
Publications of Thomas Meier
All genres
Journal Article (35)
1.
Journal Article
116 (10), pp. 4250 - 4255 (2019)
Dimers of mitochondrial ATP synthase induce membrane curvature and self-assemble into rows. Proceedings of the National Academy of Sciences of the United States of America 2.
Journal Article
592 (3), pp. 343 - 355 (2018)
Reversible Optical Control of F1F0-ATP Synthase Using Photoswitchable Inhibitors. FEBS Letters 3.
Journal Article
360 (6389), pp. 1 - 10 (2018)
Structure, mechanism, and regulation of the chloroplast ATP synthase. Science 4.
Journal Article
12, pp. 106 - 119 (2017)
Structural Simplification of Bedaquiline: the Discovery of 3-(4-(N,N-Dimethylaminomethyl)phenyl)quinoline-Derived Antitubercular Lead Compounds. ChemMedChem 5.
Journal Article
18 (6), pp. 1 - 10 (2017)
Molecular architecture of the N‐type ATPase rotor ring from Burkholderia pseudomallei. EMBO Reports 6.
Journal Article
112 (10), pp. E1057 - E1066 (2015)
On the principle of ion selectivity in Na+/H+-coupled membrane proteins: Experimental and theoretical studies of an ATP synthase rotor. Proceedings of the National Academy of Sciences of the United States of America 7.
Journal Article
3 (75), pp. 1 - 16 (2015)
Alkaliphilic bacteria with impact on industrial applications, concepts of early life forms, and bioenergetics of ATP synthesis. Frontiers in Bioengineering and Biotechnology 8.
Journal Article
1 (4), pp. 1 - 8 (2015)
Structure of the mycobacterial ATP synthase Fo rotor ring in complex with the anti-TB drug bedaquiline. Science Advances 9.
Journal Article
92 (5), pp. 973 - 984 (2014)
The c-ring ion binding site of the ATP synthase from Bacillus pseudofirmus OF4 is adapted to alkaliphilic lifestyle. Molecular Microbiology 10.
Journal Article
5, 5286 (2014)
High-resolution structure and mechanism of an F/V-hybrid rotor ring in a Na+-coupled ATP synthase. Nature Communications 11.
Journal Article
195 (21), pp. 4888 - 4899 (2013)
The function of the Na+-driven flagellum of Vibrio cholerae is determined by osmolality and pH. Journal of Bacteriology 12.
Journal Article
11 (6), e1001596, pp. 1 - 12 (2013)
A New Type of Na+-Driven ATP Synthase Membrane Rotor with a Two-Carboxylate Ion-Coupling Motif. PLoS Biology 13.
Journal Article
110 (19), pp. 7874 - 7879 (2013)
The c-ring stoichiometry of ATP synthase is adapted to cell physiological requirements of alkaliphilic Bacillus pseudofirmus OF4. Proceedings of the National Academy of Sciences of the United States of America 14.
Journal Article
109 (30), pp. E2050 - E2056 (2012)
Structural study on the architecture of the bacterial ATP synthase F0 motor. Proceedings of the National Academy of Sciences of the United States of America 15.
Journal Article
109 (25), pp. E1599 - E1608 (2012)
Engineering rotor ring stoichiometries in the ATP synthase. Proceedings of the National Academy of Sciences of the United States of America 16.
Journal Article
19, pp. 485 - 491 (2012)
Structure of the c10 ring of the yeast mitochondrial ATP synthase in the open conformation. Nature Structural and Molecular Biology 17.
Journal Article
286 (46), pp. 39882 - 39892 (2011)
A1Ao-ATP Synthase of Methanobrevibacter ruminantium Couples Sodium Ions for ATP Synthesis under Physiological Conditions. The Journal of Biological Chemistry 18.
Journal Article
413, pp. 593 - 603 (2011)
Cell-Free Expression and Assembly of ATP Synthase. Journal of Molecular Biology 19.
Journal Article
193 (16), pp. 4290 - 4291 (2011)
Draft Genome Sequence of the Thermoalkaliphilic Caldalkalibacillus thermarum Strain TA2.A1. Journal of Bacteriology 20.
Journal Article
50 (24), pp. 5497 - 5506 (2011)
Mutations in a Helix-1 Motif of the ATP Synthase c-Subunit of Bacillus pseudofirmus OF4 Cause Functional Deficits and Changes in the c-Ring Stability and Mobility on Sodium Dodecyl Sulfate–Polyacrylamide Gel Electrophoresis. Biochemistry 21.
