Thomas Spirig
Thomas Spirig
ETH Zurich
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Cited by
Cited by
Sortase enzymes in Gram‐positive bacteria
T Spirig, EM Weiner, RT Clubb
Molecular microbiology 82 (5), 1044-1059, 2011
The lock-in CCD-two-dimensional synchronous detection of light
T Spirig, P Seitz, O Vietze, F Heitger
IEEE Journal of quantum electronics 31 (9), 1705-1708, 1995
Planktonic Replication Is Essential for Biofilm Formation by Legionella pneumophila in a Complex Medium under Static and Dynamic Flow Conditions
J Mampel, T Spirig, SS Weber, JAJ Haagensen, S Molin, H Hilbi
Applied and environmental microbiology 72 (4), 2885-2895, 2006
The Legionella pneumophila response regulator LqsR promotes host cell interactions as an element of the virulence regulatory network controlled by RpoS and LetA
A Tiaden, T Spirig, SS Weber, H Brüggemann, R Bosshard, C Buchrieser, ...
Cellular microbiology 9 (12), 2903-2920, 2007
The Legionella autoinducer synthase LqsA produces an α-hydroxyketone signaling molecule
T Spirig, A Tiaden, P Kiefer, C Buchrieser, JA Vorholt, H Hilbi
Journal of Biological Chemistry 283 (26), 18113-18123, 2008
Pilus chaperones represent a new type of protein-folding catalyst
M Vetsch, C Puorger, T Spirig, U Grauschopf, EU Weber-Ban, ...
Nature 431 (7006), 329-333, 2004
Bacterial gene regulation by α-hydroxyketone signaling
A Tiaden, T Spirig, H Hilbi
Trends in microbiology 18 (7), 288-297, 2010
The autoinducer synthase LqsA and putative sensor kinase LqsS regulate phagocyte interactions, extracellular filaments and a genomic island of Legionella pneumophila
A Tiaden, T Spirig, T Sahr, MA Wälti, K Boucke, C Buchrieser, H Hilbi
Environmental microbiology 12 (5), 1243-1259, 2010
Synergistic Contribution of the Legionella pneumophila lqs Genes to Pathogen-Host Interactions
A Tiaden, T Spirig, P Carranza, H Brüggemann, K Riedel, L Eberl, ...
Journal of bacteriology 190 (22), 7532-7547, 2008
Transient weak protein–protein complexes transfer heme across the cell wall of Staphylococcus aureus
VA Villareal, T Spirig, SA Robson, M Liu, B Lei, RT Clubb
Journal of the American Chemical Society 133 (36), 14176-14179, 2011
Apparatus and method for detection and demodulation of an intensity-modulated radiation field
T Spirig, P Seitz
US Patent 5,856,667, 1999
Structural basis for hemoglobin capture by Staphylococcus aureus cell-surface protein, IsdH
KK Kumar, DA Jacques, G Pishchany, T Caradoc-Davies, T Spirig, ...
Journal of Biological Chemistry 286 (44), 38439-38447, 2011
The multitap lock-in CCD with offset subtraction
T Spirig, M Marley, P Seitz
IEEE Transactions on electron devices 44 (10), 1643-1647, 1997
Staphylococcus aureus uses a novel multidomain receptor to break apart human hemoglobin and steal its heme
T Spirig, GR Malmirchegini, J Zhang, SA Robson, M Sjodt, M Liu, ...
Journal of Biological Chemistry 288 (2), 1065-1078, 2013
Structure of the Hemoglobin-IsdH Complex Reveals the Molecular Basis of Iron Capture by Staphylococcus aureus*♦
CF Dickson, KK Kumar, DA Jacques, GR Malmirchegini, T Spirig, ...
Journal of Biological Chemistry 289 (10), 6728-6738, 2014
Expression of Legionella pneumophila paralogous lipid A biosynthesis genes under different growth conditions
U Albers, A Tiaden, T Spirig, D Al Alam, SM Goyert, SC Gangloff, H Hilbi
Microbiology 153 (11), 3817-3829, 2007
The PRE-derived NMR model of the 38.8-kDa tri-domain IsdH protein from Staphylococcus aureus suggests that it adaptively recognizes human hemoglobin
M Sjodt, R Macdonald, T Spirig, AH Chan, CF Dickson, M Fabian, ...
Journal of molecular biology 428 (6), 1107-1129, 2016
Direct evidence for self-propagation of different amyloid-β fibril conformations
T Spirig, O Ovchinnikova, T Vagt, R Glockshuber
Neurodegenerative Diseases 14 (3), 151-159, 2014
Smart CCD/CMOS based image sensors with programmable, real-time, temporal and spatial convolution capabilities for applications in machine vision and optical metrology
TL Spirig
ETH Zurich, 1997
Smart sensing using custom photo-application-specific integrated circuits and charge-coupled device technology
P Seitz, T Spirig, O Vietze, K Engelhardt
Optical Engineering 34 (8), 2299-2308, 1995
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