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1.
EMBO Rep ; 25(7): 3040-3063, 2024 Jul.
Artículo en Inglés | MEDLINE | ID: mdl-38849673

RESUMEN

Polarized vesicular trafficking directs specific receptors and ion channels to cilia, but the underlying mechanisms are poorly understood. Here we describe a role for DLG1, a core component of the Scribble polarity complex, in regulating ciliary protein trafficking in kidney epithelial cells. Conditional knockout of Dlg1 in mouse kidney causes ciliary elongation and cystogenesis, and cell-based proximity labeling proteomics and fluorescence microscopy show alterations in the ciliary proteome upon loss of DLG1. Specifically, the retromer-associated protein SDCCAG3, IFT20, and polycystin-2 (PC2) are reduced in the cilia of DLG1-deficient cells compared to control cells. This phenotype is recapitulated in vivo and rescuable by re-expression of wild-type DLG1, but not a Congenital Anomalies of the Kidney and Urinary Tract (CAKUT)-associated DLG1 variant, p.T489R. Finally, biochemical approaches and Alpha Fold modelling suggest that SDCCAG3 and IFT20 form a complex that associates, at least indirectly, with DLG1. Our work identifies a key role for DLG1 in regulating ciliary protein composition and suggests that ciliary dysfunction of the p.T489R DLG1 variant may contribute to CAKUT.


Asunto(s)
Proteínas Portadoras , Cilios , Homólogo 1 de la Proteína Discs Large , Canales Catiónicos TRPP , Animales , Cilios/metabolismo , Canales Catiónicos TRPP/metabolismo , Canales Catiónicos TRPP/genética , Ratones , Homólogo 1 de la Proteína Discs Large/metabolismo , Proteínas Portadoras/metabolismo , Proteínas Portadoras/genética , Humanos , Transporte de Proteínas , Ratones Noqueados , Riñón/metabolismo , Células Epiteliales/metabolismo , Unión Proteica , Reflujo Vesicoureteral/metabolismo , Reflujo Vesicoureteral/genética , Proteínas de la Membrana/metabolismo , Proteínas de la Membrana/genética , Anomalías Urogenitales
2.
EMBO Rep ; 24(5): e56134, 2023 05 04.
Artículo en Inglés | MEDLINE | ID: mdl-36929574

RESUMEN

Multisubunit Tethering Complexes (MTCs) are a set of conserved protein complexes that tether vesicles at the acceptor membrane. Interactions with other components of the trafficking machinery regulate MTCs through mechanisms that are partially understood. Here, we systematically investigate the interactome that regulates MTCs. We report that P4-ATPases, a family of lipid flippases, interact with MTCs that participate in the anterograde and retrograde transport at the Golgi, such as TRAPPIII. We use the P4-ATPase Drs2 as a paradigm to investigate the mechanism and biological relevance of this interplay during transport of Atg9 vesicles. Binding of Trs85, the sole-specific subunit of TRAPPIII, to the N-terminal tail of Drs2 stabilizes TRAPPIII on membranes loaded with Atg9 and is required for Atg9 delivery during selective autophagy, a role that is independent of P4-ATPase canonical functions. This mechanism requires a conserved I(S/R)TTK motif that also mediates the interaction of the P4-ATPases Dnf1 and Dnf2 with MTCs, suggesting a broader role of P4-ATPases in MTC regulation.


Asunto(s)
Proteínas de Saccharomyces cerevisiae , Saccharomyces cerevisiae , Saccharomyces cerevisiae/genética , Saccharomyces cerevisiae/metabolismo , Adenosina Trifosfatasas/genética , Adenosina Trifosfatasas/metabolismo , Proteínas de Saccharomyces cerevisiae/metabolismo , Proteínas Relacionadas con la Autofagia/genética , Proteínas Relacionadas con la Autofagia/metabolismo , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo , ATPasas Transportadoras de Calcio/química , ATPasas Transportadoras de Calcio/metabolismo , Transportadoras de Casetes de Unión a ATP/metabolismo
3.
Proc Natl Acad Sci U S A ; 116(27): 13680-13689, 2019 07 02.
Artículo en Inglés | MEDLINE | ID: mdl-31196955

