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Publication list

publication_uri type publication_title year doi pmid journal_uri
http://vivo.scripps.edu/individual/e2n250790 AcademicArticle Molecular interactions connecting the function of the serine-arginine-rich protein SRSF1 to protein phosphatase 1 2018 10.1074/jbc.RA118.004587 30185622 http://vivo.scripps.edu/individual/endnote308813
http://vivo.scripps.edu/individual/e2n40223 AcademicArticle The acidic domain is a unique structural feature of the splicing factor SYNCRIP 2016 10.1002/pro.2935 27081926 http://vivo.scripps.edu/individual/endnote61860
http://vivo.scripps.edu/individual/e2n281326 AcademicArticle UHM-ULM interactions in the RBM39-U2AF65 splicing-factor complex 2016 10.1107/s2059798316001248 27050129 http://vivo.scripps.edu/individual/e2n180717
http://vivo.scripps.edu/individual/e2n277030 AcademicArticle NMR in structural genomics to increase structural coverage of the protein universe Delivered by Prof. Kurt Wuthrich on 7 July 2013 at the 38th FEBS Congress in St. Petersburg, Russia 2016 10.1111/febs.13751 27154589 http://vivo.scripps.edu/individual/endnote203539
http://vivo.scripps.edu/individual/e2n243527 AcademicArticle Dynamic local polymorphisms in the Gbx1 homeodomain induced by DNA binding 2016 10.1016/j.str.2016.05.013 27396829 http://vivo.scripps.edu/individual/endnote342426
http://vivo.scripps.edu/individual/e2n192901 AcademicArticle Nuclear magnetic resonance structure of a novel globular domain in RBM10 containing OCRE, the octamer repeat sequence motif 2016 10.1016/j.str.2015.10.029 26712279 http://vivo.scripps.edu/individual/endnote342426
http://vivo.scripps.edu/individual/e2n199040 AcademicArticle NMR reveals structural rearrangements associated to substrate insertion in nucleotide-adding enzymes 2016 10.1002/pro.2872 26749007 http://vivo.scripps.edu/individual/endnote61860
http://vivo.scripps.edu/individual/e2n150490 AcademicArticle DIx5 homeodomain:DNA complex: structure, binding and effect of mutations related to split hand and foot malformation syndrome 2016 10.1016/j.jmb.2016.01.023 26829219 http://vivo.scripps.edu/individual/endnote261742
http://vivo.scripps.edu/individual/e2n296918 AcademicArticle Cofactor-induced reversible folding of Flavodoxin-4 from Lactobacillus acidophilus 2015 10.1002/pro.2743 26177955 http://vivo.scripps.edu/individual/endnote61860
http://vivo.scripps.edu/individual/e2n38236 AcademicArticle APSY-NMR for protein backbone assignment in high-throughput structural biology 2015 10.1007/s10858-014-9881-8 25428764 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/e2n265821 AcademicArticle Non-uniform sampling and J-UNIO automation for efficient protein NMR structure determination 2015 10.1002/chem.201502544 26227870 http://vivo.scripps.edu/individual/endnote203654
http://vivo.scripps.edu/individual/e2n119657 AcademicArticle NMR structure determination of the protein NP_344798.1 as the first representative of Pfam PF06042 2015 10.1007/s10858-014-9878-3 25430057 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/e2n215794 AcademicArticle J-UNIO protocol used for NMR structure determination of the 206-residue protein NP_346487.1 from Streptococcus pneumoniae TIGR4 2015 10.1007/s10858-014-9886-3 25428766 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/e14n377110 AcademicArticle NMR structures of α-proteobacterial ATPase-regulating ζ-subunits 2014 10.1016/j.jmb.2014.05.004 24838125 http://vivo.scripps.edu/individual/endnote261742
http://vivo.scripps.edu/individual/e3n163368 AcademicArticle Structural representative of the protein family PF14466 has a new fold and establishes links with the C2 and PLAT domains from the widely distant Pfams PF00168 and PF01477 2013 10.1002/pro.2284 23681886 http://vivo.scripps.edu/individual/endnote61860
http://vivo.scripps.edu/individual/e4n386770 AcademicArticle NMR-profiles of protein solutions 2013 10.1002/bip.22348 23839514 http://vivo.scripps.edu/individual/endnote234015
http://vivo.scripps.edu/individual/enote221326 AcademicArticle Micro-coil NMR to monitor optimization of the reconstitution conditions for the integral membrane protein OmpW in detergent micelles 2012 10.1007/s10858-012-9658-x 22890565 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/enote395400 AcademicArticle The J-UNIO protocol for automated protein structure determination by NMR in solution 2012 10.1007/s10858-012-9645-2 22752932 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/enote338673 AcademicArticle Translational diffusion measurements by microcoil NMR in aqueous solutions of the Fos-10 detergent-solubilized membrane protein OmpX 2012 10.1021/jp212401w 22335573 http://vivo.scripps.edu/individual/endnote19181
http://vivo.scripps.edu/individual/endnote315830 AcademicArticle Development of non-peptide ligands of growth factor receptor-bound protein 2-SRC homology 2 domain using molecular modeling and NMR spectroscopy 2011 10.1021/jm101478n 21271718 http://vivo.scripps.edu/individual/endnote266962
