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Qian H, Zhao X, Yan R, Yao X, Gao S, Sun X, et al. Structural basis for catalysis and substrate specificity of human ACAT1. Nature. 2020 ;581(7808):333-338.
Qian H, Zhao X, Yan R, Yao X, Gao S, Sun X, et al. Structural basis for catalysis and substrate specificity of human ACAT1. Nature. 2020 ;581(7808):333-338.
Deng D, Yan C, Pan X, Mahfouz M, Wang J, Zhu J-K, et al. Structural basis for sequence-specific recognition of DNA by TAL effectors. Science. 2012 ;335(6069):720-3.
Deng D, Yan C, Pan X, Mahfouz M, Wang J, Zhu J-K, et al. Structural basis for sequence-specific recognition of DNA by TAL effectors. Science. 2012 ;335(6069):720-3.
Travis SM, DAmico K, Yu I-M, McMahon C, Hamid S, Ramirez-Arellano G, et al. Structural basis for the binding of SNAREs to the multisubunit tethering complex Dsl1. J Biol Chem. 2020 ;295(30):10125-10135.
Peng W, Shen H, Wu J, Guo W, Pan X, Wang R, et al. Structural basis for the gating mechanism of the type 2 ryanodine receptor RyR2. Science. 2016 ;354(6310).
Yin P, Li Q, Yan C, Liu Y, Liu J, Yu F, et al. Structural basis for the modular recognition of single-stranded RNA by PPR proteins. Nature. 2013 ;504(7478):168-71.
Yin P, Li Q, Yan C, Liu Y, Liu J, Yu F, et al. Structural basis for the modular recognition of single-stranded RNA by PPR proteins. Nature. 2013 ;504(7478):168-71.
Yin P, Li Q, Yan C, Liu Y, Liu J, Yu F, et al. Structural basis for the modular recognition of single-stranded RNA by PPR proteins. Nature. 2013 ;504(7478):168-71.
Yin P, Li Q, Yan C, Liu Y, Liu J, Yu F, et al. Structural basis for the modular recognition of single-stranded RNA by PPR proteins. Nature. 2013 ;504(7478):168-71.
Shen H, Li Z, Jiang Y, Pan X, Wu J, Cristofori-Armstrong B, et al. Structural basis for the modulation of voltage-gated sodium channels by animal toxins. Science. 2018 ;362(6412).
Gong X, Qian H, Cao P, Zhao X, Zhou Q, Lei J, et al. Structural basis for the recognition of Sonic Hedgehog by human Patched1. Science. 2018 ;361(6402).
Qian H, Wu X, Du X, Yao X, Zhao X, Lee J, et al. Structural Basis of Low-pH-Dependent Lysosomal Cholesterol Egress by NPC1 and NPC2. Cell. 2020 ;182(1):98-111.e18.
Qian H, Wu X, Du X, Yao X, Zhao X, Lee J, et al. Structural Basis of Low-pH-Dependent Lysosomal Cholesterol Egress by NPC1 and NPC2. Cell. 2020 ;182(1):98-111.e18.
Qian H, Wu X, Du X, Yao X, Zhao X, Lee J, et al. Structural Basis of Low-pH-Dependent Lysosomal Cholesterol Egress by NPC1 and NPC2. Cell. 2020 ;182(1):98-111.e18.
Yan N. Structural Biology of the Major Facilitator Superfamily Transporters. Annu Rev Biophys. 2015 ;44:257-83.
Yin P, Fan H, Hao Q, Yuan X, Wu D, Pang Y, et al. Structural insights into the mechanism of abscisic acid signaling by PYL proteins. Nat Struct Mol Biol. 2009 ;16(12):1230-6.
Yin P, Fan H, Hao Q, Yuan X, Wu D, Pang Y, et al. Structural insights into the mechanism of abscisic acid signaling by PYL proteins. Nat Struct Mol Biol. 2009 ;16(12):1230-6.
Yin P, Fan H, Hao Q, Yuan X, Wu D, Pang Y, et al. Structural insights into the mechanism of abscisic acid signaling by PYL proteins. Nat Struct Mol Biol. 2009 ;16(12):1230-6.
Yin P, Fan H, Hao Q, Yuan X, Wu D, Pang Y, et al. Structural insights into the mechanism of abscisic acid signaling by PYL proteins. Nat Struct Mol Biol. 2009 ;16(12):1230-6.
Yan N. Structural investigation of the proton-coupled secondary transporters. Curr Opin Struct Biol. 2013 ;23(4):483-91.
Wang L, Qian H, Nian Y, Han Y, Ren Z, Zhang H, et al. Structure and mechanism of human diacylglycerol O-acyltransferase 1. Nature. 2020 ;581(7808):329-332.
Lu F, Li S, Jiang Y, Jiang J, Fan H, Lu G, et al. Structure and mechanism of the uracil transporter UraA. Nature. 2011 ;472(7342):243-6.
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.