bioRxiv Science⌕ Search

Biology subjects

Merz, K. M.

Publications and source records attributed to Merz, K. M..

2 recordsLinked to original sources

An N-terminal amphipathic helix governs activity and conformational dynamics of Nramp metal transporters

Nramps are a family of proton-coupled divalent metal ion transporters that play critical roles in maintaining homeostasis of essential metals. In humans, Nramp2 (DMT1) mediates iron uptake to support both cellular and systemic iron homeostasis, whereas Nramp1 exports metals from phagosomes, contributing to antimicrobial defense. A survey of experimentally solved Nramp structures reveals that an N-terminal helix (A) immediately preceding TM1 is folded only in the outward-facing or outward-facing occluded states, raising the question of its role in Nramp transport. Here, we combined mutagenesis, transport assays, and molecular dynamics simulations to investigate A. Our results show that deletion or substitution of conserved residues in A markedly reduces Fe2+ transport. Simulations indicate that A behaves as an amphipathic helix in the outward-facing state and preferentially stabilizes this conformation over the inward-facing state, thus acting as a key player in controlling conformational equilibrium. This study provides new insights into structural dynamics of Nramps and potentially sheds light on other LeuT-fold transporters.

biochemistry↗

Biocatalytic Construction of a CEST MRI Nucleoside Probe: Synthesis and Evaluation of 5-Methyl-5,6-dihydrothymidine

Magnetic Resonance Imaging (MRI) is a cornerstone of modern clinical diagnostics, often enhanced by contrast agents. Traditionally, these agents are chemically synthesized, which can involve complex, costly, and environmentally unfriendly processes. Here, we report a novel biocatalytic approach for the efficient, safe, and eco-friendly synthesis of 5-methyl-5,6-dihydrothymidine (5-MDHT), a potent Chemical Exchange Saturation Transfer (CEST) MRI probe for imaging in vivo expression of the Herpes Simplex Virus Type-1 Thymidine Kinase (HSV1-TK) reporter gene. We demonstrate that 5-MDHT can be biosynthesized via one- or two-step enzymatic reactions using human purine nucleoside phosphorylase (hPNPase) and the SgvMVAV SAM-dependent methyltransferase. hPNPase catalyzed the base-exchange reaction with catalytic efficiencies (kcat/KM) between 138-316 s-1 M-1, while SgvMVAV methylation of 5,6-dihydrothymidine yielded 5-MDHT with a catalytic efficiency of 26 s-1 M-1. Molecular dynamics simulations supported the enzymatic binding and selectivity observed experimentally. The resulting 5-MDHT was validated using CEST-MRI, showing a distinct exchangeable imino proton signal at 5.3 ppm. These findings highlight the chemo- and regioselectivity of the biocatalysts and establish biocatalysis as a viable platform for producing clinically relevant MRI contrast agents.

biochemistry↗