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1.
PLoS Pathog ; 16(7): e1008651, 2020 07.
Artículo en Inglés | MEDLINE | ID: mdl-32658914

RESUMEN

Type-2 immunity elicits tissue repair and homeostasis, however dysregulated type-2 responses cause aberrant tissue remodelling, as observed in asthma. Severe respiratory viral infections in infancy predispose to later asthma, however, the processes that mediate tissue damage-induced type-2 inflammation and the origins of airway remodelling remain ill-defined. Here, using a preclinical mouse model of viral bronchiolitis, we find that increased epithelial and mesenchymal high-mobility group box 1 (HMGB1) expression is associated with increased numbers of IL-13-producing type-2 innate lymphoid cell (ILC2s) and the expansion of the airway smooth muscle (ASM) layer. Anti-HMGB1 ablated lung ILC2 numbers and ASM growth in vivo, and inhibited ILC2-mediated ASM cell proliferation in a co-culture model. Furthermore, we identified that HMGB1/RAGE (receptor for advanced glycation endproducts) signalling mediates an ILC2-intrinsic IL-13 auto-amplification loop. In summary, therapeutic targeting of the HMGB1/RAGE signalling axis may act as a novel asthma preventative by dampening ILC2-mediated type-2 inflammation and associated ASM remodelling.


Asunto(s)
Remodelación de las Vías Aéreas (Respiratorias)/inmunología , Proteína HMGB1/inmunología , Inflamación/inmunología , Linfocitos/inmunología , Músculo Liso/inmunología , Animales , Ratones , Músculo Liso/patología , Receptor para Productos Finales de Glicación Avanzada/inmunología
2.
J Cell Sci ; 130(1): 143-151, 2017 01 01.
Artículo en Inglés | MEDLINE | ID: mdl-26919978

RESUMEN

The structural organisation of pancreatic ß-cells in the islets of Langerhans is relatively unknown. Here, using three-dimensional (3D) two-photon, 3D confocal and 3D block-face serial electron microscopy, we demonstrate a consistent in situ polarisation of ß-cells and define three distinct cell surface domains. An apical domain located at the vascular apogee of ß-cells, defined by the location of PAR-3 (also known as PARD3) and ZO-1 (also known as TJP1), delineates an extracellular space into which adjacent ß-cells project their primary cilia. A separate lateral domain, is enriched in scribble and Dlg, and colocalises with E-cadherin and GLUT2 (also known as SLC2A2). Finally, a distinct basal domain, where the ß-cells contact the islet vasculature, is enriched in synaptic scaffold proteins such as liprin. This 3D analysis of ß-cells within intact islets, and the definition of distinct domains, provides new insights into understanding ß-cell structure and function.


Asunto(s)
Polaridad Celular , Células Secretoras de Insulina/citología , Proteínas Adaptadoras Transductoras de Señales/metabolismo , Animales , Vasos Sanguíneos/citología , Transportador de Glucosa de Tipo 2/metabolismo , Humanos , Células Secretoras de Insulina/metabolismo , Células Secretoras de Insulina/ultraestructura , Péptidos y Proteínas de Señalización Intracelular/metabolismo , Ratones , Proteínas del Tejido Nervioso/metabolismo , Proteínas Asociadas a SAP90-PSD95 , Sinapsis/metabolismo
3.
Diabetologia ; 57(8): 1655-63, 2014 Aug.
Artículo en Inglés | MEDLINE | ID: mdl-24795086

RESUMEN

AIMS/HYPOTHESIS: We set out to test the hypothesis that insulin secretion from beta cells is targeted towards the vasculature. METHODS: The spatial location of granule fusion was identified by live-cell two-photon imaging of mouse pancreatic beta cells within intact islets, using sulforhodamine B labelling. Three-dimensional (3D) immunofluorescence of pancreatic slices was used to identify the location of proteins associated with neuronal synapses. RESULTS: We demonstrated an asymmetric, non-random, distribution of sites of insulin granule fusion in response to glucose and focal targeting of insulin granule secretion to the beta cell membrane facing the vasculature. 3D immunofluorescence of islets showed that structural proteins, such as liprin, piccolo and Rab2-interacting molecule, normally associated with neuronal presynaptic targeting, were present in beta cells and enriched at the vascular face. In contrast, we found that syntaxin 1A and synaptosomal-associated protein 25 kDa (SNAP25) were relatively evenly distributed across the beta cells. CONCLUSIONS/INTERPRETATION: Our results show that beta cells in situ, within intact islets, are polarised and target insulin secretion. This evidence for an 'endocrine synapse' has wide implications for our understanding of stimulus-secretion coupling in healthy islets and in disease.


Asunto(s)
Células Secretoras de Insulina/metabolismo , Insulina/metabolismo , Sinapsis/metabolismo , Animales , Exocitosis/efectos de los fármacos , Exocitosis/fisiología , Glucosa/farmacología , Secreción de Insulina , Células Secretoras de Insulina/efectos de los fármacos , Ratones , Sinapsis/efectos de los fármacos , Proteína 25 Asociada a Sinaptosomas/metabolismo
4.
Artículo en Inglés | MEDLINE | ID: mdl-38984538

RESUMEN

Tissue tension encompasses the mechanical forces exerted on solid tissues within animal bodies, originating from various sources such as cellular contractility, interactions with neighboring cells and the extracellular matrix. Emerging evidence indicates that an imbalance in such forces can influence structural organization, homeostasis, and potentially contribute to disease. For instance, heightened tissue tension can impede apical cell extrusion, leading to the retention of apoptotic or transformed cells. In this study, we investigate the potential role of adenomatous polyposis coli (APC) in modulating tissue tension. Our findings reveal that expression of an APC truncation mutant elevates epithelial tension via the RhoA/ROCK pathway. This elevation induces morphological alterations and hampers apoptotic cell extrusion in cultured epithelial cells and organoids, both of which could be mitigated by pharmacologically restoring the tissue tension. This raises the possibility that APC mutations may exert pathogenetic effects by altering tissue mechanics.

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