Hypertonie
04 Faculty of Medicine > Department of Dermatology, Urology, Rheumatology, Nephrology, Osteoporosis (DURN) > Clinic of Nephrology and Hypertension
04 Faculty of Medicine > Pre-clinic Human Medicine > BioMedical Research (DBMR)

UniBE Contributor:

Pujol Gimenez, Jonai, Baumann, Sven Patric, Ho, Manh Tin, Augustynek, Bartlomiej Stanislaw, Hediger, Matthias

Subjects:

600 Technology > 610 Medicine & health

ISSN:

2218-273X

Publisher:

MDPI

Language:

English

Submitter:

Pubmed Import

Date Deposited:

29 Jul 2024 10:37

Last Modified:

29 Jul 2024 10:47

Publisher DOI:

10.3390/biom14070771

PubMed ID:

39062485

Uncontrolled Keywords:

PHT1 SLC15 family SLC15A4 functional characterization molecular docking pH dependence solid supported membrane electrophysiology (SSME) substrate selectivity

BORIS DOI:

10.48350/199325

URI:

https://boris.unibe.ch/id/eprint/199325

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