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Brazilian Journal of Microbiology : [Publication of the Brazilian Society for Microbiology]|May 15, 2020
The correlation analyses of bacterial community composition and spatial factors between freshwater and sediment in Poyang Lake wetland by using artificial neural network (ANN) modelingRan Sun, Zuxin Tu, Lin Fan, et al.The Journal of Biological Chemistry|October 15, 2003
Residue Gln4863 within a predicted transmembrane sequence of the Ca2+ release channel (ryanodine receptor) is critical for ryanodine interactionRuiwu Wang, Lin Zhang, Jeff Bolstad, et al.The Journal of Biological Chemistry|May 29, 2008
Reduced threshold for luminal Ca2+ activation of RyR1 underlies a causal mechanism of porcine malignant hyperthermiaDawei Jiang, Wenqian Chen, Jianmin Xiao, et al.Structure (London, England : 1993)|October 22, 2013
Conformational dynamics inside amino-terminal disease hotspot of ryanodine receptorXiaowei Zhong, Ying Liu, Li Zhu, et al.Journal of Electrocardiology|September 21, 2016
A novel RYR2 loss-of-function mutation (I4855M) is associated with left ventricular non-compaction and atypical catecholaminergic polymorphic ventricular tachycardiaThomas M Roston, Wenting Guo, Andrew D Krahn, et al.Molecular Pharmacology|June 16, 2005
The Gln4863Ala mutation within a putative, pore-lining trans-membrane helix of the cardiac ryanodine receptor channel alters both the kinetics of ryanoid interaction and the subsequent fractional conductanceKishani M Ranatunga, Tracy M Moreno-King, Bhavna Tanna, et al.The Biochemical Journal|June 11, 2013
The CPVT-associated RyR2 mutation G230C enhances store overload-induced Ca2+ release and destabilizes the N-terminal domainsYingjie Liu, Lynn Kimlicka, Florian Hiess, et al.The Biochemical Journal|July 9, 2017
Reduced threshold for store overload-induced Ca<sup>2+</sup> release is a common defect of RyR1 mutations associated with malignant hyperthermia and central core diseaseWenqian Chen, Andrea Koop, Yingjie Liu, et al.Plos One|September 30, 2017
CPVT-associated cardiac ryanodine receptor mutation G357S with reduced penetrance impairs Ca2+ release termination and diminishes protein expressionYingjie Liu, Jinhong Wei, Siobhan M Wong King Yuen, et al.Nature|July 7, 2019
Modulation of cardiac ryanodine receptor 2 by calmodulinDeshun Gong, Ximin Chi, Jinhong Wei, et al.Pageof 9