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Biochimica Et Biophysica Acta|January 24, 2006
The yeast prion protein Ure2: structure, function and foldingHui-Yong Lian, Yi Jiang, Hong Zhang, et al.The Journal of Biological Chemistry|March 6, 2021
Structural basis for the DNA-binding activity of human ARID4B Tudor domainJie Ren, Hongwei Yao, Wanhui Hu, et al.The Journal of Biological Chemistry|January 31, 2015
Evolutionarily conserved binding of translationally controlled tumor protein to eukaryotic elongation factor 1BHuiwen Wu, Weibin Gong, Xingzhe Yao, et al.Journal of Molecular Biology|October 11, 2008
"Restoration" of glutathione transferase activity by single-site mutation of the yeast prion protein Ure2Zai-Rong Zhang, Ming Bai, Xin-Yu Wang, et al.Journal of Molecular Biology|April 10, 2003
Relationship between stability of folding intermediates and amyloid formation for the yeast prion Ure2p: a quantitative analysis of the effects of pH and buffer systemLi Zhu, Xu-Jia Zhang, Ling-Yun Wang, et al.Protein Engineering, Design & Selection : PEDS|November 16, 2010
Deletion of a Ure2 C-terminal prion-inhibiting region promotes the rate of fibril seed formation and alters interaction with Hsp40Li Chen, Li-Jun Chen, Hai-Yan Wang, et al.BMC Neuroscience|January 24, 2007
Amyloid-like aggregates of neuronal tau induced by formaldehyde promote apoptosis of neuronal cellsChun Lai Nie, Xing Sheng Wang, Ying Liu, et al.Biochimie|December 29, 2005
Effect of C-terminal truncation on the molecular chaperone function and dimerization of Escherichia coli trigger factorLi-Ling Zeng, Ling Yu, Zhen-Yu Li, et al.G3 (Bethesda, Md.)|June 26, 2013
Mutational analysis of Sse1 (Hsp110) suggests an integral role for this chaperone in yeast prion propagation in vivoCiara Moran, Gemma K Kinsella, Zai-Rong Zhang, et al.Molecular Microbiology|December 20, 2020
Mutational analysis of the Hsp70 substrate-binding domain: Correlating molecular-level changes with in vivo functionLinan Xu, Hong Zhang, Daragh D Cuskelly, et al.Pageof 9