RESUMEN

The physiological activity of proteins is often studied with loss-of-function genetic approaches, but the corresponding phenotypes develop slowly and can be confounding. Photopharmacology allows direct, fast, and reversible control of endogenous protein activity, with spatiotemporal resolution set by the illumination method. Here, we combine a photoswitchable allosteric modulator (alloswitch) and 2-photon excitation using pulsed near-infrared lasers to reversibly silence metabotropic glutamate 5 (mGlu5) receptor activity in intact brain tissue. Endogenous receptors can be photoactivated in neurons and astrocytes with pharmacological selectivity and with an axial resolution between 5 and 10 µm. Thus, 2-photon pharmacology using alloswitch allows investigating mGlu5-dependent processes in wild-type animals, including synaptic formation and plasticity, and signaling pathways from intracellular organelles.


Asunto(s)
Encéfalo/fisiología , Optogenética/métodos , Fotones , Receptores de Superficie Celular/metabolismo , Animales , Astrocitos/metabolismo , Astrocitos/fisiología , Encéfalo/metabolismo , Calcio/metabolismo , Neuronas/metabolismo , Neuronas/fisiología , Ratas , Ratas Sprague-Dawley , Receptor del Glutamato Metabotropico 5/metabolismo , Receptor del Glutamato Metabotropico 5/fisiología , Receptores de Superficie Celular/fisiología
4.
EMBO J ; 36(1): 25-41, 2017 01 04.
Artículo en Inglés | MEDLINE | ID: mdl-27834222

RESUMEN

The principles underlying the biomechanics of morphogenesis are largely unknown. Epiboly is an essential embryonic event in which three tissues coordinate to direct the expansion of the blastoderm. How and where forces are generated during epiboly, and how these are globally coupled remains elusive. Here we developed a method, hydrodynamic regression (HR), to infer 3D pressure fields, mechanical power, and cortical surface tension profiles. HR is based on velocity measurements retrieved from 2D+T microscopy and their hydrodynamic modeling. We applied HR to identify biomechanically active structures and changes in cortex local tension during epiboly in zebrafish. Based on our results, we propose a novel physical description for epiboly, where tissue movements are directed by a polarized gradient of cortical tension. We found that this gradient relies on local contractile forces at the cortex, differences in elastic properties between cortex components and the passive transmission of forces within the yolk cell. All in all, our work identifies a novel way to physically regulate concerted cellular movements that might be instrumental for the mechanical control of many morphogenetic processes.


Asunto(s)
Fenómenos Biomecánicos , Blastodermo/crecimiento & desarrollo , Pez Cebra/embriología , Animales , Movimiento
5.
Bioinformatics ; 36(8): 2634-2635, 2020 04 15.
Artículo en Inglés | MEDLINE | ID: mdl-31860062

RESUMEN

SUMMARY: Open source software such as ImageJ and CellProfiler greatly simplified the quantitative analysis of microscopy images but their applicability is limited by the size, dimensionality and complexity of the images under study. In contrast, software optimized for the needs of specific research projects can overcome these limitations, but they may be harder to find, set up and customize to different needs. Overall, the analysis of large, complex, microscopy images is hence still a critical bottleneck for many Life Scientists. We introduce LOBSTER (Little Objects Segmentation and Tracking Environment), an environment designed to help scientists design and customize image analysis workflows to accurately characterize biological objects from a broad range of fluorescence microscopy images, including large images exceeding workstation main memory. LOBSTER comes with a starting set of over 75 sample image analysis workflows and associated images stemming from state-of-the-art image-based research projects. AVAILABILITY AND IMPLEMENTATION: LOBSTER requires MATLAB (version ≥ 2015a), MATLAB Image processing toolbox, and MATLAB statistics and machine learning toolbox. Code source, online tutorials, video demonstrations, documentation and sample images are freely available from: https://sebastients.github.io. SUPPLEMENTARY INFORMATION: Supplementary data are available at Bioinformatics online.


