Mingfeng Yang, Ph.D.

2006 Clark University, Worcester, MA, United States 
General Biophysics
"Mingfeng Yang"
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Shuanghong Huo grad student 2006 Clark University
 (Mapping the early steps of amyloid formation by computational approaches.)
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Roychaudhuri R, Yang M, Deshpande A, et al. (2013) C-terminal turn stability determines assembly differences between Aβ40 and Aβ42. Journal of Molecular Biology. 425: 292-308
Roychaudhuri R, Yang M, Condron MM, et al. (2012) Structural dynamics of the amyloid β-protein monomer folding nucleus. Biochemistry. 51: 3957-9
Roychaudhuri R, Yang M, Hoshi MM, et al. (2009) Amyloid beta-protein assembly and Alzheimer disease. The Journal of Biological Chemistry. 284: 4749-53
Lim CC, Yang H, Yang M, et al. (2008) A novel mutant cardiac troponin C disrupts molecular motions critical for calcium binding affinity and cardiomyocyte contractility. Biophysical Journal. 94: 3577-89
Yang M, Yordanov B, Levy Y, et al. (2006) The sequence-dependent unfolding pathway plays a critical role in the amyloidogenicity of transthyretin. Biochemistry. 45: 11992-2002
Yang M, Lei M, Yordanov B, et al. (2006) Peptide plane can flip in two opposite directions: implication in amyloid formation of transthyretin. The Journal of Physical Chemistry. B. 110: 5829-33
Yang M, Lei M, Bruschweiler R, et al. (2005) Initial conformational changes of human transthyretin under partially denaturing conditions. Biophysical Journal. 89: 433-43
Lei M, Yang M, Huo S. (2004) Intrinsic versus mutation dependent instability/flexibility: a comparative analysis of the structure and dynamics of wild-type transthyretin and its pathogenic variants. Journal of Structural Biology. 148: 153-68
Yang M, Lei M, Huo S. (2003) Why is Leu55-->Pro55 transthyretin variant the most amyloidogenic: insights from molecular dynamics simulations of transthyretin monomers. Protein Science : a Publication of the Protein Society. 12: 1222-31
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