Journal Article
6, pp. 891 - 899 (2010)
Microscopic rotary mechanism of ion translocation in the Fo complex of ATP synthases. Nature Chemical Biology 22.
Journal Article
12 (41), pp. 13375 - 13382 (2010)
ATP synthases: cellular nanomotors characterized by LILBID mass spectrometry. Physical Chemistry Chemical Physics 23.
Journal Article
8 (8), e1000443 (2010)
A New Type of Proton Coordination in an F1Fo-ATP Synthase Rotor Ring. PLoS Biology 24.
Journal Article
1797, pp. 763 - 772 (2010)
Structural and energetic basis for H+ versus Na+ binding selectivity in ATP synthase Fo rotors. Biochimica et Biophysica Acta: BBA 25.
Journal Article
395, pp. 20 - 27 (2010)
On the Structure of the Proton-Binding Site in the Fo Rotor of Chloroplast ATP Synthases. Journal of Molecular Biology 26.
Journal Article
16 (10), pp. 1068 - 1073 (2009)
High-resolution structure of the rotor ring of a proton-dependent ATP synthase. Nature Structural and Molecular Biology 27.
Journal Article
391 (2), pp. 498 - 507 (2009)
Complete Ion-Coordination Structure in the Rotor Ring of Na+-Dependent F-ATP Synthases. Journal of Molecular Biology 28.
Journal Article
388 (3), pp. 611 - 618 (2009)
The c13 Ring from a Thermoalkaliphilic ATP Synthase Reveals an Extended Diameter Due to a Special Structural Region. Journal of Molecular Biology 29.
Journal Article
277 (1-3), pp. 309 - 313 (2008)
LILBID-mass spectrometry applied to the mass analysis of RNA polymerase II and an F1Fo-ATP synthase. International Journal of Mass Spectrometry 30.
Journal Article
275 (19), pp. 4850 - 4862 (2008)
Probing the rotor subunit interface of the ATP synthase from Ilyobacter tartaricus. The FEBS Journal 31.
Journal Article
275 (9), pp. 1999 - 2007 (2008)
An intermediate step in the evolution of ATPases - a hybrid F0–V0 rotor in a bacterial Na+ F1F0 ATP synthase. The FEBS Journal 32.
Journal Article
65 (5), pp. 1181 - 1192 (2007)
A tridecameric c ring of the adenosine triphosphate (ATP) synthase from the thermoalkaliphilic Bacillus sp. strain TA2.A1 facilitates ATP synthesis at low electrochemical proton potential. Molecular Microbiology 33.
Journal Article
189 (16), pp. 5895 - 5902 (2007)
The oligomeric state of c rings from cyanobacterial F-ATP synthases varies from 13 to 15. Journal of Bacteriology 34.
Journal Article
6 (11), pp. 1040 - 1044 (2005)
The c15 ring of the Spirulina platensis F-ATP synthase: F1/F0 symmetry mismatch is not obligatory. EMBO Reports 35.
Journal Article
321 (2), pp. 307 - 316 (2002)
Molecular architecture of the undecameric rotor of a bacterial Na+-ATP synthase. Journal of Molecular Biology Book Chapter (4)
36.
Book Chapter
2881, pp. 65 - 86 (Eds. Lavelle, C.; Le Gall , A.) (2025)
Purification and Reconstitution of Ilyobacter tartaricus ATP Synthase. In: Springer Protocols: Methods in Molecular Biology: Molecular Motors, Vol. 37.
Book Chapter
1805, pp. 51 - 71 (Ed. Lavelle, C.). Humana Press, New York (2018)
Purification and Reconstitution of Ilyobacter tartaricus ATP Synthase. In: Methods in Molecular Biology (MIMB), Vol. 38.
Book Chapter
ATP Synthase Structure. In: Encyclopedia of Biophysics, pp. 129 - 134 (Ed. Roberts, G.). Springer, Berlin, Heidelberg/Germany [et al.] (2013)
39.
Book Chapter
ATP-Synthase - A Paradigmatic Molecular Machine. In: Molecular Machines in Biology, Chapter 11, pp. 208 - 238 (Ed. Frank, J.). Cambridge University Press, New York (2011)
Conference Paper (1)
40.
Conference Paper
8228. Proceedings of SPIE; 8228 : Single Molecule Spectroscopy and
Superresolution Imaging V, 13 February 2012. (2012)
Step size of the rotary proton motor in single FoF1-ATP synthase from a thermoalkaliphilic bacterium by DCO-ALEX FRET. In: Proceedings of the SPIE, Vol.