Asunto(s)
Nephropidae , Flujo de Trabajo , Animales , Procesamiento de Imagen Asistido por Computador , Microscopía Fluorescente , Programas Informáticos
6.
Small ; 13(41)2017 11.
Artículo en Inglés | MEDLINE | ID: mdl-28922574

RESUMEN

The adsorption of serum proteins, leading to the formation of a biomolecular corona, is a key determinant of the biological identity of nanoparticles in vivo. Therefore, gaining knowledge on the formation, composition, and temporal evolution of the corona is of utmost importance for the development of nanoparticle-based therapies. Here, it is shown that the use of super-resolution optical microscopy enables the imaging of the protein corona on mesoporous silica nanoparticles with single protein sensitivity. Particle-by-particle quantification reveals a significant heterogeneity in protein absorption under native conditions. Moreover, the diversity of the corona evolves over time depending on the surface chemistry and degradability of the particles. This paper investigates the consequences of protein adsorption for specific cell targeting by antibody-functionalized nanoparticles providing a detailed understanding of corona-activity relations. The methodology is widely applicable to a variety of nanostructures and complements the existing ensemble approaches for protein corona study.


Asunto(s)
Microscopía/métodos , Nanopartículas/química , Corona de Proteínas/química , Adsorción , Animales , Bovinos , Cinética , Porosidad , Albúmina Sérica Bovina/química , Dióxido de Silicio/química , Propiedades de Superficie , Factores de Tiempo
7.
Nat Nanotechnol ; 19(4): 554-564, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38225356

RESUMEN

Bladder cancer treatment via intravesical drug administration achieves reasonable survival rates but suffers from low therapeutic efficacy. To address the latter, self-propelled nanoparticles or nanobots have been proposed, taking advantage of their enhanced diffusion and mixing capabilities in urine when compared with conventional drugs or passive nanoparticles. However, the translational capabilities of nanobots in treating bladder cancer are underexplored. Here, we tested radiolabelled mesoporous silica-based urease-powered nanobots in an orthotopic mouse model of bladder cancer. In vivo and ex vivo results demonstrated enhanced nanobot accumulation at the tumour site, with an eightfold increase revealed by positron emission tomography in vivo. Label-free optical contrast based on polarization-dependent scattered light-sheet microscopy of cleared bladders confirmed tumour penetration by nanobots ex vivo. Treating tumour-bearing mice with intravesically administered radio-iodinated nanobots for radionuclide therapy resulted in a tumour size reduction of about 90%, positioning nanobots as efficient delivery nanosystems for bladder cancer therapy.


Asunto(s)
Ureasa , Neoplasias de la Vejiga Urinaria , Ratones , Animales , Neoplasias de la Vejiga Urinaria/diagnóstico por imagen , Neoplasias de la Vejiga Urinaria/tratamiento farmacológico , Administración Intravesical , Radioisótopos/uso terapéutico
8.
bioRxiv ; 2024 Mar 14.
Artículo en Inglés | MEDLINE | ID: mdl-37987012

RESUMEN

Polarized vesicular trafficking directs specific receptors and ion channels to cilia, but the underlying mechanisms are poorly understood. Here we describe a role for DLG1, a core component of the Scribble polarity complex, in regulating ciliary protein trafficking in kidney epithelial cells. Conditional knockout of Dlg1 in mouse kidney caused ciliary elongation and cystogenesis, and cell-based proximity labelling proteomics and fluorescence microscopy showed alterations in the ciliary proteome upon loss of DLG1. Specifically, the retromer-associated protein SDCCAG3, IFT20 and polycystin-2 (PC2) were reduced in cilia of DLG1 deficient cells compared to control cells. This phenotype was recapitulated in vivo and rescuable by re-expression of wildtype DLG1, but not a Congenital Anomalies of the Kidney and Urinary Tract (CAKUT)-associated DLG1 variant, p.T489R. Finally, biochemical approaches and Alpha Fold modelling suggested that SDCCAG3 and IFT20 form a complex that associates, at least indirectly, with DLG1. Our work identifies a key role for DLG1 in regulating ciliary protein composition and suggests that ciliary dysfunction of the p.T489R DLG1 variant may contribute to CAKUT.

