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Biochemical and Biophysical Research Communications|August 15, 1989
The secondary structure of human amyloid deposits as determined by circular dichroism spectroscopyM Cascio, P A Glazer, B A WallaceBiochimica Et Biophysica Acta|December 22, 1998
Antiamoebin can function as a carrier or as a pore-forming peptaibolH Duclohier, C F Snook, B A WallaceBiopolymers|September 20, 2017
Thermal melt circular dichroism spectroscopic studies for identifying stabilising amphipathic molecules for the voltage-gated sodium channel NavMsSam M Ireland, Altin Sula, B A WallaceChirality|April 14, 2006
Protein Circular Dichroism Data Bank (PCDDB): data bank and website designLee Whitmore, Robert W Janes, B A WallaceProtein Science : a Publication of the Protein Society|January 22, 2005
Spectral magnitude effects on the analyses of secondary structure from circular dichroism spectroscopic dataAndrew J Miles, Lee Whitmore, B A WallaceJournal of Molecular Biology|December 20, 1993
Preliminary crystallization and X-ray analysis of orthorhombic human endothelinD H Peapus, R W Janes, B A WallaceBiochimica Et Biophysica Acta|January 10, 2012
Transmembrane and extramembrane contributions to membrane protein thermal stability: studies with the NaChBac sodium channelAndrew M Powl, Andrew J Miles, B A WallaceCommunications Biology|August 8, 2023
DichroIDP: a method for analyses of intrinsically disordered proteins using circular dichroism spectroscopyAndrew J Miles, Elliot D Drew, B A WallaceEuropean Biophysics Journal : EBJ|April 24, 2016
Structure of the C-terminal domain of the prokaryotic sodium channel orthologue NsvBaW C Miller, A J Miles, B A WallaceBioinformatics (Oxford, England)|April 21, 2011
A reference dataset for the analyses of membrane protein secondary structures and transmembrane residues using circular dichroism spectroscopyAli Abdul-Gader, Andrew John Miles, B A WallacePageof 21