Preview
Sign-in for full Details 
Sign-in free and Explore the Exciting World of BiomedExperts:
- Over 1.500.000 Profiles
- More than 1.800 Organizations worldwide
- State of the Art Network Visualizations
- Manage your own Profile
- Locate Experts in your Country/Region
- Locate Experts in your 1. and 2. Level Network
- Connect to Experts Worldwide
NetworkView
Lukas Tamm
This is a preview profile on BiomedExperts - the first literature-based scientific social network. It brings the right researchers
together and allows them to collaborate online. Collexis and Dell provide the BiomedExperts network of +1.5 Million pre-calculated profiles
free of charge to researchers worldwide.
Research Profile (preview)
Anatomy
Concepts & Ideas
Chemicals & Drugs
Physiology
Genes & Molecular Sequences
Procedures
Living Beings
Occupations
Objects
Phenomena
Sign-in to see full Profile
Network (preview)
9
Tatulian, SA
8
Han, Xing
8
Kiessling, Volker
7
Kleinschmidt, Jörg
6
Bushweller, John
6
Hong, Heedeok
5
Lai, Alex
5
Crane, Jonathan
5
Li, Yinling
4
Liang, Binyong
2
Shao, Zhifeng
2
Szabo, Gabor
2
Wharton, Steve
2
Abildgaard, Frits
2
Cafiso, David
Sign-in to see all Coauthors
Publications
Sign-in to see all Publications
Sign in free and see...
Visualized networks:
See your personal network in
sophisticated graphical views
GeoTargeted Searches:
Locate experts around the world
and connect with global collaborators
Research Profiles:
See the visualized research activity
of experts around the globe
Sign-in to see more
Geonetwork of Lukas Tamm (preview)
Cities where this author has publications
Cities where co-authors of this author have publications
Sign-in to see more
All Publications
-
2009: Domanska Marta K; Kiessling Volker; Stein Alexander; Fasshauer Dirk; Tamm Lukas K
Single vesicle millisecond fusion kinetics reveals number of SNARE complexes optimal for fast SNARE-mediated membrane fusion.
The Journal of biological chemistry 2009;284(46):32158-66.
-
2009: Tamm Lukas K; Groves Jay T
Supported membranes in structural biology.
Journal of structural biology 2009;168(1):1-2.
-
2009: Murray David H; Tamm Lukas K; Kiessling Volker
Supported double membranes.
Journal of structural biology 2009;168(1):183-9.
-
2009: Salay Luiz C; Qi Wei; Keshet Ben; Tamm Lukas K; Fernandez Erik J
Membrane interactions of a self-assembling model peptide that mimics the self-association, structure and toxicity of Abeta(1-40).
Biochimica et biophysica acta 2009;1788(9):1714-21.
-
2009: Murray David H; Tamm Lukas K
Clustering of syntaxin-1A in model membranes is modulated by phosphatidylinositol 4,5-bisphosphate and cholesterol.
Biochemistry 2009;48(21):4617-25.
-
2009: Kiessling Volker; Wan Chen; Tamm Lukas K
Domain coupling in asymmetric lipid bilayers.
Biochimica et biophysica acta 2009;1788(1):64-71.
-
2009: Hong Heedeok; Joh Nathan H; Bowie James U; Tamm Lukas K
Methods for measuring the thermodynamic stability of membrane proteins.
Methods in enzymology 2009;455():213-36.
-
2008: Wan Chen; Kiessling Volker; Tamm Lukas K
Coupling of cholesterol-rich lipid phases in asymmetric bilayers.
Biochemistry 2008;47(7):2190-8.
-
2007: Tamm Lukas K; Lai Alex L; Li Yinling
Combined NMR and EPR spectroscopy to determine structures of viral fusion domains in membranes.
Biochimica et biophysica acta 2007;1768(12):3052-60.
-
2007: Liang Binyong; Tamm Lukas K
Structure of outer membrane protein G by solution NMR spectroscopy.
Proceedings of the National Academy of Sciences of the United States of America 2007;104(41):16140-5.
-
2007: Lai Alex L; Tamm Lukas K
Locking the kink in the influenza hemagglutinin fusion domain structure.
The Journal of biological chemistry 2007;282(33):23946-56.
-
2007: Li Yinling; Tamm Lukas K
Structure and plasticity of the human immunodeficiency virus gp41 fusion domain in lipid micelles and bilayers.
Biophysical journal 2007;93(3):876-85.
-
2007: Hong Heedeok; Park Sangho; Jiménez Ricardo H Flores; Rinehart Dennis; Tamm Lukas K
Role of aromatic side chains in the folding and thermodynamic stability of integral membrane proteins.
Journal of the American Chemical Society 2007;129(26):8320-7.
