Kurumizaka Lab(@KurumizakaLab) 's Twitter Profile Photo

Our new paper about the structural mechanism by which RAD51 assembles at double-stranded DNA break sites on chromatin has been published in Nature!
doi.org/10.1038/s41586…

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Ross Chapman(@Chapman_lab_UK) 's Twitter Profile Photo

Calling all & aficionados - It’s the last few days to register for the legendary Cape Sounio EMBO workshop on The DNA Damage Response in cell physiology & disease: meetings.embo.org/event/24-dna-d… 😉

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🧬Amy Whitaker(@DNAmyWhitaker) 's Twitter Profile Photo

Please RT! The 2nd ‘Genome Instability: Discovery to Personalized Medicine’ meeting in is on Nov 3rd! Focusing on topics it spans basic research to drug development to clinical trials. Abstracts due Sept 15th! See link to register! noncredit.temple.edu/genomeconferen…

Please RT! The 2nd ‘Genome Instability: Discovery to Personalized Medicine’ meeting in #Philadelphia is on Nov 3rd! Focusing on #DNArepair topics it spans basic research to drug development to clinical trials. Abstracts due Sept 15th! See link to register! noncredit.temple.edu/genomeconferen…
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Ioannis Tsirkas(@IoannisChemist) 's Twitter Profile Photo

I am thrillled to receive one of the three Best poster awards during the 6th German French Meeting in Mainz! I am very glad that my research on conflicts and attracted big attention and for the feedback I got by everyone stopping by!

I am thrillled to receive one of the three Best poster awards during the 6th German French #DNARepair Meeting in Mainz! I am very glad that my research on #transcription #replication conflicts and #Rloops attracted big attention and for the feedback I got by everyone stopping by!
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Tirzah_Genetics_Genomics(@Tirzahbp) 's Twitter Profile Photo

Cells from ascites, a new chapter of my scientific journey. The goal is to explore molecular mechanisms of PARP inhibitors resistance in HRD cells from ovarian cancer patients who developed ascites.

Cells from ascites, a new chapter of my scientific journey. The goal is to explore molecular mechanisms of PARP inhibitors resistance in HRD cells from ovarian cancer patients who developed ascites. #dnarepair #hrd #ovariancancear
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SFB 1361 - DNA Repair and Genome Stability(@sfb1361) 's Twitter Profile Photo

The DGDR is holding its annual DGDR meeting: DNA Repair Meeting 2024 from September 25-27 in Cologne, Germany.

Interested? Register via this link: cms2.vcongress.de/dgdr-2024
Registration deadline: June 30, 2024!

The DGDR is holding its annual DGDR meeting: DNA Repair Meeting 2024 from September 25-27 in Cologne, Germany.

Interested? Register via this link: cms2.vcongress.de/dgdr-2024
Registration deadline: June 30, 2024!

#DNArepair #cologne
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Jake Thrasher(@ThrashTalk) 's Twitter Profile Photo

Another great GRC on DNA damage repair in the books. I had a great time presenting my research and making new DNA repair friends!

Another great GRC on DNA damage repair in the books. I had a great time presenting my research and making new DNA repair friends! #LGTBQinSTEM #DNArepair
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Abhinav Jain, Ph.D.(@abhinavjain_phd) 's Twitter Profile Photo

Here ⁦TMCHelixPark, the new amazing collaborative space👍🏻⁩ and super excited to listen to exciting science on by our esteemed Dr. Rick Wood &molecularcarcinogenesis ⁦MD Anderson Cancer Center

Here ⁦@TMC_HelixPark, the new amazing collaborative space👍🏻⁩ and super excited to listen to exciting science on #dnarepair by our esteemed Dr. Rick Wood #epigenetics&molecularcarcinogenesis ⁦@MDAndersonNews⁩ #endcancer
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Henning Willers, MD(@HenningWillers) 's Twitter Profile Photo

Another (great) reason to be at - catching up with old colleagues & friends (ok we are not that old😅). The amazing Conchita Vens, now at university. Have not seen in each other in >20 years‼️

Another (great) reason to be at #ESTRO24 - catching up with old colleagues & friends (ok we are not that old😅). The amazing Conchita Vens, now at #Glasgow university. Have not seen in each other in >20 years‼️ #radbio  #DNArepair #hncsm
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Grey Monroe(@Grey_Monroe) 's Twitter Profile Photo

We’ve now found that, in plants, H3K4me1 is targeted by Tudor histone reader domains that are fused to DNA repair proteins, and here confirmed experimentally in the Arabidopsis Tudor domain fused to (mismatch repair protein) MSH6
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We’ve now found that, in plants, H3K4me1 is targeted by Tudor histone reader domains that are fused to DNA repair proteins, and here confirmed experimentally in the Arabidopsis Tudor domain fused to (mismatch repair protein) MSH6  #DNARepair #Epigenomics
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東京大学・胡桃坂研究室(@kurumizaka_ut) 's Twitter Profile Photo

RAD51がクロマチン上で二本鎖DNA切断部位に集積するメカニズムを、クライオ電子顕微鏡を用いて明らかにしました!
doi.org/10.1038/s41586…

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