http://vivo.scripps.edu/individual/endnote39171 AcademicArticle NMR structure of the Bordetella bronchiseptica protein NP_888769.1 establishes a new phage-related protein family PF13554 2011 10.1002/pro.641 21520320 http://vivo.scripps.edu/individual/endnote61860
http://vivo.scripps.edu/individual/e2n359763 AcademicArticle Comparison of NMR and crystal structures for the proteins TM1112 and TM1367 2010 10.1107/s1744309110020956 20944235 http://vivo.scripps.edu/individual/e11n249114
http://vivo.scripps.edu/individual/endnote144580 AcademicArticle NMR structure of the protein NP_247299.1: comparison with the crystal structure 2010 10.1107/s1744309110005890 20944234 http://vivo.scripps.edu/individual/endnote246160
http://vivo.scripps.edu/individual/endnote391654 AcademicArticle Sequential nearest-neighbor effects on computed (13)Cα chemical shifts 2010 10.1007/s10858-010-9435-7 20644980 http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/endnote334854 AcademicArticle Comparison of NMR and crystal structures highlights conformational isomerism in protein active sites 2010 10.1107/s1744309110033658 20944236 http://vivo.scripps.edu/individual/endnote246160
http://vivo.scripps.edu/individual/endnote287197 AcademicArticle Nuclear magnetic resonance structure of the nucleic acid-binding domain of severe acute respiratory syndrome coronavirus nonstructural protein 3 2009 10.1128/jvi.01253-09 19828617 http://vivo.scripps.edu/individual/endnote197644
http://vivo.scripps.edu/individual/endnote156445 AcademicArticle NMR characterization of membrane protein-detergent micelle solutions by use of microcoil equipment 2009 10.1021/ja907842u 19950959 http://vivo.scripps.edu/individual/endnote181842
http://vivo.scripps.edu/individual/endnote238213 AcademicArticle Nuclear magnetic resonance structure shows that the severe acute respiratory syndrome coronavirus-unique domain contains a macrodomain fold 2009 10.1128/jvi.01781-08 19052085 http://vivo.scripps.edu/individual/endnote197644
http://vivo.scripps.edu/individual/endnote112798 AcademicArticle Proteomics analysis unravels the functional repertoire of coronavirus nonstructural protein 3 2008 10.1128/jvi.02631-07 18367524 http://vivo.scripps.edu/individual/endnote197644
http://vivo.scripps.edu/individual/endnote65287 AcademicArticle NMR assignment of the nonstructural protein nsp3(1066-1181) from SARS-CoV 2008 10.1007/s12104-008-9104-x 19636888 http://vivo.scripps.edu/individual/endnote11719
http://vivo.scripps.edu/individual/e2n66045 AcademicArticle Parallel synthesis and yeast growth inhibition screening of succinamic acid libraries 2007 10.1021/cc070026n 17536867 http://vivo.scripps.edu/individual/endnote194699
http://vivo.scripps.edu/individual/e2n292452 AcademicArticle An unexpected access to 5-epi-cyclophellitol: a new cyclitol member 2007 10.1016/j.tetasy.2007.08.002 http://vivo.scripps.edu/individual/endnote341227
http://vivo.scripps.edu/individual/e2n69172 AcademicArticle Combinatorial approach to N-substituted aminocyclitol libraries by solution-phase parallel synthesis and preliminary evaluation as glucocerebrosidase inhibitors 2007 10.1021/cc060080o 17206831 http://vivo.scripps.edu/individual/endnote194699
http://vivo.scripps.edu/individual/endnote177585 AcademicArticle Nuclear magnetic resonance structure of the N-terminal domain of nonstructural protein 3 from the severe acute respiratory syndrome coronavirus 2007 10.1128/jvi.00969-07 17728234 http://vivo.scripps.edu/individual/endnote197644
http://vivo.scripps.edu/individual/endnote12419 AcademicArticle NMR assignment of the domain 513-651 from the SARS-CoV nonstructural protein nsp3 2007 10.1007/s12104-007-9052-x 19636862 http://vivo.scripps.edu/individual/endnote11719
http://vivo.scripps.edu/individual/endnote144861 AcademicArticle NMR assignment of the protein nsp3a from sars-cov 2006 10.1007/s10858-006-9017-x http://vivo.scripps.edu/individual/endnote56736
http://vivo.scripps.edu/individual/e2n65545 AcademicArticle On the regio- and stereoselective synthesis of aminocyclitols from cyclitol epoxides: the effect of Li as a chelating agent 2005 10.1002/chem.200401270 15892185 http://vivo.scripps.edu/individual/endnote203654
http://vivo.scripps.edu/individual/e2n270115 AcademicArticle New aminocyclitols as modulators of glucosylceramide metabolism 2005 10.1039/b411473f 15785807 http://vivo.scripps.edu/individual/endnote53188
http://vivo.scripps.edu/individual/e2n398098 AcademicArticle Regio- and stereoselective synthesis of aminoinositols and 1,2-diaminoinositols from conduritol B epoxide 2005 10.1021/jo050521a 16277302 http://vivo.scripps.edu/individual/endnote171323
http://vivo.scripps.edu/individual/e2n18442 AcademicArticle An unexpected chelation-controlled Yb(OTf)(3)-catalyzed aminolysis and azidolysis of cyclitol epoxides 2002 10.1021/jo0261146 12354019 http://vivo.scripps.edu/individual/endnote171323

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