Have you wondered what the wet lab success rates are for current AI-driven protein design models? Look no further!
In our new open access review, @KevinKaichuang, @avapamini, @SarahAlamdari, and I report wet lab success rates for *over 200* different protein design tasks 🧬💻
🧪 What makes plastoglobules different from lipid droplets in senescing leaves?
Discover the distinct roles of these structures in this new #EditorsChoice article in @JXBot , written by the brilliant science writer Malini Muthu Karpagam.
Read now:
https://t.co/88oPbf2Y9e
I enjoyed writing this piece for @SEBiology on a @JXBot Editor’s Choice article!
It looks at how plastoglobules and lipid droplets play different roles in aging leaves.
Thanks to the SEB team!
I'm so happy to see our new paper out @NatureComms. Check it out!
We found nucleosome dynamics linked to local #chromatin transitions.
https://t.co/8fZA2YOizy
It is good to know that one of the articles from the Bioactives group is useful for the scientific community.
Good news! My article received enough views to be a Top Viewed Article. Read it here https://t.co/W3itszppdZ #TopViewedArticle@wileyinresearch@KAUST_News@KAUST_BESE
Delighted to share this. A novel H4 variant that modulates chromatin to mediate salt stress response. This mammoth work was driven to perfection by @VivekHariSunda1, a wonderful PhD student who also taught me. We report its CryoEM structure & unusual chemistry @NCBS_Bangalore 1/3
Excited to share the second part of my Ph.D. work with @shivaprasad_pv lab @NCBS_Bangalore. Histones are sculptures of (epi)genomic architecture and we here report the histone H4 variant (H4.V) in Oryza - https://t.co/Irgu3CgDoX. @NaturePlants.
New Article: "An Oryza-specific histone H4 variant predisposes H4 lysine 5 acetylation to modulate salt stress responses" https://t.co/e4usthp5xG
An Oryza-specific histone H4 variant (H4.V) forms condensed, less stable nucleosomes, regulating the salt stress transcriptome.
Very excited to share my PhD research, "N-glycosylated effectors target maize PMEIs," @IPMBSinica, now available as a preprint! 🔗 https://t.co/ycGO8t8HdI
Grateful to my PI, @LaySunMa1, for guidance in making this work possible! 🌽🔬#FungalEffectors#Glycosylation#MaizeDefense
Very happy to see our latest paper by @ROsborne_93 et al out today in @Dev_Cell. In this work we identify a role for VRN2-PRC2 in regulating light-responsive growth in Arabidopsis through the conditional epigenetic repression of PIF signalling. https://t.co/nFXs6BIFNI
We are happy to share our work on local #nucleosome dynamics integrating #temperature inputs into an #epigenetic switching mechanism.
⚠️ Preprint alert!!
https://t.co/hcNRkqPfov
🌡️How do plants adapt their flowering to low ambient #temperature? We uncover a cold-regulated H3K27me3 demethylation mechanism that modulates #flowering time through the #epigenetic regulation of #FLC and #FLM. Read our #preprint here: https://t.co/4Eowtthr7C
A huge congratulations to @Schmitz_Lab and his team for the recently published @CellCellPress paper on spatially resolved multi-omic single-cell atlas of soybean development
https://t.co/cim8AHGGwc
Excited to share the final peer-reviewed version of our last work! "Plant BCL-DOMAIN HOMOLOG proteins play a conserved role in SWI/SNF complex stability" Great collaboration with the Wohlschlegel and Lozano-Juste (@JorgeTwe ) labs! @IBMCP@UPV@CSIC@UCLA
https://t.co/gs8E0GXz7W