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Daniel S. Terry

Researcher at St. Jude Children's Research Hospital

Publications -  49
Citations -  3977

Daniel S. Terry is an academic researcher from St. Jude Children's Research Hospital. The author has contributed to research in topics: Förster resonance energy transfer & Allosteric regulation. The author has an hindex of 23, co-authored 45 publications receiving 3141 citations. Previous affiliations of Daniel S. Terry include Cornell University & Electronics and Telecommunications Research Institute.

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Substrate-modulated gating dynamics in a Na + -coupled neurotransmitter transporter homologue

TL;DR: Substrate binding in this S2 site appears to act cooperatively with the primary substrate (S1) binding site to control intracellular gating more than 30 Å away, in a manner that allows the Na+ gradient to power the transport mechanism.
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Cyanine fluorophore derivatives with enhanced photostability

TL;DR: It is demonstrated that the direct or proximal conjugation of cyclooctatetraene, 4-nitrobenzyl alcohol or Trolox to the cyanine fluorophore Cy5 dramatically enhanced fluorophores photostability without otherwise affecting its native spectral characteristics.
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Single-molecule dynamics of gating in a neurotransmitter transporter homologue

TL;DR: The direct observations of single-molecule transitions, reflecting structural dynamics of the intracellular region of the transporter that might be masked by ensemble averaging or suppressed under crystallographic conditions, are interpreted in the context of an allosteric mechanism that couples ion and substrate binding to transport.
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Single-molecule analysis of ligand efficacy in β2AR–G-protein activation

TL;DR: It is shown that partial and full agonists differentially affect TM6 motions to regulate the rate at which GDP-bound β2AR–Gs complexes are formed and the efficiency of nucleotide exchange leading to Gs activation, which sheds new light on the G-protein activation mechanism.