-
2007: Crane Jonathan M; Tamm Lukas K
Fluorescence microscopy to study domains in supported lipid bilayers.
Methods in molecular biology (Clifton, N.J.) 2007;400():481-8.
-
2006: Hong Heedeok; Szabo Gabor; Tamm Lukas K
Electrostatic couplings in OmpA ion-channel gating suggest a mechanism for pore opening.
Nature chemical biology 2006;2(11):627-35.
-
2006: Kiessling Volker; Crane Jonathan M; Tamm Lukas K
Transbilayer effects of raft-like lipid domains in asymmetric planar bilayers measured by single molecule tracking.
Biophysical journal 2006;91(9):3313-26.
-
2006: Cierpicki Tomasz; Liang Binyong; Tamm Lukas K; Bushweller John H
Increasing the accuracy of solution NMR structures of membrane proteins by application of residual dipolar couplings. High-resolution structure of outer membrane protein A.
Journal of the American Chemical Society 2006;128(21):6947-51.
-
2006: Liang Binyong; Bushweller John H; Tamm Lukas K
Site-directed parallel spin-labeling and paramagnetic relaxation enhancement in structure determination of membrane proteins by solution NMR spectroscopy.
Journal of the American Chemical Society 2006;128(13):4389-97.
-
2006: Hong Heedeok; Patel Dimki R; Tamm Lukas K; van den Berg Bert
The outer membrane protein OmpW forms an eight-stranded beta-barrel with a hydrophobic channel.
The Journal of biological chemistry 2006;281(11):7568-77.
-
2006: Lai Alex L; Park Heather; White Judith M; Tamm Lukas K
Fusion peptide of influenza hemagglutinin requires a fixed angle boomerang structure for activity.
The Journal of biological chemistry 2006;281(9):5760-70.
-
2005: Li Yinling; Han Xing; Lai Alex L; Bushweller John H; Cafiso David S; Tamm Lukas K
Membrane structures of the hemifusion-inducing fusion peptide mutant G1S and the fusion-blocking mutant G1V of influenza virus hemagglutinin suggest a mechanism for pore opening in membrane fusion.
Journal of virology 2005;79(18):12065-76.
-
2005: Crane Jonathan M; Kiessling Volker; Tamm Lukas K
Measuring lipid asymmetry in planar supported bilayers by fluorescence interference contrast microscopy.
Langmuir : the ACS journal of surfaces and colloids 2005;21(4):1377-88.
-
2004: Tamm Lukas K; Hong Heedeok; Liang Binyong
Folding and assembly of beta-barrel membrane proteins.
Biochimica et biophysica acta 2004;1666(1-2):250-63.
-
2004: Crane Jonathan M; Tamm Lukas K
Role of cholesterol in the formation and nature of lipid rafts in planar and spherical model membranes.
Biophysical journal 2004;86(5):2965-79.
-
2004: Hong Heedeok; Tamm Lukas K
Elastic coupling of integral membrane protein stability to lipid bilayer forces.
Proceedings of the National Academy of Sciences of the United States of America 2004;101(12):4065-70.
-
2003: Tamm Lukas K; Abildgaard Frits; Arora Ashish; Blad Heike; Bushweller John H
Structure, dynamics and function of the outer membrane protein A (OmpA) and influenza hemagglutinin fusion domain in detergent micelles by solution NMR.
FEBS letters 2003;555(1):139-43.
-
2003: Tamm Lukas K; Crane Jonathan; Kiessling Volker
Membrane fusion: a structural perspective on the interplay of lipids and proteins.
Current opinion in structural biology 2003;13(4):453-66.
-
2003: Tamm Lukas K
Hypothesis: spring-loaded boomerang mechanism of influenza hemagglutinin-mediated membrane fusion.
Biochimica et biophysica acta 2003;1614(1):14-23.
-
2003: Li Yinling; Han Xing; Tamm Lukas K
Thermodynamics of fusion peptide-membrane interactions.
Biochemistry 2003;42(23):7245-51.
-
2003: Kiessling Volker; Tamm Lukas K
Measuring distances in supported bilayers by fluorescence interference-contrast microscopy: polymer supports and SNARE proteins.
Biophysical journal 2003;84(1):408-18.
-
2002: Kleinschmidt Jörg H; Tamm Lukas K
Secondary and tertiary structure formation of the beta-barrel membrane protein OmpA is synchronized and depends on membrane thickness.
Journal of molecular biology 2002;324(2):319-30.
-
2002: Kleinschmidt Jörg H; Tamm Lukas K
Structural transitions in short-chain lipid assemblies studied by (31)P-NMR spectroscopy.
Biophysical journal 2002;83(2):994-1003.
