Dominika Borek (@dmborek) 's Twitter Profile
Dominika Borek

@dmborek

ID: 363320406

calendar_today27-08-2011 22:15:14

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TambarLab (@tambarlab) 's Twitter Profile Photo

Our lab recently discussed the amazing career of Matthew S. Sigman Utah Chemistry. Here are some papers: onlinelibrary.wiley.com/doi/abs/10.100… pubs.acs.org/doi/10.1021/ar… nature.com/articles/natur… science.org/doi/10.1126/sc… pubs.acs.org/doi/10.1021/ja…

Our lab recently discussed the amazing career of Matthew S. Sigman <a href="/UtahChemistry/">Utah Chemistry</a>. Here are some papers:

onlinelibrary.wiley.com/doi/abs/10.100…
pubs.acs.org/doi/10.1021/ar…
nature.com/articles/natur…
science.org/doi/10.1126/sc…
pubs.acs.org/doi/10.1021/ja…
Kurumizaka Lab (@kurumizakalab) 's Twitter Profile Photo

Check out our paper on the cryo-EM analysis of chromatin derived from human cells! We have established a technically accessible method for analyzing the chromatin structure prepared from human cells. onlinelibrary.wiley.com/doi/10.1111/gt…

Fermat's Library (@fermatslibrary) 's Twitter Profile Photo

60 years ago this month, the Fast Fourier Transform (FFT) was introduced by Cooley & Tukey (1965) - one of the most important algorithms in signal processing and data analysis. In 1805, Gauss - studying the orbits of asteroids Pallas and Juno - came up with a method to

60 years ago this month, the Fast Fourier Transform (FFT) was introduced by Cooley &amp; Tukey (1965) - one of the most important algorithms in signal processing and data analysis.

In 1805, Gauss - studying the orbits of asteroids Pallas and Juno - came up with a method to
Shao-Liang Zheng (@shaoliangzheng) 's Twitter Profile Photo

A student Harvard Chemistry spotted a structure with R1 = 0.9813 (!) in pubs.acs.org/doi/10.1021/ac… CCDC Cambridge 😱😱and used what he learned in #Chem255 to refine it to R1 < 0.06—after squeezing out mystery solvents. What an achievement 🥳🥳 IUCr #crystallography #education

A student <a href="/HarvardCCB/">Harvard Chemistry</a> spotted a structure with R1 = 0.9813 (!) in pubs.acs.org/doi/10.1021/ac… <a href="/ccdc_cambridge/">CCDC Cambridge</a> 😱😱and used what he learned in #Chem255 to refine it to R1 &lt; 0.06—after squeezing out mystery solvents. What an achievement 🥳🥳 <a href="/IUCr/">IUCr</a> #crystallography #education
Andrew Belmont (@belmont_andrew) 's Twitter Profile Photo

Happy to share our recent work showing bulk transport of speckle material between nuclear speckles within dynamic, multi-phase, linear connections. Nonrandom interchromatin trafficking through dynamic multiphase speckle connections biorxiv.org/content/10.110…

ShorterLab (@shorterlab) 's Twitter Profile Photo

Intra-condensate demixing of TDP-43 inside stress granules generates pathological aggregates: Cell cell.com/cell/fulltext/…

David B Sauer (@davidbsauer) 's Twitter Profile Photo

Join our group in the Centre for Medicines Discovery at Oxford Univ. Centre for Medicines Discovery University of Oxford !!!! Happy to chat about any questions about the role and science. Oxford will assist with a skilled worker visa. Please RT! my.corehr.com/pls/uoxrecruit…

Join our group in the Centre for Medicines Discovery at Oxford Univ. <a href="/CmdOxford/">Centre for Medicines Discovery</a> <a href="/UniofOxford/">University of Oxford</a> !!!!  

Happy to chat about any questions about the role and science. 

Oxford will assist with a skilled worker visa.  

