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FEBS Letters|March 11, 1985
Primary structural comparison of the preprohormones cholecystokinin and gastrinR J Deschenes, S V Narayana, P Argos, et al.Protein Engineering|September 1, 1988
A model for the tertiary structure of the 28 residue DNA-binding motif ('zinc finger') common to many eukaryotic transcriptional regulatory proteinsT J Gibson, J P Postma, R S Brown, et al.The Journal of Biological Chemistry|July 25, 1983
Nucleotide and amino acid sequence comparisons of preprosomatostatinsP Argos, W L Taylor, C D Minth, et al.Protein Engineering|November 15, 2001
Structural analysis of free and enzyme-bound amaranth alpha-amylase inhibitor: classification within the knottin fold superfamily and analysis of its functional flexibilityO Carugo, S Lu, J Luo, et al.Nucleic Acids Research|June 11, 1985
The primary structure of human hemopexin deduced from cDNA sequence: evidence for internal, repeating homologyF Altruda, V Poli, G Restagno, et al.Virology|October 30, 1983
Evidence for pH-induced release of RNA from belladonna mottle virus and the stabilizing effect of polyamines and cationsR Virudachalam, K Sitaraman, K L Heuss, et al.Protein Science : a Publication of the Protein Society|December 1, 1995
Comparison of atomic solvation parametric sets: applicability and limitations in protein folding and bindingA H Juffer, F Eisenhaber, S J Hubbard, et al.The Journal of Biological Chemistry|March 25, 1985
Identification of a trpG-related glutamine amide transfer domain in Escherichia coli GMP synthetaseH Zalkin, P Argos, S V Narayana, et al.Proteins|May 21, 1998
Are knowledge-based potentials derived from protein structure sets discriminative with respect to amino acid types?S R Sunyaev, F Eisenhaber, P Argos, et al.The Plant Cell|May 1, 1990
Effect of structural modifications on the assembly of a glycinin subunitC D Dickinson, M P Scott, E H Hussein, et al.Pageof 17