PIP4K2B is a mechanosensor and induces heterochromatin-driven nuclear softening through UHRF1
Alessandro Poli(University of Pisa), Paolo Maiuri(IFOM), Paolo A. Netti(University of Naples Federico II), Fabio Iannelli(IFOM), Bhavwanti Sheth(University of Southampton), Andrea Ghisleni(IFOM), Michele Crestani(FIRC Institute of Molecular Oncology), Alexander A. Mirоnоv(IFOM), Sabato Fusco(University of Molise), Francesca Michela Pramotton(Massachusetts Institute of Technology), Aldo Ferrari(MorphoSys (Germany)), Valeria Panzetta(Italian Institute of Technology), Paulina Nastały(IFOM), Nullin Divecha(University of Southampton), Fabrizio A. Pennacchio(IFOM), Nils C. Gauthier(IFOM), Galina Beznusenko(IFOM), Dimos Poulikakos(ETH Zurich)
Cited by 1
Related Papers
All-inkjet-printed flexible electronics fabrication on a polymer substrate by low-temperature high-resolution selective laser sintering of metal nanoparticles
|Nanotechnology|2007|775
Recent advances in holographic 3D particle tracking
|Advances in Optics and Photonics|2015|312
The Structure and Regulation of Human Muscle α-Actinin
|Cell|2014|225
Red blood cell as an adaptive optofluidic microlens
|Nature Communications|2015|166
Digital holography as a method for 3D imaging and estimating the biovolume of motile cells
|Lab on a Chip|2013|159