Diana E. Schlamadinger, Ph.D.

Affiliations: 
2011 Chemistry University of California, San Diego, La Jolla, CA 
Area:
Spectroscopic studies of membrane protein folding and dynamics
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"Diana Schlamadinger"
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Judy E. Kim grad student 2011 UCSD
 (Spectroscopic studies of tryptophan and membrane-associated peptides.)
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Publications

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López-Peña I, Leigh BS, Schlamadinger DE, et al. (2015) Insights into Protein Structure and Dynamics by Ultraviolet and Visible Resonance Raman Spectroscopy. Biochemistry
Nath A, Schlamadinger DE, Rhoades E, et al. (2015) Structure-Based Small Molecule Modulation of a Pre-Amyloid State: Pharmacological Enhancement of IAPP Membrane-Binding and Toxicity. Biochemistry. 54: 3555-64
Kumar S, Schlamadinger DE, Brown MA, et al. (2015) Islet amyloid-induced cell death and bilayer integrity loss share a molecular origin targetable with oligopyridylamide-based α-helical mimetics. Chemistry & Biology. 22: 369-78
Schlamadinger DE, Miranker AD. (2014) Fiber-dependent and -independent toxicity of islet amyloid polypeptide. Biophysical Journal. 107: 2559-66
Armijo G, Okerblom J, Cauvi DM, et al. (2014) Interaction of heat shock protein 70 with membranes depends on the lipid environment. Cell Stress & Chaperones. 19: 877-86
Leigh BS, Schlamadinger DE, Kim JE. (2014) Structures and Dynamics of Proteins Probed by UV Resonance Raman Spectroscopy Biophysical Methods For Biotherapeutics: Discovery and Development Applications. 243-268
Last NB, Schlamadinger DE, Miranker AD. (2013) A common landscape for membrane-active peptides. Protein Science : a Publication of the Protein Society. 22: 870-82
Schlamadinger DE, Leigh BS, Kim JE. (2012) UV resonance Raman study of TrpZip2 and related peptides: π-π interactions of tryptophan. Journal of Raman Spectroscopy : Jrs. 43: 1459-1464
Schlamadinger DE, Wang Y, McCammon JA, et al. (2012) Spectroscopic and computational study of melittin, cecropin A, and the hybrid peptide CM15. The Journal of Physical Chemistry. B. 116: 10600-8
Wang Y, Schlamadinger DE, Kim JE, et al. (2012) Comparative molecular dynamics simulations of the antimicrobial peptide CM15 in model lipid bilayers. Biochimica Et Biophysica Acta. 1818: 1402-9
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