-
2002: Vigeant Margot A-S; Ford Roseanne M; Wagner Michael; Tamm Lukas K
Reversible and irreversible adhesion of motile Escherichia coli cells analyzed by total internal reflection aqueous fluorescence microscopy.
Applied and environmental microbiology 2002;68(6):2794-801.
-
2002: Tamm Lukas K; Han Xing; Li Yinling; Lai Alex L
Structure and function of membrane fusion peptides.
Biopolymers 2002;66(4):249-60.
-
2001: Arora A; Tamm L K
Biophysical approaches to membrane protein structure determination.
Current opinion in structural biology 2001;11(5):540-7.
-
2001: Langosch D; Crane J M; Brosig B; Hellwig A; Tamm L K; Reed J
Peptide mimics of SNARE transmembrane segments drive membrane fusion depending on their conformational plasticity.
Journal of molecular biology 2001;311(4):709-21.
-
2001: Han X; Bushweller J H; Cafiso D S; Tamm L K
Membrane structure and fusion-triggering conformational change of the fusion domain from influenza hemagglutinin.
Nature structural biology 2001;8(8):715-20.
-
2001: Tamm L K; Arora A; Kleinschmidt J H
Structure and assembly of beta-barrel membrane proteins.
The Journal of biological chemistry 2001;276(35):32399-402.
-
2001: Wagner M L; Tamm L K
Reconstituted syntaxin1a/SNAP25 interacts with negatively charged lipids as measured by lateral diffusion in planar supported bilayers.
Biophysical journal 2001;81(1):266-75.
-
2001: Arora A; Abildgaard F; Bushweller J H; Tamm L K
Structure of outer membrane protein A transmembrane domain by NMR spectroscopy.
Nature structural biology 2001;8(4):334-8.
-
2000: Tamm L K; Han X
Viral fusion peptides: a tool set to disrupt and connect biological membranes.
Bioscience reports 2000;20(6):501-18.
-
2000: Han X; Tamm L K
pH-dependent self-association of influenza hemagglutinin fusion peptides in lipid bilayers.
Journal of molecular biology 2000;304(5):953-65.
-
2000: Han X; Tamm L K
A host-guest system to study structure-function relationships of membrane fusion peptides.
Proceedings of the National Academy of Sciences of the United States of America 2000;97(24):13097-102.
-
2000: Wagner M L; Tamm L K
Tethered polymer-supported planar lipid bilayers for reconstitution of integral membrane proteins: silane-polyethyleneglycol-lipid as a cushion and covalent linker.
Biophysical journal 2000;79(3):1400-14.
-
2000: Tatulian S A; Tamm L K
Secondary structure, orientation, oligomerization, and lipid interactions of the transmembrane domain of influenza hemagglutinin.
Biochemistry 2000;39(3):496-507.
-
2000: Arora A; Rinehart D; Szabo G; Tamm L K
Refolded outer membrane protein A of Escherichia coli forms ion channels with two conductance states in planar lipid bilayers.
The Journal of biological chemistry 2000;275(3):1594-600.
-
1999: Han X; Steinhauer D A; Wharton S A; Tamm L K
Interaction of mutant influenza virus hemagglutinin fusion peptides with lipid bilayers: probing the role of hydrophobic residue size in the central region of the fusion peptide.
Biochemistry 1999;38(45):15052-9.
-
1999: Kleinschmidt J H; Wiener M C; Tamm L K
Outer membrane protein A of E. coli folds into detergent micelles, but not in the presence of monomeric detergent.
Protein science : a publication of the Protein Society 1999;8(10):2065-71.
-
1999: Kleinschmidt J H; den Blaauwen T; Driessen A J; Tamm L K
Outer membrane protein A of Escherichia coli inserts and folds into lipid bilayers by a concerted mechanism.
Biochemistry 1999;38(16):5006-16.
-
1999: Kleinschmidt J H; Tamm L K
Time-resolved distance determination by tryptophan fluorescence quenching: probing intermediates in membrane protein folding.
Biochemistry 1999;38(16):4996-5005.
-
1998: Gray C; Tamm L K
pH-induced conformational changes of membrane-bound influenza hemagglutinin and its effect on target lipid bilayers.
Protein science : a publication of the Protein Society 1998;7(11):2359-73.
-
1997: Tamm L K; Tatulian S A
Infrared spectroscopy of proteins and peptides in lipid bilayers.
Quarterly reviews of biophysics 1997;30(4):365-429.
-
1997: Gray C; Tamm L K
Structural studies on membrane-embedded influenza hemagglutinin and its fragments.
Protein science : a publication of the Protein Society 1997;6(9):1993-2006.
-
1997: Tatulian S A; Biltonen R L; Tamm L K
Structural changes in a secretory phospholipase A2 induced by membrane binding: a clue to interfacial activation?
