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High-throughput mutagenesis using a two-fragment PCR approach
Heydenreich, F. M., Miljuš, T., Jaussi, R., Benoit, R., Milić, D., & Veprintsev, D. B. (2017). High-throughput mutagenesis using a two-fragment PCR approach. Scientific Reports, 7, 6787 (11 pp.). https://doi.org/10.1038/s41598-017-07010-4
Short Linear Sequence Motif LxxPTPh Targets Diverse Proteins to Growing Microtubule Ends
Kumar, A., Manatschal, C., Rai, A., Grigoriev, I., Degen, M. S., Jaussi, R., … Steinmetz, M. O. (2017). Short Linear Sequence Motif LxxPTPh Targets Diverse Proteins to Growing Microtubule Ends. Structure, 25(6), 924-932. https://doi.org/10.1016/j.str.2017.04.010
Structural basis for misregulation of kinesin KIF21A autoinhibition by CFEOM1 disease mutations
Bianchi, S., van Riel, W. E., Kraatz, S. H. W., Olieric, N., Frey, D., Katrukha, E. A., … Kammerer, R. A. (2016). Structural basis for misregulation of kinesin KIF21A autoinhibition by CFEOM1 disease mutations. Scientific Reports, 6, 30668 (16 pp.). https://doi.org/10.1038/srep30668
Biochemie und Molekularbiologie. Eine Einführung in 40 Lerneinheiten
Christen, P., Jaussi, R., & Benoit, R. (2016). Biochemie und Molekularbiologie. Eine Einführung in 40 Lerneinheiten. https://doi.org/10.1007/978-3-662-46430-4
Biomoleküle und ihre Wechselwirkungen
Christen, P., Jaussi, R., & Benoit, R. (2016). Biomoleküle und ihre Wechselwirkungen. In P. Christen, R. Jaussi, & R. Benoit (Eds.), Biochemie und Molekularbiologie. Eine Einführung in 40 Lerneinheiten. https://doi.org/10.1007/978-3-662-46430-4_1
SAS-6 engineering reveals interdependence between cartwheel and microtubules in determining centriole architecture
Hilbert, M., Noga, A., Frey, D., Hamel, V., Guichard, P., Kraatz, S. H. W., … Steinmetz, M. O. (2016). SAS-6 engineering reveals interdependence between cartwheel and microtubules in determining centriole architecture. Nature Cell Biology, 18(4), 393-403. https://doi.org/10.1038/ncb3329
Centriolar CPAP/SAS-4 imparts slow processive microtubule growth
Sharma, A., Aher, A., Dynes, N. J., Frey, D., Katrukha, E. A., Jaussi, R., … Steinmetz, M. O. (2016). Centriolar CPAP/SAS-4 imparts slow processive microtubule growth. Developmental Cell, 37(4), 362-376. https://doi.org/10.1016/j.devcel.2016.04.024
Structure of the BoNT/A1 - Receptor complex
Benoit, R. M., Frey, D., Wieser, M. M., Thieltges, K. M., Jaussi, R., Capitani, G., & Kammerer, R. A. (2015). Structure of the BoNT/A1 - Receptor complex. Toxicon, 107, 25-31. https://doi.org/10.1016/j.toxicon.2015.08.002
Structural basis for recognition of synaptic vesicle protein 2C by botulinum neurotoxin A
Benoit, R. M., Frey, D., Hilbert, M., Kevenaar, J. T., Wieser, M. M., Stirnimann, C. U., … Kammerer, R. A. (2014). Structural basis for recognition of synaptic vesicle protein 2C by botulinum neurotoxin A. Nature, 505(7481), 108-111. https://doi.org/10.1038/nature12732
Coronin 1 Regulates Cognition and Behavior through Modulation of cAMP/Protein Kinase A Signaling
Jayachandran, R., Liu, X., BoseDasgupta, S., Müller, P., Zhang, C. L., Moshous, D., … Pieters, J. (2014). Coronin 1 Regulates Cognition and Behavior through Modulation of cAMP/Protein Kinase A Signaling. PLoS Biology, 12(3), e1001820. https://doi.org/10.1371/journal.pbio.1001820
Functional map of arrestin-1 at single amino acid resolution
Ostermaier, M. K., Peterhans, C., Jaussi, R., Deupi, X., & Standfuss, J. (2014). Functional map of arrestin-1 at single amino acid resolution. Proceedings of the National Academy of Sciences of the United States of America PNAS, 111(5), 1825-1830. https://doi.org/10.1073/pnas.1319402111
Structural Basis for the Oligomerization-State Switch from a Dimer to a Trimer of an Engineered Cortexillin-1 Coiled-Coil Variant
Bjelić, S., Wieser, M., Frey, D., Stirnimann, C. U., Chance, M. R., Jaussi, R., … Kammerer, R. A. (2013). Structural Basis for the Oligomerization-State Switch from a Dimer to a Trimer of an Engineered Cortexillin-1 Coiled-Coil Variant. PLoS One, 8(5), e63370. https://doi.org/10.1371/journal.pone.0063370
Structural basis of tubulin tyrosination by tubulin tyrosine ligase
Prota, A. E., Magiera, M. M., Kuijpers, M., Bargsten, K., Frey, D., Wieser, M., … Steinmetz, M. O. (2013). Structural basis of tubulin tyrosination by tubulin tyrosine ligase. Journal of Cell Biology, 200(3), 259-270. https://doi.org/10.1083/jcb.201211017
AAscan, PCRdesign and MutantChecker: a suite of programs for primer design and sequence analysis for high-throughput scanning mutagenesis.
