Chiosis Lab
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chiosislabmskcc.bsky.social
Chiosis Lab
@chiosislabmskcc.bsky.social
86 followers 180 following 30 posts
🔬🖥️🐭 The Gabriela Chiosis Lab in the Chemical Biology Program at Memorial Sloan Kettering Cancer Center https://t.co/atGdWeqEVz
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📢 Our October issue is now online. Access the full issue 👉 www.cell.com/trends/bioch....

🎨 The cover highlights a Review from @chiosislabmskcc.bsky.social‬ and co on how PTMs reprogram chaperones into epichaperomes.
Reposted by Chiosis Lab
Out now in @cp-trendsbiochem.bsky.social: "PTMs as Molecular Encoders: Reprogramming Chaperones into Epichaperomes for Network Control in Disease" from @chiosislabmskcc.bsky.social. Learn more ⬇️
📝 Online now - the Review "PTMs as molecular encoders: reprogramming chaperones into epichaperomes for network control in disease" from @chiosislabmskcc.bsky.social et al.

#ProteinProteinInteractions #ProteinNetworks #ChaperoneReprogramming

Read it here 👉 authors.elsevier.com/sd/article/S...
🌟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 @cp-trendsbiochem.bsky.social
#PTMs #HSP90 #epichaperome #PPI #neuroscience @mskcancercenter.bsky.social
doi.org/10.1016/j.ti...
Redirecting
doi.org
Reposted by Chiosis Lab
📝 Online now - the Review "PTMs as molecular encoders: reprogramming chaperones into epichaperomes for network control in disease" from @chiosislabmskcc.bsky.social et al.

#ProteinProteinInteractions #ProteinNetworks #ChaperoneReprogramming

Read it here 👉 authors.elsevier.com/sd/article/S...
Sahil presented earlier this month at #AAIC2025 in Toronto @alzassociation.bsky.social
This work was supported by BrightFocus & NIH Aging and aims to advance #precisionmedicine in #neurodegeneration through the development of small molecule probes for #epichaperome imaging in #Alzheimers.
In #cancer, Casein Kinase 2 (CK2) interacts with #HSP90 and puts phosphate groups on Serine 255 and Serine 226 positions of the charged linker region of HSP90 thereby changing its structure or conformation. This dangerous alter ego of HSP90 helps the cancer cells to survive. (7)
#phosphorylation
This switch of HSP90 to "bad" and the formation of the epichaperome makes it so the #epichaperome now aids #cancer. (6)
#Cancer is a multifactorial disease that manifests as a result of chronic cellular stress, a trigger that turns #HSP90 into Mr. Hyde.
Mr. Hyde can now associate with other chaperone protein members and form a gang (high molecular weight assembly) called “epichaperome”. (5)
#epichaperome
In our latest work, now published in
@natcomms.nature.com, we uncover how #HSP90 switches from “good” to “bad” in #cancer. (4)
Heat Shock Protein 90 (HSP90) is a cellular chaperone protein ubiquitously present in human body and is responsible for folding other important proteins in the cell. However, it can exist either as Dr. Jekyll or Mr. Hyde depending on how stressed the cells are. (3) #cellstress #HSP90
Any protein consists of strings of amino acids that fold into distinct different shapes and structures inside the cell depending on the cellular environment. (2)
#proteinstructure #HSP90 #chaperone #cancer #chembio
🚀 Integrating dfPPI with other omics could reveal comprehensive disease mechanisms, paving the way for groundbreaking discoveries and precision therapeutics across numerous diseases. #MultiOmics #FutureResearch (11/11)
🌐 The open-access dfPPI Platform lets researchers worldwide visualize and analyze dfPPI data interactively, empowering researchers with access to cutting-edge proteomics analysis. #OpenScience #Proteomics
⚕️dfPPI help identify a hyperconnectivity state—an increased level of protein interactions in tumors, where cells become highly sensitive to therapies enhancing their effectiveness. #PrecisionMedicine #CancerTherapy
🔗 Protein connectivity changes detected by dfPPI show minimal correlation with overall protein expression—demonstrating the need to look beyond protein levels to understand true disease biology. #Proteomics #dfPPI
🎗️In cancer cells, dfPPI identifies dysfunctional PPIs critical for malignant behavior—offering insights into novel therapeutic vulnerabilities like mitotic network disruptions. #CancerResearch #Therapeutics