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vonHoldt BM, Shuldiner E, Koch IJanowitz, Kartzinel RY, Hogan A, Brubaker L, et al. Structural variants in genes associated with human Williams-Beuren syndrome underlie stereotypical hypersociability in domestic dogs. Sci Adv. 2017 ;3(7):e1700398.
vonHoldt BM, Shuldiner E, Koch IJanowitz, Kartzinel RY, Hogan A, Brubaker L, et al. Structural variants in genes associated with human Williams-Beuren syndrome underlie stereotypical hypersociability in domestic dogs. Sci Adv. 2017 ;3(7):e1700398.
Schramma KR, Bushin LB, Seyedsayamdost MR. Structure and biosynthesis of a macrocyclic peptide containing an unprecedented lysine-to-tryptophan crosslink. Nat Chem. 2015 ;7(5):431-437.
Schramma KR, Bushin LB, Seyedsayamdost MR. Structure and biosynthesis of a macrocyclic peptide containing an unprecedented lysine-to-tryptophan crosslink. Nat Chem. 2015 ;7(5):431-437.
Seyedsayamdost MR, Traxler MF, Zheng S-L, Kolter R, Clardy J. Structure and biosynthesis of amychelin, an unusual mixed-ligand siderophore from Amycolatopsis sp. AA4. J Am Chem Soc. 2011 ;133(30):11434-7.
Shen H, Zhou Q, Pan X, Li Z, Wu J, Yan N. Structure of a eukaryotic voltage-gated sodium channel at near-atomic resolution. Science. 2017 ;355(6328).
Dang S, Sun L, Huang Y, Lu F, Liu Y, Gong H, et al. Structure of a fucose transporter in an outward-open conformation. Nature. 2010 ;467(7316):734-8.
Wang Y, Huang Y, Wang J, Cheng C, Huang W, Lu P, et al. Structure of the formate transporter FocA reveals a pentameric aquaporin-like channel. Nature. 2009 ;462(7272):467-72.
Pan X, Li Z, Zhou Q, Shen H, Wu K, Huang X, et al. Structure of the human voltage-gated sodium channel Na1.4 in complex with β1. Science. 2018 ;362(6412).
Yan Z, Zhou Q, Wang L, Wu J, Zhao Y, Huang G, et al. Structure of the Nav1.4-β1 Complex from Electric Eel. Cell. 2017 ;170(3):470-482.e11.
Yan Z, Bai X, Yan C, Wu J, Li Z, Xie T, et al. Structure of the rabbit ryanodine receptor RyR1 at near-atomic resolution. Nature. 2015 ;517(7532):50-55.
Yan Z, Bai X, Yan C, Wu J, Li Z, Xie T, et al. Structure of the rabbit ryanodine receptor RyR1 at near-atomic resolution. Nature. 2015 ;517(7532):50-55.
Gong X, Li J, Shao W, Wu J, Qian H, Ren R, et al. Structure of the WD40 domain of SCAP from fission yeast reveals the molecular basis for SREBP recognition. Cell Res. 2015 ;25(4):401-11.
Boyaci H, Shah T, Hurley A, Kokona B, Li Z, Ventocilla C, et al. Structure, Regulation, and Inhibition of the Quorum-Sensing Signal Integrator LuxO. PLoS Biol. 2016 ;14(5):e1002464.
Boyaci H, Shah T, Hurley A, Kokona B, Li Z, Ventocilla C, et al. Structure, Regulation, and Inhibition of the Quorum-Sensing Signal Integrator LuxO. PLoS Biol. 2016 ;14(5):e1002464.
McKoy AF, Chen J, Schüpbach T, Hecht MH. Structure-activity relationships for a series of compounds that inhibit aggregation of the Alzheimer's peptide, Aβ42. Chem Biol Drug Des. 2014 ;84(5):505-12.
Siems A, Banks R, Holubkov R, Meert KL, Bauerfeld C, Beyda D, et al. Structured Chart Review: Assessment of a Structured Chart Review Methodology. Hosp Pediatr. 2020 ;10(1):61-69.
Siems A, Banks R, Holubkov R, Meert KL, Bauerfeld C, Beyda D, et al. Structured Chart Review: Assessment of a Structured Chart Review Methodology. Hosp Pediatr. 2020 ;10(1):61-69.
Shen H, Liu D, Wu K, Lei J, Yan N. Structures of human Nav1.7 channel in complex with auxiliary subunits and animal toxins. Science. 2019 ;.
Davis KM, Schramma KR, Hansen WA, Bacik JP, Khare SD, Seyedsayamdost MR, et al. Structures of the peptide-modifying radical SAM enzyme SuiB elucidate the basis of substrate recognition. Proc Natl Acad Sci U S A. 2017 ;114(39):10420-10425.
Davis KM, Schramma KR, Hansen WA, Bacik JP, Khare SD, Seyedsayamdost MR, et al. Structures of the peptide-modifying radical SAM enzyme SuiB elucidate the basis of substrate recognition. Proc Natl Acad Sci U S A. 2017 ;114(39):10420-10425.
Robinson DG, Storey JD. subSeq: determining appropriate sequencing depth through efficient read subsampling. Bioinformatics. 2014 ;30(23):3424-6.
Lee J, Sutterlin HA, Wzorek JS, Mandler MD, Hagan CL, Grabowicz M, et al. Substrate binding to BamD triggers a conformational change in BamA to control membrane insertion. Proc Natl Acad Sci U S A. 2018 ;.
Lee J, Sutterlin HA, Wzorek JS, Mandler MD, Hagan CL, Grabowicz M, et al. Substrate binding to BamD triggers a conformational change in BamA to control membrane insertion. Proc Natl Acad Sci U S A. 2018 ;.
Simsek ANihat, Braeutigam A, Koch MD, Shaevitz JW, Huang Y, Gompper G, et al. Substrate-rigidity dependent migration of an idealized twitching bacterium. Soft Matter. 2019 ;15(30):6224-6236.