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doi.org
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A Dipolar Photoswitch Modulates Bacterial Membrane Potential and Reveals Context-dependent Bioelectrical Circuitry
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leverhulme.ac.uk
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https://www.leverhulme.ac.uk/
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advanced.onlinelibrary.wiley.com
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Membrane Targeted Azobenzene Drives Optical Modulation of Bacterial Membrane Potential
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bioelectricitycluster.org
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Bioelectricity cluster meeting.
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cytecom.co.uk
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Cytecom Ltd
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royalsocietypublishing.org
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<b>Emergence of synchronised growth oscillations in filamentous fungi
<br></b>
Prakash P, Jiang X, Richards L, Schofield Z, Schafer P, Polin M, Soyer OS, Asally M
<br>
<em>Journal of Royal Society Interface</em> 2024, 21(19)
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journals.asm.org
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<b>Membrane potential dynamics unveil the promise of Bioelectrical Antimicrobial Susceptibility Testing (BeAST) for anti-fungal screening
<br></b>
de Souza-Guerreiro TC, Bacellar LH, da Costa TS, Edwards CLA, Tasic L, Asally M
<br>
<em>mBio</em> 2024, 15(8)
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cell.com
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<b>Thioflavin T indicates membrane potential in mammalian cells and can affect it in a blue light dependent manner
</b>
<br> Skates E, Delattre H, Schofield Z, Asally M, Soyer OS
<br>
<em>Biophysical Reports</em>, 2023, 3(4), 100134
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biorxiv.org
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<b>Phase-separated nuclear bodies of nucleoporin fusions promote condensation of MLL1/CRM1 and rearrangement of 3D genome structure
</b><br>
Oka M, Otani M, Miyamoto Y, Oshima R, Adachi J, Tomonaga T, Asally M, Nagaoka Y, Tanaka K, Toyoda A, Ichikawa K, Morishita S, Isono K, Koseki H, Nakato R, Ohkawa Y, Yoneda Y
<br>
<em>Cell Reports</em>, 2023, 42(8)
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onlinelibrary.wiley.com
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<b>Membrane targeted azobenzene drives optical modulation of bacterial membrane potential
</b><br>
de Souza TC, Bondelli G, Grobas I, Donini S, Sesti V, Bertarelli C, Lanzani G, Asally M, Paterno GM
<br>
<em>Advanced Science</em>, 2023, 10(8)
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nature.com
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<b>Electrotaxis behavior of droplets composed of aqueous Belousov-Zhabotinsky solutions suspended in oil phase
</b><br>
Back O, Asally M, Wang Z, Hayashi Y<br>
<em>Scientific Reports</em>, 2023, 13, 1340
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frontiersin.org
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<b>The dynamics of single-to-multi layer transition in bacterial swarms
</b> <br>
Grobas I, Asally M, Polin M<br>
<em>Frontiers in Soft Matter</em>, 2022, 2:936779
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doi.org
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<b>Seeking insights into aging through yeast mitochondrial electrophysiology
</b> <br>
de Souza-Guerreiro TC, Asally M<br>
<em>Bioelectricity</em>, 2021, 3(2):111-115
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elifesciences.org
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<b>Swarming bacteria undergo localized dynamic phase transition to form stress-induced biofilms
<br></b>
Grobas I, Polin M*, Asally M* (*equal contribution)<br>
<em>eLife</em>, 2021, 10:e62632
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doi.org
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<b>An agent-based model for interrelation between COVID-19 outbreak and economic activities
<br></b>
Kano T, Yasui K, Mikami T, Asally M, Ishiguro A<br>
<em>Proceedings of the Royal Society A</em>, 2021, 477(2245)
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doi.org
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<b>Biofilm and swarming emergent behaviours controlled through the aid of biophysical understanding and tools
<br></b>
Grobas I, Bazzoli DG, Asally M<br>
<em>Biochemical Society Transactions</em>, 2020, 48(6): 2903-2913
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doi.org
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<b>Bioelectrical understanding and engineering of cell biology
<br></b>
Schofield Z, Meloni G, Tran P, Zerfass C, Sena G, Hayashi Y, Grant M, Contera SA, Minteer SD, Kim M, Prindle A,
Rocha P, Djamgoz MBA, Pilizota T, Unwin PR, Asally M, Soyer OS.
