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Larsen, H.

Publications and source records attributed to Larsen, H..

2 recordsLinked to original sources

Transcriptional and epigenomic profiling identifies YAP signaling as a key regulator of intestinal epithelium maturation

During intestinal organogenesis, equipotent epithelial progenitors mature into phenotypically distinct stem cells that are responsible for life-long maintenance of the tissue. While the morphological changes associated with the transition are well-characterized, the molecular mechanisms underpinning the maturation process are not fully understood. Here, we leverage intestinal organoid cultures to profile transcriptional, chromatin accessibility, DNA methylation and 3D chromatin conformation landscapes defining fetal and adult epithelial cells. We observed prominent differences in gene expression and enhancer activity, accompanied by changes in 3D organization and local changes in DNA accessibility and methylation, between the two cellular states. Using integrative analyses, we identified sustained YAP transcriptional activity as a major gatekeeper of the immature fetal state. We found the YAP-associated transcriptional network to be regulated at various levels of chromatin organization, and likely to be coordinated by changes in extracellular matrix composition. Altogether, our work highlights the value of unbiased profiling of regulatory landscapes for the identification of key mechanisms underlying tissue maturation.

developmental biology↗

Deletion of 12-lipoxygenase normalizes platelet function after storage and transfusion in thrombocytopenic mice

ObjectivePlatelets for transfusion are stored for 5-7 days. During storage, platelets undergo numerous detrimental functional changes. In the current study, we sought to understand how genetic deletion of 12 -lipoxygenase (12-LOX) affects platelets during storage, before, and after transfusion. Approach and ResultsWe obtained platelets from wild-type (WT) and 12-LOX-/-mice and performed storage studies for 24 and 48 hours. Using LC-MS/MS-MRM, we showed that {omega}-3 and {omega}-6 fatty acids increased significantly in stored platelets from 12-LOX-/-mice, while oxylipins were significantly lower than in WT platelets. The circulation time of fresh 12-LOX-/-platelets was significantly shorter than that of fresh WT platelets, but no differences were observed after storage. Baseline IIb{beta}3 integrin activation was significantly lower before and after 24 hours of storage in 12-LOX-/-platelets than in WT platelets. Surprisingly, after transfusion, we observed more baseline IIb{beta}3 integrin activation in 12-LOX-/-platelets than in WT platelets. In line with this, transfusion of stored 12-LOX-/-platelets led to more frequent and significantly faster vessel occlusions than transfusion of stored WT platelets in a FeCl3-induced carotid artery injury model in thrombocytopenic mice. ConclusionDeleting 12-LOX improves the post-transfusion function of stored murine platelets. Pharmacologic inhibition of 12-LOX or dietary alterations of {omega}-3 and {omega}-6 PUFAs could significantly enhance human platelet quality and function after storage. Future studies must determine the feasibility and safety of 12-LOX inhibition in stored and transfused human platelets.

physiology↗