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Varsani-Brown, S.

Publications and source records attributed to Varsani-Brown, S..

2 recordsLinked to original sources

Branched actin networks in innate immune cells mediate host microbiota homeostasis.

Assembly of branched actin networks, driven by the Arp2/3 complex are essential for the function and integrity of the immune system. Patients with loss-of-function mutations in the ARPC5 subunit of the Arp2/3 complex develop inflammation and immunodeficiency after birth, leading to early mortality. However, the mechanistic basis for these phenotypes remains obscure. Here we demonstrate that loss of Arpc5 in the murine hematopoietic system, but not the corresponding Arpc5l isoform causes early-onset intestinal inflammation after weaning. This condition is initiated by microbiota breaching the ileal mucosa, leading to local and systemic inflammation. Macrophage and neutrophils infiltrate into the ileum, but in the absence of Arpc5 fail to restrict microbial invasion. Loss of Arpc5 compromises the ability of macrophages to phagocytose and kill intra-cellular bacteria. Our results underscore the indispensable role of Arpc5, but not Arpc5l containing Arp2/3 complexes in mononuclear phagocytes function and host-microbiota homeostasis. One-Sentence SummaryArpc5 containing Arp2/3 complexes are essential for host-microbiota homeostasis

immunology↗

Live-imaging reveals Coordinated Cell Migration and Cardiac Fate Determination during Mammalian Gastrulation.

Heart development involves the specification of cardiac progenitors at distinct stages and locations. Using live-imaging of mouse embryos between gastrulation and heart tube formation, we tracked individual mesodermal cells and reconstructed their lineage trees for up to five cell divisions. We found independent unipotent progenitors emerging at specific times, contributing exclusively to either left ventricle/atrioventricular canal (LV/AVC) or atrial myocytes. LV/AVC progenitors differentiated early to form the cardiac crescent, while atrial progenitors later generated the heart tubes inflow tract during morphogenesis. We also identified short-lived bipotent progenitors with broad potential, illustrating early developmental plasticity. Sister cells from bipotent progenitors displayed greater dispersion and more diverse migratory trajectories within the anterior mesoderm than those from unipotent progenitors. Bipotent progenitors contributing to extraembryonic mesoderm (ExEm) exhibited the fastest and most dispersed migrations, whereas those giving rise to endocardial, LV/AVC, and pericardial cells showed a more gradual divergence, with late-stage behavioural shifts: endocardial cells increased in speed, while pericardial cells slowed relative to LV/AVC cells. Together the data reveal the regulation of individual cell directionality and cardiac fate allocation within the seemingly unorganised migratory pattern of mesoderm cells.

developmental biology↗