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    1.A PIP2 substitute mediates voltage sensor-pore coupling in KCNQ activation

    Liu, YF, Xu, XJ, Gao     More...

    COMMUNICATIONS BIOLOGY[2399-3642], Published 2020, Volume 3, Issue 1,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 26  2023影響因子:  5.2  发表年影響因子:  6.268 

    2.Structure and physiological function of the human KCNQ1 channel voltage sensor intermediate state

    Taylor, KC, Kang, PW     More...

    ELIFE[2050-084X], Published 2020, Volume 9,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 32  2023影響因子:  6.4  发表年影響因子:  8.146 

    3.Two-stage "Hand-and-Elbow" Gating Mechanism of a K-V Channel

    Hou, PP, Kang, PW, K     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2020, Volume 118, Issue 3, Pages 113A-113A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  4.033 

    4.Gating Mechanisms of Cardiac and Neuronal KCNQ Potassium Channels

    Yang, ND, Dou, A, Ka     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2020, Volume 118, Issue 3, Pages 264A-264A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  4.033 

    5.Structure and Physiological Function of the KCNQ1 Channel Voltage Sensor Intermediate State

    Sanders, CR, Taylor,     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2020, Volume 118, Issue 3, Pages 333A-333A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  4.033 

    6.Two-stage electro-mechanical coupling of a K-V channel in voltage-dependent activation

    Hou, P, Kang, PW, Ko     More...

    NATURE COMMUNICATIONS[2041-1723], Published 2020, Volume 11, Issue 1,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 40  2023影響因子:  14.7  发表年影響因子:  14.919 

    7.ML277 specifically enhances the fully activated open state of KCNQ1 by modulating VSD-pore coupling

    Hou, PP, Shi, JY, Wh     More...

    ELIFE[2050-084X], Published 2019, Volume 8,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 26  2023影響因子:  6.4  发表年影響因子:  7.080 

    8.A Non-Canonical VSD-Pore Coupling in KCNQ Channels

    Hou, PP, Shi, JY, Cu     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2019, Volume 116, Issue 3, Pages 303A-303A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.854 

    9.CP1 Is a Potent I-Ks Channel Activator Which Acts by Substituting Phosphatidylinositol 4,5 Bisphosphate

    Liu, YF, Xu, XJ, Naf     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2019, Volume 116, Issue 3, Pages 542A-543A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.854 

    10.Structure of the Intermediate State of the Human KCNQ1 Channel Voltage-Sensor Domain

    Taylor, KC, Kang, PW     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2019, Volume 116, Issue 3, Pages 542A-542A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.854 

    11.Predicting Patient Response to the Antiarrhythmic Mexiletine Based on Genetic Variation Personalized Medicine for Long QT Syndrome

    Zhu, WD, Mazzanti, A     More...

    CIRCULATION RESEARCH[0009-7330], Published 2019, Volume 124, Issue 4, Pages 539-552

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 39  2023影響因子:  16.5  发表年影響因子:  14.467 

    12.A Non-canonical VSD-Pore Coupling is Responsible for the AO State of KCNQ1 Channels

    Hou, PP

    BIOPHYSICAL JOURNAL[0006-3495], Published 2018, Volume 114, Issue 3, Pages 122A-122A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.665 

    13.Inactivation of KCNQ1 potassium channels reveals dynamic coupling between voltage sensing and pore opening

    Hou, PP, Eldstrom, J     More...

    NATURE COMMUNICATIONS[2041-1723], Published 2017, Volume 8, Issue 1,

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 49  2023影響因子:  14.7  发表年影響因子:  12.353 

    14.ML277 Opens KCNQ1 Channels by Selectively Enhancing the AO State

    Hou, P, Zhong, L, Ka     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2017, Volume 112, Issue 3, Pages 111A-111A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.495 

    15.The Transitions between Two Open States of the KCNQ1 Potassium Channel Produce Inactivation-Like Phenotype

    Hou, PP, Zaydman, MA     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2017, Volume 112, Issue 3, Pages 163A-163A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.495 

    16.Single Channel Recordings Reveal Differential beta 2 Subunit Modulations Between Mammalian and Drosophila BKCa(beta 2) Channels

    Yan, ZZ, Hu, B, Huan     More...

    PLOS ONE[1932-6203], Published 2016, Volume 11, Issue 10,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2023影響因子:  2.9  发表年影響因子:  2.806 

    17.BK Channel C-Linker and AC Region are Crucial for Auxiliary beta 2 Subunit Regulations

    Yan, ZZ, Hu, B, Guo,     More...

    BIOPHYSICAL JOURNAL[0006-3495], Published 2016, Volume 110, Issue 3, Pages 280A-280A

    收錄情况: WOS

    WOS核心合集引用:  2023影響因子:  3.2  发表年影響因子:  3.656 

    18.Extrapolating microdomain Ca2+ dynamics using BK channels as a Ca2+ sensor

    Hou, PP, Xiao, F, Li     More...

    SCIENTIFIC REPORTS[2045-2322], Published 2016, Volume 6,

    收錄情况: WOS SCOPUS

    WOS核心合集引用:  2023影響因子:  3.8  发表年影響因子:  4.259 

    19.Domain-domain interactions determine the gating, permeation, pharmacology, and subunit modulation of the IKs ion channel

    Zaydman, MA, Kasimov     More...

    ELIFE[2050-084X], Published 2014, Volume 3, Pages e03606

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 71  2023影響因子:  6.4  发表年影響因子:  9.322 

    20.Structural Basis for Calcium and Magnesium Regulation of a Large Conductance Calcium-activated Potassium Channel with beta 1 Subunits

    Liu, HW, Hou, PP, Gu     More...

    JOURNAL OF BIOLOGICAL CHEMISTRY[0021-9258], Published 2014, Volume 289, Issue 24, Pages 16914-16923

    收錄情况: WOS SCOPUS

    WOS核心合集引用: 20  发表年影響因子:  4.573 

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