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Hassett, B.

Publications and source records attributed to Hassett, B..

2 recordsLinked to original sources

High-throughput screening in hiPSC-cardiac models reveals cardiomyocyte-specific cell cycle regulatory mechanisms

Introductory ParagraphMultiple regulatory mechanisms govern cardiomyocyte proliferation including epigenetic modifications, metabolism and mechanical load. However, it is unclear whether such mechanisms can be pharmacologically targeted to induce cardiomyocyte proliferation without affecting other cell types. Here, we develop a dual-reporter (TNNT2eGFP; PCNAmScarlet-I) and a high-throughput image-based pipeline in human induced pluripotent stem cell (hiPSC)-derived cardiomyocytes, with counter screening in non-myocytes, to identify compounds that selectively promote cardiomyocyte proliferation without affecting other cell types. We identify the PIM kinase inhibitor GDC-0339 as a cardiomyocyte-selective pro-proliferative compound. GDC-0339 induced proliferation of hiPSC-derived cardiomyocytes without activity in non-myocytes, non-cardiac fibroblasts or epithelial cells. Phosphoproteomic profiling of GDC-0339 in cardiomyocytes and non-cardiac fibroblasts revealed a cardiomyocyte-specific mechanism of action involving sarcomere disassembly via remodelling of the F-actin cytoskeleton and metabolic reprogramming to anaerobic metabolism via Pyruvate Dehydrogenase Kinases (PDKs). Thus, we uncover cardiomyocyte-specific mechanisms governing the cell cycle that are potentially druggable.

cell biology↗

The mini yet mighty stapes: a comparison of ancient DNA yields among ossicles and the petrous bone

The petrous bone is considered the most efficient source of endogenous DNA across skeletal tissues in ancient DNA research as well as in forensic work. Recently, ancient DNA (aDNA) in auditory ossicle bones was shown to be comparably well-preserved as in the petrous, although no attempt was made to distinguish among the three ossicle bones. In this study, we used a total of 114 human ossicle- and petrous-derived sequencing libraries from similar contexts (c.10,000 BP - 7,000 BP Anatolia), including 34 matched libraries prepared from the same individuals ossicle and petrous bones. Our results suggest that endogenous human aDNA preservation in the stapes is on average two times higher than in the petrous bone; it also tends to be higher than in the malleus and incus. Similarly, aDNA fragment lengths were higher in the stapes than in the petrous, whereas postmortem damage, clonality and contamination rates were comparable. Despite being the smallest bone in the human skeleton, the stapes may be the most optimal aDNA source yet identified.

genetics↗