<br>
<em>Journal of Royal Society Interface</em>, 2020, 17(166):20200013
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doi.org
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<b>The microbiologist's guide to membrane potential dynamics
<br></b>
Benarroch JM, Asally M<br>
<em>Trends in Microbiology</em>, 2020, 28 (4): 304-314
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pubs.acs.org
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<b>Scanning conductance microscopy reveals differences in the ionic environments of gram positive and negative bacteria
<br></b>
Cremin K, Jones B, Teahan J, Meloni GM, Perry D, Zerfass C, Asally M, Soyer OS, Unwin PR<br>
<em>Analytical Chemistry</em>, 2020, 92(24): 16024-32
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mitpressjournals.org
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<b>One-dimensional reaction-diffusion model for intra-and inter-biofilm oscillatory dynamics
<br></b>
Mikami T, Asally M, Kano T, Ishiguro A<br>
<em>Artificial Life Conference Proceedings</em>, 2020, 712-714
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pubs.acs.org
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<b>Pattern engineering of living bacterial colonies using meniscus-driven fluidic channels
<br></b>
Kantsler V, Ontanon-McDonald E*, Kuey C*, Ghanshyam MJ, Roffin MC, Asally M (*equal contribution)<br>
<em>ACS Synthetic Biology</em>, 2020, 9(6):1277–1283
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bio-protocol.org
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<b>Rapid detection of proliferative bacteria by Electrical Stimulation
<br></b>
Edwards CLA, Malyshev D, Stratford JP, Asally M<br>
<em>Bio-protocol</em>, 2020, 10 (3)
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sciencedirect.com
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<b>Interrogating metabolism as an electron flow system
<br></b>
Zerfass C, Asally M, Soyer OS<br>
<em>Current Opinion in Systems Biology</em>, 2019, 13: 59-67
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cell.com
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<b>Electrical polarization enables integrative quality control during bacterial differentiation into spores
<br></b>
Sirec T, Benarroch JM, Buffard P, Garcia-Ojalvo J, Asally M<br>
<em>iScience</em>, 2019, 16: 378-389
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pnas.org
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<b>Electrically induced bacterial membrane potential dynamics correspond to cellular proliferation capacity<br>
</b>Stratford JP, Edwards CLA, Ghanshyam MJ, Malyshev D, Delise MA, Hayashi Y, Asally M<br>
<em>PNAS</em>, 2019, 116(19): 9552-57
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mitpressjournals.org
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<b>A reaction-diffusion model for simulating the oscillatory expansion of biofilms<br>
</b>Mikami T, Asally M, Kano T, Ishiguro A<br>
<em> Artificial Life Conference Proceeding</em>, 2019, 31, 218-219
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nature.com
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<b>Impact of spatial organization on a novel auxotrophic interaction among soil microbes<br>
</b>Jiang X, Zerfass C, Feng S, Eichmann R, Asally M, Schaefer P, Soyer OS<br>
<em> ISME journal</em>, 2018, 12: 1443-56
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nature.com
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<b>Ion channels enable electrical communication within bacterial communities<br>
</b>Prindle A, Liu J*, Asally M*, Ly S, Garcia-Ojalvo J, Suel GM (*equal contributions)<br>
<em> Nature</em>, 2015, 527: 59-63
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nature.com
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<b>Metabolic co-dependence gives rise to collective oscillations within biofilms<br>
</b>Liu J, Prindle A*, Humphries J*, Gabalda-Sagarra M*, Asally M*, Lee DD, Ly S, Garcia-Ojalvo J, Suel GM (*equal contributions) <br>
<em>Nature</em>, 2015, 523: 550-554
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jbc.org
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<b>Differential role for transcription factor Oct4 nucleocytoplasmic dynamics in somatic cell reprogramming and self-renewal of embryonic stem cells
</b><br>
Oka M, Moriyama T, Asally M, Kawakami K, Yoneda<br>
<em>Journal of Biological Chemistry</em>, 2013, 288(21): 15085-97
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pnas.org
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<b>Localized cell death focuses mechanical forces during 3D patterning in a biofilm<br>
</b>Asally M, Kittisopikul M, Rue P, Du Y, Hu Z, Cagatay T, Robinson AB, Lu H, Garcia-Ojalvo J, Suel GM <br>
<em> PNAS </em>, 2012, 109(46):1889-96
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onlinelibrary.wiley.com
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<b>Nuclear retention of importin-a coordinates cell fate through changes in gene expression<br>
</b>Yasuda Y, Miyamoto Y, Yamashiro T, Asally M, Masui A, Wong C, Lovel KL, Yoneda Y <br>
<em>EMBO Journal</em>, 2012, 31(1): 83-94
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onlinelibrary.wiley.com
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<b>Nup358, a nucleoporin, functions as a key determinant of the nuclear pore complex structure remodeling during skeletal myogenesis<br>
</b>Asally M, Yasuda Y, Oka M, Otsuka S, Yoshimura SH, Takeyasu K, Yoneda Y <br>
<em>FEBS Journal</em>, 2011, 278(4): 610-21
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molbiolcell.org
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<b>The mobile FG nucleoporin Nup98 is a cofactor for Crm1-dependent protein export<br>
</b>Oka M, Asally M, Yasuda Y, Ogawa Y, Tachibana T, Yoneda Y <br>
<em>Molecular Biology of the Cell</em> , 2011, 21:
1885-96
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molbiolcell.org
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<b>Two isoforms of Npap60 (Nup50) differentially regulate nuclear protein import<br>
</b>Ogawa Y, Miyamoto Y, Asally M, Oka M, Yasuda Y, Yoneda Y <br>
<em>Molecular Biology of the Cell</em> , 2010, 21: 630-38
|
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nature.com
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<b>Triggering neural differentiation of ES cells by subtype switching of importin-alpha<br>
</b>Yasuhara N, Shibazaki N, Tanaka S, Nagai M, Kamikawa Y, Oe S, Asally M, Kamachi Y, Kondo H, Yoneda Y<br>
<em>Nature Cell Biology</em>, 2006, 9(1): 72-79
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ncbi.nlm.nih.gov
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<b>Beta-catenin can act as a nuclear import receptor for its partner transcription factor, lymphocyte enhancer factor-1<br>
</b>Asally M, Yoneda Y <br>
<em>Experimental Cell Research</em>, 2005, 308(2): 357-63
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html5up.net
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HTML5 UP
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