New in @NatureComms simple 5′Cy5 modification of ssODN donors boosts CRISPR–Cas9 HDR, improves survival, and enables precise editing in human organoids and blastoids, reaching 30% sickle cell mutation correction
@KAUST_News@KAUST_BESE@KAUST_PSE@ShmsLab https://t.co/Iw3iDEKVWt
Excited to share our recent work on boosting CRISPR-Cas9 HDR efficiency using simple chemical modified ssODNs - 5'Cy5-ssODNs - in multiple stem cell models, just published in @NatureComms! Huge Thanks to my advisor @Mo_Li_KAUST and co-authors
Read it here: https://t.co/kG7kIqQRJ9
Our new paper: comprehensive analysis of CAS9-induced, unintended large insertions using various donor types reveals widespread integration of repetitive & regulatory elements & donor sequences, @ target sites @KaustResearch @CommsBio https://t.co/3I8OmdbbYi
.@Mo_Li_KAUST shares how his team in Saudi Arabia are leveraging nanopore sequencing to tackle unique genetic disorders in the region stemming from consanguinity — overcoming the limitations of traditional sequencing methods.
Our new strategy suppresses unwanted deletion events to make genome editing safer and more precise https://t.co/dURp39AB28 via @physorg_com@altos_labs@KaustResearch
Thanks @KaustResearch for highlighting our genome editing work. Stay tuned for more interesting finding in follow up studies. @BLY36865709@nanopore@altos_labs https://t.co/D8JK0rvjUt https://t.co/D8JK0rvjUt
Our latest work on discovering the dark side of CRISPR-Cas9 using our IDMseq @nanopore sequencing method @KaustResearch @KAUST_SHI grateful for great collaborators at @KAUST_News@PKU1898 and @altos_labs
https://t.co/OgFYDleoTU
@Mo_Li_KAUST@altos_labs @KAUST_SHI @KaustResearch Thank Mo for the warm words. I appreciate your supervision during my PhD. It is hard to say goodbye for me, too. Looking forward to seeing more big publications and progress from our lab.
iMiGseq is a potentially groundbreaking technique, that uses long nanopore sequencing reads to overcome the limitations of traditional mtDNA sequencing methods.
Learn how it provides comprehensive analysis of mtDNA in single cells: https://t.co/aUCjJOU7yd @Mo_Li_KAUST
My group members had a good discussion on career development with Prof Han Liang who visited KAUST Bioscience program from MD Anderson cancer center last week @KaustResearch @KAUST_SHI
Our article "Wiskott-Aldrich syndrome protein forms nuclear condensates and regulates alternative splicing" received 3,591 downloads since its publication! @BLY36865709 @KAUST_SHI @KaustResearch@NatureComms Access the article here: https://t.co/g4ZvdKOZaG
Our work on CAS9 induced large deletions in bioRxiv @KaustResearch@BLY36865709 Modulation of the microhomology-mediated end joining pathway suppresses large deletions and enhances homology-directed repair following CRISPR-Cas9-induced DNA breaks https://t.co/I5MVh35fnL
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