🚨Publication alert! The final version of our article is OUT NOW in @TrendsBiochem.
@ChiosisLabmskcc is honored to have been selected as the cover feature for this issue - cover art by a VI4 Artist in Residence.
Check out the review article here:
https://t.co/Yf9GzchU8P
⭐️Very excited to share that our article 'PTMs as Molecular Encoders: Reprogramming Chaperones into Epichaperomes for Network Control in Disease' is out online now in @TrendsBiochem#PTMs#HSP90#epichaperome#PPI#neuroscience
https://t.co/pszZWjRGLb
🖼 Graphical Abstract | Explore the key findings through graphics
📌 Synthesis and Characterization of Click Chemical Probes for Single-Cell Resolution Detection of Epichaperomes in Neurodegenerative Disorders
🔗 https://t.co/daYZDtcWqn
#VisualResearch
🌅 Another busy summer in the books! Chiosis Lab mentored 9 high school & undergraduate students over the last few months. We are always happy & inspired to support young people interested in science.
Shoutout to our excellent students & kudos to their mentors! #STEM#mentorship
🧑🔬Congratulations to the team that worked on Targeting GLP-1R and IL-17A suppresses obesity-induced leukemia in an oncogenic PTPN11 mutation–driven model, now published in the Journal of Clinical Investigation @jclinicalinvest.
Read it here: https://t.co/Cch4r6utEK
🎉Excited to share our new paper in @jclinicalinvest, co-led by the Kapur lab and @LinkeLi_MGH, and co-senior with @santhu_131!
How does obesity accelerate PTPN11-driven myeloid leukemia - and can we intervene?
🧬 In human, obesity traits tracked with elevated plasma IL-17A, reduced GLP-1R, and heightened myeloid leukemia risk.
🐁 In mice, obesity accelerated leukemogenesis via Th17/IL-17A & M2 TAMs, and dual anti–IL-17A + GLP-1R agonist 💊 reverse it.
Together, we demonstrated a tractable strategy for high-risk obese patients with PTPN11 mutations: https://t.co/2Lmp8sPV1z
@souparna_c presents the dfPPI Analysis Platform—a browser-based workflow for turning interaction-capture mass-spectrometry data into differential interaction-engagement models, pathway-rewiring maps and network-level results.
Read more in @SpringerNature https://t.co/90QRkPehdO
Check out Chiranjeevi's @SpringerNature blog on Structural & Dynamic Basis of Phosphorylation-Mediated HSP90 Conformational Switching Controls Epichaperome Assembly & Cellular Proliferation, recently presented as a poster at The 2nd NextGen Conversations https://t.co/1fQSvSPApo
@chiosislabmskcc We love seeing passionate researchers representing their labs and sharing their work with the ASMS community. Great job, Shujuan and Luke!
'Complex-resolved epichaperomics reveals PTM-coded rewiring of HSP90–HSC70–cochaperone scaffolds across cellular states' presented by Luke Botticelli on Saturday at #ASMS2026! 🤓Thank you to everyone engaged with our work!
@asmsnews#epichaperome#proteomics#massspectrometry
📹OUT NOW! We present a protocol to enable the capture & identification of disease-specific protein-protein interactions from native cells & tissues using chemical probes & mass spectrometry https://t.co/UyxOi4rEtK #Proteomics#interactome#omics#dfPPI#SciComm@JoVEJournal
Congrats to Ranveer Kamboj on winning 1st place (Health & Medicine) at the NJ Academy of Science Research Symposium for his summer research in the @chiosislabmskcc under the mentorship of @SsGq2009. Excellent work & great to see it recognized 👏🔬 #STEM#NJAS2026#ResearchImpact
🚨Publication alert! The final version of our article is OUT NOW in @TrendsBiochem.
@ChiosisLabmskcc is honored to have been selected as the cover feature for this issue - cover art by a VI4 Artist in Residence.
Check out the review article here:
https://t.co/Yf9GzchU8P