Sun, D., Ostermaier, M. K., Heydenreich, F. M., Mayer, D., Jaussi, R., Standfuss, J., & Veprintsev, D. B. (2013). AAscan, PCRdesign and MutantChecker: a suite of programs for primer design and sequence analysis for high-throughput scanning mutagenesis. PLoS One, 8(10), e78878 (9 pp.). https://doi.org/10.1371/journal.pone.0078878
Interaction of mammalian end binding proteins with CAP-Gly domains of CLIP-170 and p150glued
Bjelić, S., De Groot, C. O., Schärer, M. A., Jaussi, R., Bargsten, K., Salzmann, M., … Steinmetz, M. O. (2012). Interaction of mammalian end binding proteins with CAP-Gly domains of CLIP-170 and p150glued. Journal of Structural Biology, 177(1), 160-167. https://doi.org/10.1016/j.jsb.2011.11.010
Molecular basis of coiled-coil oligomerization-state specificity
Ciani, B., Bjelić, S., Honnappa, S., Jawhari, H., Jaussi, R., Payapilly, A., … Kammerer, R. A. (2010). Molecular basis of coiled-coil oligomerization-state specificity. Proceedings of the National Academy of Sciences of the United States of America PNAS, 107(46), 19850-19855. https://doi.org/10.1073/pnas.1008502107
Automated seamless DNA co-transformation cloning with direct expression vectors applying positive or negative insert selection
Olieric, N., Kuchen, M., Wagen, S., Sauter, M., Crone, S., Edmondson, S., … Jaussi, R. (2010). Automated seamless DNA co-transformation cloning with direct expression vectors applying positive or negative insert selection. BMC Biotechnology, 10, 56. https://doi.org/10.1186/1472-6750-10-56
Orf virus VEGF-E NZ2 promotes paracellular NRP-1/VEGFR-2 coreceptor assembly via the peptide RPPR
Cébe-Suarez, S., Grünewald, F. S., Jaussi, R., Li, X., Claesson-Welsh, L., Spillmann, D., … Ballmer-Hofer, K. (2008). Orf virus VEGF-E NZ2 promotes paracellular NRP-1/VEGFR-2 coreceptor assembly via the peptide RPPR. FASEB Journal, 22(8), 3078-3086. https://doi.org/10.1096/fj.08-107219
Production of in vitro amplified DNA pseudolibraries and high-throughput cDNA target amplification
Frey, D., Kambach, C., Steinmetz, M. O., & Jaussi, R. (2007). Production of in vitro amplified DNA pseudolibraries and high-throughput cDNA target amplification. BMC Biotechnology, 7, 31. https://doi.org/10.1186/1472-6750-7-31
Key Interaction Modes of Dynamic +TIP Networks
Honnappa, S., Okhrimenko, O., Jaussi, R., Jawhari, H., Jelesarov, I., Winkler, F. K., & Steinmetz, M. O. (2006). Key Interaction Modes of Dynamic +TIP Networks. Molecular Cell, 23(5), 663-671. https://doi.org/10.1016/j.molcel.2006.07.013