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Journal of Molecular Biology|October 7, 2000
Charge pair interactions in a model transmembrane helix in the ER membraneC N Chin, G von HeijneProtein Science : a Publication of the Protein Society|December 1, 1996
Saccharomyces cerevisiae mitochondria lack a bacterial-type sec machineryB S Glick, G Von HeijneFEBS Letters|March 23, 1987
The leader peptides from bacteriorhodopsin and halorhodopsin are potential membrane-spanning amphipathic helicesG von Heijne, J P SegrestTrends in Biochemical Sciences|September 6, 2000
How proteins adapt to a membrane-water interfaceJ A Killian, G von HeijneProtein Engineering|March 5, 1999
Machine learning approaches for the prediction of signal peptides and other protein sorting signalsH Nielsen, S Brunak, G von HeijneEuropean Journal of Biochemistry|December 1, 1978
Models for mRNA translation: theory versus experimentG von Heijne, L Nilsson, C BlombergThe Journal of Biological Chemistry|December 15, 1995
SecA-independent translocation of the periplasmic N-terminal tail of an Escherichia coli inner membrane protein. Position-specific effects on translocation of positively charged residues and construction of a protein with a C-terminal translocation signalP Whitley, G Gafvelin, G von HeijneMolecular & General Genetics : MGG|May 1, 1993
Positively charged amino acids placed next to a signal sequence block protein translocation more efficiently in Escherichia coli than in mammalian microsomesM Johansson, I Nilsson, G von HeijneJournal of Molecular Biology|August 5, 2000
Formation of cytoplasmic turns between two closely spaced transmembrane helices during membrane protein integration into the ER membraneA Sääf, M Hermansson, G von HeijneNature Structural Biology|December 1, 1994
De novo design of integral membrane proteinsP Whitley, I Nilsson, G von HeijnePageof 15