Publications of S. Jakobs
All genres
Journal Article (136)
121.
Journal Article
168 (1), pp. 103 - 115 (2005)
Mdm31 and Mdm32 are inner membrane proteins required for maintenance of mitochondrial shape and stability of mitochondrial DNA nucleoids in yeast. Journal of Cell Biology 122.
Journal Article
11 (12), pp. 1 - 4 (2005)
Insight into the structure and mechanism of the reversible photoswitch of a fl uorescent protein. MPIBPC News 123.
Journal Article
15 (12), pp. 5616 - 5622 (2004)
Short tetracysteine tags to beta-tubulin demonstrate the significance of small labels for live cell imaging. Molecular Biology of the Cell 124.
Journal Article
87 (6), pp. 4146 - 4152 (2004)
Cooperative 4Pi excitation and detection yields sevenfold sharper optical sections in live-cell microscopy. Biophysical Journal 125.
Journal Article
14 (5), pp. 599 - 609 (2004)
Concepts for nanoscale resolution in fluorescence microscopy. Current Opinion in Neurobiology 126.
Journal Article
12, pp. 1 - 4 (2004)
Mitochondrien - Kraftwerke der Zelle. MPIBPC News 127.
Journal Article
554 (1-2), pp. 194 - 200 (2003)
Photoconversion of matrix targeted GFP enables analysis of continuity and intermixing of the mitochondrial lumens. FEBS Letters 128.
Journal Article
116 (10), pp. 2005 - 2014 (2003)
Spatial and temporal dynamics of budding yeast mitochondria lacking the division component Fis1p. Journal of Cell Science 129.
Journal Article
160 (4), pp. 553 - 564 (2003)
The inner membrane protein Mdm33 controls mitochondrial morphology in yeast. Journal of Cell Biology 130.
Journal Article
77 (7), pp. 859 - 860 (2003)
Imaging and writing at the nanoscale with focused visible light through saturable optical transitions. Applied Physics A-Materials Science & Processing 131.
Journal Article
99 (6), pp. 3370 - 3375 (2002)
Fast 100 nm resolution three-dimensional microscope reveals structural plasticity of mitochondria in live yeast. Proceedings of the National Academy of Sciences of the United States of America 132.
Journal Article
90 (2-3), pp. 207 - 213 (2002)
Dual-color 4Pi-confocal microscopy with 3D-resolution in the 100 nm range. Ultramicroscopy 133.
Journal Article
87, pp. 155 - 164 (2001)
4 Pi-confocal microscopy of live cells. Ultramicroscopy 134.
Journal Article
77, pp. 597 - 599 (2000)
Ultrafast dynamics microscopy. Applied Physics Letters 135.
Journal Article
479, pp. 131 - 135 (2000)
EGFP and DsRed expressing cultures of Escherichia coli imaged by confocal, two-photon and fluorescence lifetime microscopy. FEBS Letters 136.
Journal Article
97, pp. 8206 - 8210 (2000)
Fluorescence microscopy with diffraction resolution limit broken by stimulated emission. Proceedings of the National Academy of Sciences USA Book Chapter (6)
137.
Book Chapter
STED super-resolution microscopy of mitochondrial translocases. In: Mitochondrial Translocases Part B, pp. 299 - 327 (Ed. Wiedemann, N.). Elsevier, Amsterdam (2024)
138.
Book Chapter
Reversibly switchable fluorescent Proteins for RESOLFT nanoscopy. In: Nanoscale Photonic Imaging, pp. 241 - 261 (Eds. Salditt, T.; Egner, A.; Luke, D. R.). Springer, Cham (2020)
139.
Book Chapter
124, pp. 1 - 19 (Ed. Müller, S.). Springer, Berlin (2011)
Light microscopic analysis of mitochondrial heterogeneity in cell populations and within single cells. In: High resolution microbial single cell analytics. (Advances in biochemical engineering-biotechnology; 124), Vol. 140.
Book Chapter
Sample preparation for STED microscopy. In: Live cell imaging: methods and protocols, pp. 185 - 199 (Ed. Papkovsky, D. B.). Humana Press, New York (2010)