Hey there, PARP1 and DNA repair enthusiasts!
Check out our very (!) detailed and recently published “Protocol for quantifying PARP inhibitor-induced changes in PARP1 dynamics and activity through live-cell imaging” @STARProtocols
https://t.co/LhsyY6dhT0
👇A short thread!
Have you ever wanted to track individual #chromosomes during #mitosis? To do live cell #karyotyping and map the inter- and intra-chromosomal contacts dynamics? Our recent work made that possible. Check out our @NatureCellBio paper:
https://t.co/w6iaGC8a6n
https://t.co/pdJlbc6sjs We are glad to see further evidence confirming our finding that loop extrusion is dispensible for the spread of gH2AX (doi: 10.1016/j.isci.2024.110826). #loopextrusion#cohesin#dnarepair#DDR#DSB
Contributing to efforts toward elucidating the response to replication stress, we provide a precise timescale of fork stalling and restart in live cells, at 30-s resolution (airyscan teaser below). https://t.co/cvLW0YaI5O
#replicationstress#DNArepair#ATR#replication#DNA#RPA
If you are curious whether loop extrusion is required for γH2AX spread and MDC1 recruitment, you can have a look at the most recently published work from our lab out now in iScience #dnarepair#ATM#MDC1#γH2AX#DDR#loopextrusion#cohesin
https://t.co/os9tFT7Dvt
We are happy to share our latest paper “A unified mechanism for PARP inhibitor-induced PARP1 chromatin retention at DNA damage sites in living cells”, out today in @CellReports. #PARP1#PARPinhibitor#GenomicStability
Hopefully not a boring thread ↓
https://t.co/MCU6BsbJRQ
Interested in protein dynamics and #DNArepair? Why not work with the experts at Sofia BioImaging Node? The Node has 2 new instruments for Fluorescence-lifetime imaging microscopy (#FLIM) - and #funding for Bulgarian researchers. Learn more ⤵️
https://t.co/DEKmsXjodr