9.
Angew Chem Int Ed Engl ; 52(30): 7704-8, 2013 Jul 22.
Artículo en Inglés | MEDLINE | ID: mdl-23775788

RESUMEN

Control of membrane traffic: Photoswitchable inhibitors of protein-protein interactions were applied to photoregulate clathrin-mediated endocytosis (CME) in living cells. Traffic light (TL) peptides acting as "stop" and "go" signals for membrane traffic can be used to dissect the role of CME in receptor internalization and in cell growth, division, and differentiation.


Asunto(s)
Clatrina/farmacología , Endocitosis/fisiología , Luz , Fragmentos de Péptidos/metabolismo , Mapas de Interacción de Proteínas/efectos de los fármacos , Endocitosis/efectos de los fármacos , Células HeLa , Humanos , Transporte de Proteínas , Transferrina/metabolismo
10.
Adv Healthc Mater ; 11(22): e2201172, 2022 11.
Artículo en Inglés | MEDLINE | ID: mdl-36073021

RESUMEN

Gradients of signaling pathways within the intestinal stem cell (ISC) niche are instrumental for cellular compartmentalization and tissue function, yet how are they sensed by the epithelium is still not fully understood. Here a new in vitro model of the small intestine based on primary epithelial cells (i), apically accessible (ii), with native tissue mechanical properties and controlled mesh size (iii), 3D villus-like architecture (iv), and precisely controlled biomolecular gradients of the ISC niche (v) is presented. Biochemical gradients are formed through hydrogel-based scaffolds by free diffusion from a source to a sink chamber. To confirm the establishment of spatiotemporally controlled gradients, light-sheet fluorescence microscopy and in-silico modeling are employed. The ISC niche biochemical gradients coming from the stroma and applied along the villus axis lead to the in vivo-like compartmentalization of the proliferative and differentiated cells, while changing the composition and concentration of the biochemical factors affects the cellular organization along the villus axis. This novel 3D in vitro intestinal model derived from organoids recapitulates both the villus-like architecture and the gradients of ISC biochemical factors, thus opening the possibility to study in vitro the nature of such gradients and the resulting cellular response.


Asunto(s)
Mucosa Intestinal , Organoides , Mucosa Intestinal/metabolismo , Organoides/metabolismo , Intestinos , Intestino Delgado , Diferenciación Celular/fisiología
11.
Curr Biol ; 31(23): 5261-5273.e4, 2021 12 06.
Artículo en Inglés | MEDLINE | ID: mdl-34666006

RESUMEN

Epithelia grow and shape into functional structures during organogenesis. Although most of the focus on organogenesis has been drawn to the building of biological structures, the disassembly of pre-existing structures is also an important event to reach a functional adult organ. Examples of disassembly processes include the regression of the Müllerian or Wolffian ducts during gonad development and mammary gland involution during the post-lactational period in adult females. To date, it is unclear how organ disassembly is controlled at the cellular level. Here, we follow the Drosophila larval trachea through metamorphosis and show that its disassembly is a hormone-driven and precisely orchestrated process. It occurs in two phases: first, remodeling of the apical extracellular matrix (aECM), mediated by matrix metalloproteases and independent of the actomyosin cytoskeleton, results in a progressive shortening of the entire trachea and a nuclear-to-cytoplasmic relocalization of the Hippo effector Yorkie (Yki). Second, a decreased transcription of the Yki target, Diap1, in the posterior metameres and the activation of caspases result in the apoptotic loss of the posterior half of the trachea while the anterior half escapes cell death. Thus, our work unravels a mechanism by which hormone-driven ECM remodeling controls sequential tissue shortening and apoptotic cell removal through the transcriptional activity of Yki, leading to organ disassembly during animal development.


