News!🔖 Qi Chen lab will move to University of Utah School of Medicine @UofUMedicine@UofUHealth starting Feb 2023!
Struck by the stark beauty of Utah, one feels so small in the face of nature, but also so much more to explore with new opportunities, new colleagues & friends!
Great to see our PANDORA-seq https://t.co/lVPMynvWBi
&
Perspective on the exploration of small RNA universe https://t.co/T9XHRqjIqR
both highlighted @NaturePortfolio among the collection of key methods & resources of the noncoding RNA field👇
https://t.co/Z4VmbVTlMU
Our April issue goes live!
The cover highlights a perspective on methods to explore the universe of small RNAs.
Read about 14 fascinating stories on condensate size control, necrosome structure, aggresomes at centrosomes, mitochondrial shape & more
https://t.co/JYOmQqxpqq
Exciting to see our paper on the cover @NatureCellBio!
The cover art is greatly inspired by the lunch of @NASAWebb🔭 & the Ultra Deep Field image by @NASAHubble🔭
While humbled by how little we know, there are so much more to explore in the RNA universe♾
https://t.co/Wsb0BW5GsI
Our new paper “Exploring the expanding universe of small RNAs” is out @NatureCellBio!🎉 We discuss emerging approaches for the panoramic identification of #smallRNA sequences & #RNAmodifications, and the limitations & solutions in their accurate analyses👇
https://t.co/WFydpZYZ4j
NEW online from @qichen_lab ‘PANDORA-seq expands the repertoire of regulatory small RNAs by overcoming RNA modifications’ #smallnoncodingRNAs
Download PDF: https://t.co/eiIWtV7I7c
https://t.co/9H3aeoE5DC
Now alive! We develop PANDORA-seq @NatureCellBio to overcome RNA modifications that prevent small RNA detection in traditional RNA-seq, uncovering a new small RNA landscape that is in fact dominated by tsRNA/rsRNA, rather than miRNA in many tissues/cells👇
https://t.co/lVPMynvWBi
In this opinion paper @NatureRevEndo https://t.co/9ljBIVkNU7 we discuss the concept & unknowns of the 'sperm RNA code' in programming mammalian offspring phenotypes from paternal environmental stressors.
Now is a time to crack this code in its composition⚛️ and modes of action🔍!
Very happy to be involved in this new paper @CellCellPress https://t.co/ktivG8sEVu showing symmetry breaking driven by heterogeneous LincGET since 2-cell mouse embryo! - a demonstration of our previous bioinformatic/mathematic prediction in @Dev_journal https://t.co/3KoJyhIdYo !