CHBC Faculty Publications

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TitleUA AuthorPublication NameYear
Characterizing lysine acetylation of Escherichia coli type II citrate synthaseChen, HaoFEBS Journal2019
Characterizing lysine acetylation of Escherichia coli type II citrate synthaseFan, ChenguangFEBS Journal2019
Characterizing lysine acetylation of Escherichia coli type II citrate synthaseGan, QingleiFEBS Journal2019
Characterizing lysine acetylation of Escherichia coli type II citrate synthaseStahman, AlleighFEBS Journal2019
Characterizing lysine acetylation of Escherichia coli type II citrate synthaseVenkat, SumanaFEBS Journal2019
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationBauer, Ryan ThomasFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationCaviness, Perry CarterFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationHarter, DawnFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationJanowska, KatarzynaFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationRoeser, Jeffrey RandallFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationRuth, Christopher EricFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationSakon, JoshFEBS Journal2018
Ca2+-induced orientation of tandem collagen binding domains from clostridial collagenase ColG permits two opposing functions of collagen fibril formation and retardationSanders, JesFEBS Journal2018
Expression and purification of recombinant Von Willebrand factor A1A2A3 domainsLay Jr, Jackson OliverFEBS Journal2015
Expression and purification of recombinant Von Willebrand factor A1A2A3 domainsLiyanage, RohanaFEBS Journal2015
Expression and purification of recombinant Von Willebrand factor A1A2A3 domainsSeyran, EsraFEBS Journal2015
Expression and purification of recombinant Von Willebrand factor A1A2A3 domainsStites, Wesley EugeneFEBS Journal2015
Ca2+-induced linker transformation leads to a compact and rigid collagen-binding domain of Clostridium histolyticum collagenasePhilominathan, Sagaya Theresa LeenaFEBS Journal2009
Ca2+-induced linker transformation leads to a compact and rigid collagen-binding domain of Clostridium histolyticum collagenaseSakon, JoshFEBS Journal2009