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Biology subjects

Kern, B. A.

Publications and source records attributed to Kern, B. A..

2 recordsLinked to original sources

Human NHE1 binds full-length calcineurin with high affinity and inhibits substrate dephosphorylation

Calcineurin (Cn) interacts with the Na+/H+-exchanger NHE1 through its calcineurin-binding domain (NHE1-CnBD). How activation of full-length Cn influences this interaction and its functional consequences has remained unclear. Here, we quantified the interaction between full-length human Cn and NHE1-CnBD in distinct activation states using fluorescence anisotropy and quantitative size-exclusion chromatography. Ca2+/calmodulin activation increased Cn affinity for NHE1-CnBD from submicromolar to tens of nanomolar affinity and stabilized the complex. NHE1-CnBD outcompeted the immunosuppressive cyclosporin A/cyclophilin A complex for Cn binding and selectively inhibited dephosphorylation of a phosphopeptide substrate while enhancing hydrolysis of p-nitrophenyl phosphate. These findings identify NHE1 as a high-affinity, substrate-competitive Cn regulator that blocks substrate recognition rather than catalysis, providing a mechanistic framework for reciprocal regulation between Cn and NHE1.

biochemistry↗

Molecular determinants of selective and high-affinity binding of the scaffold protein PDZK1 to the transporter URAT1

The renal solute carrier URAT1 (SLC22A12) is essential for urate homeostasis, with loss-of-function linked to renal hypouricemia, nephrolithiasis and lower gout risk. URAT1 function depends on binding the multi-PDZ domain scaffold protein PDZK1 (NHERF3), with a similar role suggested for the related NHERF1. The molecular basis of these interactions remains poorly understood. Using fluorescence anisotropy, we show that full-length human PDZK1 binds the C-terminal peptide of URAT1 with high affinity (KD 170 nM), unlike NHERF1 (KD >70 {micro}M). The PDZ1 domain of PDZK1 alone is sufficient for high-affinity binding (KD 160 nM), while PDZ4 provides a secondary site (KD 1.35 {micro}M), with both interactions characterized by rapid kinetics. Gel filtration shows that PDZK1 can bind two URAT1 peptides. X-ray structures of individual PDZ domains from PDZK1 and NHERF1 complexed with the URAT1 peptide reveal the molecular determinants for PDZK1s higher affinity and selectivity. Murine Pdzk1 and Nherf1 bind Urat1 with high affinity indicating species-specific interactions. These data provide insights into URAT1 regulation by PDZ scaffold proteins with relevance for understanding urate homeostasis regulation and related disorders.

biochemistry↗