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Altering the temporal regulation of one transcription factor drives sensory trade-offs

Ariane Ramaekers, Simon Weinberger, Annelies Claeys, et al.



Selected by Mariana R.P. Alves

SWI/SNF remains localized to chromatin in the presence of SCHLAP1

Jesse R Raab, Keriayn N Smith, Camarie C Spear, et al.



Selected by Carmen Adriaens

Controlling CRISPR-Cas9 with ligand-activated and ligand-deactivated sgRNAs

Kale Kundert, James E Lucas, Kyle E Watters, et al.



Selected by Samantha Seah

Transcription factor TAp73 and miRNA-449 cooperate in multiciliogenesis

Merit Wildung, Tilman Uli Esser, Katie Baker Grausam, et al.



Selected by Daniel Grimes

Clathrin plaques form mechanotransducing platforms

Agathe Franck, Jeanne Laine, Gilles Moulay, et al.



Selected by Amanda Haage

Genetic compensation is triggered by mutant mRNA degradation

Mohamed El-Brolosy, Andrea Rossi, Zacharias Kontarakis, et al.



Selected by Andreas van Impel

Molecular dynamics simulations disclose early stages of the photo-activation of cryptochrome 4

Daniel R. Kattnig, Claus Nielsen, Ilia A. Solov'yov



Selected by Miriam Liedvogel

Cellular Crowding Influences Extrusion and Proliferation to Facilitate Epithelial Tissue Repair

Jovany Jeomar Franco, Youmna Maryline Atieh, Chase Dallas Bryan, et al.



Selected by Helen Weavers

Photoperiod sensing of the circadian clock is controlled by ELF3 and GI

Usman Anwer, Amanda Davis, Seth Jon Davis, et al.



Selected by Annika Weimer

A SoxB gene acts as an anterior gap gene and regulates posterior segment addition in the spider Parasteatoda tepidariorum

Christian L. B. Paese, Anna Schoenauer, Daniel J. Leite, et al.



Selected by Erik Clark

Live-cell imaging of marked chromosome regions reveals dynamics of mitotic chromosome resolution and compaction

John K Eykelenboom, Marek Gierlinski, Zuojun Yue, et al.

AND

Quantitative imaging of chromatin decompaction in living cells

Elisa Dultz, Roberta Mancini, Guido Polles, et al.



Selected by Carmen Adriaens, Dey Lab

Optogenetic reconstitution reveals that Dynein-Dynactin-NuMA clusters generate cortical spindle-pulling forces as a multi-arm ensemble

Masako Okumura, Toyoaki Natsume, Masato T Kanemaki, et al.



Selected by Arnaud Monnard

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