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Hecht, G.

Publications and source records attributed to Hecht, G..

2 recordsLinked to original sources

Spef1 is a microvillar component that limits apical actomyosin contractility and preserves intestinal barrier function

Epithelial sheet integrity is established by adherent contacts that form between cells, at the interface between their apical and basolateral domains. Although cell contacts are reinforced by actomyosin contractility, which generates tension that propagates across the apical surface. How epithelial cells tune tension to reinforce junctions without compromising their physical barrier properties remains unclear. Herein, we report that Sperm Flagellar 1 (Spef1) is a microvillar component enriched in the apical domain and terminal web of enterocytes that prevents actomyosin hypercontractility. Loss-of-function in Caco-2 BBE cells showed that Spef1 depletion induced invaginations of the apical domain at tricellular contacts, with a redistribution of the tricellular and tight junction components. These changes, which were paralleled by increased activity of NM2A across the apical surface, compromised intestinal barrier function. These findings highlight Spef1 as a microvillar resident that tunes actomyosin contractility across the apical surface, to a level appropriate for junctional reinforcement and maintenance of epithelial function.

cell biology↗

Trends in mosquito species distribution modeling: insights for vector surveillance and disease control

Species distribution modeling (SDM) has become an increasingly common approach to explore questions about ecology, geography, outbreak risk, and global change as they relate to infectious disease vectors. Here, we conducted a systematic review of the scientific literature, screening 563 abstracts and identifying 204 studies that used SDMs to produce distribution estimates for mosquito species. While the number of studies employing SDM methods has increased markedly over the past decade, the overwhelming majority used a single method (MaxEnt) and focused on human infectious disease vectors or their close relatives. The majority of regional models were developed for areas in Africa and Asia, while more localized modeling efforts were most common for North America and Europe. Findings from this study highlight gaps in taxonomic, geographic, and methodological foci of current SDM literature for mosquitoes that can guide future efforts to study the geography of mosquito-borne disease risk.

ecology↗