Please RT!

my.corehr.com/pls/uoxrecruit…
Naruhiko Adachi (@naruhikoadachi) 's Twitter Profile Photo

The 32nd paper from the #cryoEM facility in #KEK. Collaboration with Profs. Noji and Murata. Multi-stalk FoF1-ATP synthase was engineered to enhance H+/ATP ratio. Cryo-EM structures clearly showed the presence of multi-stalks! Outstanding work, Ueno-san! nature.com/articles/s4146…

The 32nd paper from the #cryoEM facility in #KEK. Collaboration with Profs. Noji and Murata. Multi-stalk FoF1-ATP synthase was engineered to enhance H+/ATP ratio. Cryo-EM structures clearly showed the presence of multi-stalks! Outstanding work, Ueno-san!

nature.com/articles/s4146…
Mike Martynowycz (@sciencemick) 's Twitter Profile Photo

🍃➡️🧬 First paper from the Martynowycz Lab! Spontaneous seed-protein nanocrystals → 0.85Å ab-initio structure of crambin by #MicroED No crystallization screens, no MR bias. Watch the diffraction-to-density movie & grab the preprint below! biorxiv.org/content/10.110…

The Nogales Lab (@nogaleslab) 's Twitter Profile Photo

Our work, co-led by Alfredo Flórez and @NicholasLue, is finally out in NatureStructMolBiol. Shout out to coauthors P.Grob, B. Kaeser, J.Fang, and Susanne Kassube for their contributions, and thanks to the reviewers for their suggestions that led to the final work. nature.com/articles/s4159…

Nicastro Lab (@nicastrolab) 's Twitter Profile Photo

🎉 Congrats to Yanhe, Kangkang, @AmirrasoulTava1, Long Gui & co-authors for revealing the atomic structure of RS3, a Giga-sized complex in motile cilia! A tour de force in #cryoET, #cryoEM,#proteomics & modeling. Out now in Nat Struct Mol Biol! doi.org/10.1038/s41594… Cell Biology UTSW

🎉 Congrats to Yanhe, Kangkang, @AmirrasoulTava1, <a href="/loonggui/">Long Gui</a> &amp; co-authors for revealing the atomic structure of RS3, a Giga-sized complex in motile cilia! A tour de force in #cryoET, #cryoEM,#proteomics &amp; modeling. Out now in Nat Struct Mol Biol! doi.org/10.1038/s41594… <a href="/CellUtsw/">Cell Biology UTSW</a>
Juha Huiskonen (@juhahuiskonen) 's Twitter Profile Photo

In our latest preprint on bioRxiv, we present the in situ structure of the human gap junction at 14 Å resolution using cryo-ET. The structure provides a blueprint for investigating how connexin regulation shapes intercellular communication in health and disease.

In our latest preprint on bioRxiv, we present the in situ structure of the human gap junction at 14 Å resolution using cryo-ET.

The structure provides a blueprint for investigating how connexin regulation shapes intercellular communication in health and disease.
Jeannie Lee (@xistharvard) 's Twitter Profile Photo

An evolving landscape of PRC2–RNA interactions in chromatin regulation, by Aguilar Rodrigo Aguilar, Rosenberg, et al. now in print! Learn the latest about how Polycomb works with RNA in epigenetic regulation: nature.com/articles/s4158…

Wolf Lab (@hicryoem) 's Twitter Profile Photo

First cryo-EM map of Apoferritin from our new 日本電子株式会社 / JEOL Ltd.【公式】 JEOL USA JEOL EUROPE cryoARM300-II with Direct Electron Apollo detector. Collected over night and processed in 1 day with CryoSPARC using all-default settings from only 76k particles. H/R B-factor=28 at 1.5A. Not too

First cryo-EM map of Apoferritin from our new <a href="/JEOL_Japan/">日本電子株式会社 / JEOL Ltd.【公式】</a> <a href="/JEOLUSA/">JEOL USA</a> <a href="/JEOLEUROPE/">JEOL EUROPE</a>  cryoARM300-II with <a href="/DirectElectron/">Direct Electron</a> Apollo detector. Collected over night and processed in 1 day with <a href="/cryosparc/">CryoSPARC</a> using all-default settings from only 76k particles. H/R B-factor=28 at 1.5A. Not too