Journal of molecular biology 1997;268(5):809-15.
-
1996: Kleinschmidt J H; Tamm L K
Folding intermediates of a beta-barrel membrane protein. Kinetic evidence for a multi-step membrane insertion mechanism.
Biochemistry 1996;35(40):12993-3000.
-
1996: Tatulian S A; Tamm L K
Reversible pH-dependent conformational change of reconstituted influenza hemagglutinin.
Journal of molecular biology 1996;260(3):312-6.
-
1996: Gray C; Tatulian S A; Wharton S A; Tamm L K
Effect of the N-terminal glycine on the secondary structure, orientation, and interaction of the influenza hemagglutinin fusion peptide with lipid bilayers.
Biophysical journal 1996;70(5):2275-86.
-
1995: Tatulian S A; Hinterdorfer P; Baber G; Tamm L K
Influenza hemagglutinin assumes a tilted conformation during membrane fusion as determined by attenuated total reflection FTIR spectroscopy.
The EMBO journal 1995;14(22):5514-23.
-
1995: Tatulian S A; Jones L R; Reddy L G; Stokes D L; Tamm L K
Secondary structure and orientation of phospholamban reconstituted in supported bilayers from polarized attenuated total reflection FTIR spectroscopy.
Biochemistry 1995;34(13):4448-56.
-
1995: Rodionova N A; Tatulian S A; Surrey T; Jähnig F; Tamm L K
Characterization of two membrane-bound forms of OmpA.
Biochemistry 1995;34(6):1921-9.
-
1994: Hinterdorfer P; Baber G; Tamm L K
Reconstitution of membrane fusion sites. A total internal reflection fluorescence microscopy study of influenza hemagglutinin-mediated membrane fusion.
The Journal of biological chemistry 1994;269(32):20360-8.
-
1994: Gilmanshin R; Creutz C E; Tamm L K
Annexin IV reduces the rate of lateral lipid diffusion and changes the fluid phase structure of the lipid bilayer when it binds to negatively charged membranes in the presence of calcium.
Biochemistry 1994;33(27):8225-32.
-
1993: Yang J; Tamm L K; Somlyo A P; Shao Z
Promises and problems of biological atomic force microscopy.
Journal of microscopy 1993;171(Pt 3):183-98.
-
1993: Tamm L K; Tatulian S A
Orientation of functional and nonfunctional PTS permease signal sequences in lipid bilayers. A polarized attenuated total reflection infrared study.
Biochemistry 1993;32(30):7720-6.
-
1993: Yang J; Tamm L K; Tillack T W; Shao Z
New approach for atomic force microscopy of membrane proteins. The imaging of cholera toxin.
Journal of molecular biology 1993;229(2):286-90.
-
1992: Portlock S H; Lee Y; Tomich J M; Tamm L K
Insertion and folding of the amino-terminal amphiphilic signal sequences of the mannitol and glucitol permeases of Escherichia coli.
The Journal of biological chemistry 1992;267(16):11017-22.
-
1992: Kalb E; Frey S; Tamm L K
Formation of supported planar bilayers by fusion of vesicles to supported phospholipid monolayers.
Biochimica et biophysica acta 1992;1103(2):307-16.
-
1991: Frey S; Tamm L K
Orientation of melittin in phospholipid bilayers. A polarized attenuated total reflection infrared study.
Biophysical journal 1991;60(4):922-30.
-
1991: Tamm L K
Membrane insertion and lateral mobility of synthetic amphiphilic signal peptides in lipid model membranes.
Biochimica et biophysica acta 1991;1071(2):123-48.
-
1990: Frey S; Tamm L K
Membrane insertion and lateral diffusion of fluorescence-labelled cytochrome c oxidase subunit IV signal peptide in charged and uncharged phospholipid bilayers.
The Biochemical journal 1990;272(3):713-9.
-
1990: Tamm L K; Bartoldus I
Secondary structure of a mitochondrial signal peptide in lipid bilayer membranes.
FEBS letters 1990;272(1-2):29-33.
-
1990: Kalb E; Engel J; Tamm L K
Binding of proteins to specific target sites in membranes measured by total internal reflection fluorescence microscopy.
Biochemistry 1990;29(6):1607-13.
-
1989: Tamm L K; Tomich J M; Saier M H
Membrane incorporation and induction of secondary structure of synthetic peptides corresponding to the N-terminal signal sequences of the glucitol and mannitol permeases of Escherichia coli.
The Journal of biological chemistry 1989;264(5):2587-92.
-
1988: Tamm L K
Lateral diffusion and fluorescence microscope studies on a monoclonal antibody specifically bound to supported phospholipid bilayers.
Biochemistry 1988;27(5):1450-7.
Sign-in to see more