Publications of Seán M. Murray

Journal Article (25)

Journal Article
Connolley, L.; Schnabel, L.; Thanbichler, M.; Murray, S. M.: Partition complex structure can arise from sliding and bridging of ParB dimers. Nature Communications 14 (1), 4567 (2023)
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Köhler, R.; Sadhir, I.; Murray, S. M.: ★Track: Inferred counting and tracking of replicating DNA loci. Biophysical Journal 122 (9), pp. 1577 - 1585 (2023)
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Sadhir, I.; Murray, S. M.: Mid-cell migration of the chromosomal terminus is coupled to origin segregation in Escherichia coli. Nature Communications 14 (1), 7489 (2023)
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Subramanian, S.; Murray, S. M.: Subdiffusive movement of chromosomal loci in bacteria explained by DNA bridging. Physical Review Research 5 (2), p. 023034 (2023)
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Köhler, R.; Kaganovitch, E.; Murray, S. M.: High-throughput imaging and quantitative analysis uncovers the nature of plasmid positioning by ParABS. eLife 11, e78743 (2022)
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Connolley, L.; Szczepaniak, J.; Kleanthous, C.; Murray, S. M.: The quantitative basis for the redistribution of immobile bacterial lipoproteins to division septa. PLOS Computational Biology 17 (12), p. e1009756 (2021)
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Osorio-Valeriano, M.; Altegoer, F.; Das, C. K.; Steinchen, W.; Panis, G.; Connolley, L.; Giacomelli, G.; Feddersen, H.; Corrales-Guerrero, L.; Giammarinaro, P. I. et al.; Hanssmann, J.; Bramkamp, M.; Viollier, P. H.; Murray, S.; Schafer, L. V.; Bange, G.; Thanbichler, M.: The CTPase activity of ParB determines the size and dynamics of prokaryotic DNA partition complexes. Molecular Cell 81 (19), pp. 3992 - 4007 e10 (2021)
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Subramanian, S.; Murray, S. M.: Pattern selection in reaction diffusion systems. Physical Review E 103 (1), 012215 (2021)
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Szczepaniak, J.; Holmes, P.; Rajasekar, K.; Kaminska, R.; Samsudin, F.; Inns, P. G.; Rassam, P.; Khalid, S.; Murray, S. M.; Redfield, C. et al.; Kleanthous, C.: The lipoprotein Pal stabilises the bacterial outer membrane during constriction by a mobilisation-and-capture mechanism. NATURE COMMUNICATIONS 11 (1), 1305 (2020)
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Huertgen, D.; Mascarenhas, J.; Heymann, M.; Murray, S. M.; Schwille, P.; Sourjik, V.: Reconstitution and Coupling of DNA Replication and Segregation in a Biomimetic System. SI 20 (20), pp. 2633 - 2642 (2019)
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Hofmann, A.; Makela, J.; Sherratt, D. J.; Heermann, D.; Murray, S. M.: Self-organised segregation of bacterial chromosomal origins. ELIFE 8, e46564 (2019)
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Huertgen, D.; Haertel, T.; Murray, S. M.; Sourjik, V.; Schwille, P.: Functional Modules of Minimal Cell Division for Synthetic Biology. SI 3 (6), 1800315 (2019)
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Murray, S. M.; Howard, M.: Center Finding in E. coli and the Role of Mathematical Modeling: Past, Present and Future. JOURNAL OF MOLECULAR BIOLOGY 431 (5), pp. 928 - 938 (2019)
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Hürtgen, D.; Murray, S. M.; Mascarenhas, J.; Sourjik, V.: DNA Segregation in Natural and Synthetic Minimal Systems. Advanced Biosystems 3 (6), 1800316 (2019)
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Mundt, M.; Anders, A.; Murray, S. M.; Sourjik, V.: A System for Gene Expression Noise Control in Yeast. ACS SYNTHETIC BIOLOGY 7 (11), pp. 2618 - 2626 (2018)
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Guzzo, M.; Murray, S. M.; Martineau, E.; Lhospice, S.; Baronian, G.; My, L.; Zhang, Y.; Espinosa, L.; Vincentelli, R.; Bratton, B. et al.; Shaevit, J.; Molle, V.; Howard, M.; Mignot, T.: A gated relaxation oscillator mediated by FrzX controls morphogenetic movements in Myxococcus xanthus. NATURE MICROBIOLOGY 3 (8), pp. 948 - 959 (2018)
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Murray, S. M.; Sourjik, V.: Self-organization and positioning of bacterial protein clusters. Nature Physics 13 (10), pp. 1006 - 1013 (2017)
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Schenk, K.; Hervas, A.; Roesch, T.; Eisemann, M.; Schmitt, B.; Dahlke, S.; Kleine-Borgmann, L.; Murray, S. M.; Graumann, P.: Rapid turnover of DnaA at replication origin regions contributes to initiation control of DNA replication. PLoS Genetics 13 (2), e1006561 (2017)
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Leslie, D.; Heinen, C.; Schramm, F.; Thuring, M.; Aakre, C.; Murray, S.; Laub, M.; Jonas, K.: Nutritional Control of DNA Replication Initiation through the Proteolysis and Regulated Translation of DnaA. PLOS Genetics 11 (7), e1005342 (2015)
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Murray, S. M.; Panis, G.; Fumeaux, C.; Viollier, P. H.; Howard, M.: Computational and genetic reduction of a cell cycle to its simplest, primordial components. PLoS Biol 11 (12), p. e1001749 (2014)
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