Asunto(s)
Proteínas de Drosophila , Animales , Apoptosis , Drosophila , Proteínas de Drosophila/genética , Proteínas de Drosophila/metabolismo , Drosophila melanogaster/fisiología , Matriz Extracelular/metabolismo , Femenino , Hormonas/metabolismo , Péptidos y Proteínas de Señalización Intracelular/metabolismo , Proteínas Nucleares/metabolismo , Proteínas Serina-Treonina Quinasas , Transducción de Señal/fisiología , Transactivadores/metabolismo
12.
Front Bioinform ; 1: 627626, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-36303768

RESUMEN

We developed AutoscanJ, a suite of ImageJ scripts enabling to image targets of interest by automatically driving a motorized microscope at the corresponding locations. For live samples, our software can sequentially detect biological events from their onset and further image them at high resolution, an action that would be impractical by user operation. For fixed samples, the software can dramatically reduce the amount of data acquired and the acquisition duration in situations where statistically few targets of interest are observed per field of view. AutoScanJ is compatible with motorized fluorescence microscopes controlled by Leica LAS AF/X or Micro-Manager. The software is straightforward to set up and new custom image analysis workflows to detect targets of interest can be simply implemented and shared with minimal efforts as independent ImageJ macro functions. We illustrate five different application scenarios with the system ranging from samples fixed on micropatterned surfaces to live cells undergoing several rounds of division. The target detection functions for these applications are provided and can be used as a starting point and a source of inspiration for new applications. Overall, AutoScanJ helps to optimize microscope usage by autonomous operation, and it opens up new experimental avenues by enabling the real-time detection and selective imaging of transient events in live microscopy.

13.
F1000Res ; 10: 320, 2021.
Artículo en Inglés | MEDLINE | ID: mdl-34136134

RESUMEN

Workflows are the keystone of bioimage analysis, and the NEUBIAS (Network of European BioImage AnalystS) community is trying to gather the actors of this field and organize the information around them.  One of its most recent outputs is the opening of the F1000Research NEUBIAS gateway, whose main objective is to offer a channel of publication for bioimage analysis workflows and associated resources. In this paper we want to express some personal opinions and recommendations related to finding, handling and developing bioimage analysis workflows.  The emergence of "big data" in bioimaging and resource-intensive analysis algorithms make local data storage and computing solutions a limiting factor. At the same time, the need for data sharing with collaborators and a general shift towards remote work, have created new challenges and avenues for the execution and sharing of bioimage analysis workflows. These challenges are to reproducibly run workflows in remote environments, in particular when their components come from different software packages, but also to document them and link their parameters and results by following the FAIR principles (Findable, Accessible, Interoperable, Reusable) to foster open and reproducible science. In this opinion paper, we focus on giving some directions to the reader to tackle these challenges and navigate through this complex ecosystem, in order to find and use workflows, and to compare workflows addressing the same problem. We also discuss tools to run workflows in the cloud and on High Performance Computing resources, and suggest ways to make these workflows FAIR.


Asunto(s)
Biología Computacional , Ecosistema , Algoritmos , Almacenamiento y Recuperación de la Información , Flujo de Trabajo
14.
Artículo en Inglés | MEDLINE | ID: mdl-32318564

RESUMEN

While conventional cell culture methodologies have relied on flat, two-dimensional cell monolayers, three-dimensional engineered tissues are becoming increasingly popular. Often, engineered tissues can mimic the complex architecture of native tissues, leading to advancements in reproducing physiological functional properties. In particular, engineered intestinal tissues often use hydrogels to mimic villi structures. These finger-like protrusions of a few hundred microns in height have a well-defined topography and curvature. Here, we examined the cell morphological response to these villus-like microstructures at single-cell resolution using a novel embedding method that allows for the histological processing of these delicate hydrogel structures. We demonstrated that by using photopolymerisable poly(ethylene) glycol as an embedding medium, the villus-like microstructures were successfully preserved after sectioning with vibratome or cryotome. Moreover, high-resolution imaging of these sections revealed that cell morphology, nuclei orientation, and the expression of epithelial polarization markers were spatially encoded along the vertical axis of the villus-like microstructures and that this cell morphological response was dramatically affected by the substrate curvature. These findings, which are in good agreement with the data reported for in vivo experiments on the native tissue, are likely to be the origin of more physiologically relevant barrier properties of engineered intestinal tissues when compared with standard monolayer cultures. By showcasing this example, we anticipate that the novel histological embedding procedure will have a positive impact on the study of epithelial cell behavior on three-dimensional substrates in both physiological and pathological situations.

15.
F1000Res ; 9: 1308, 2020.
Artículo en Inglés | MEDLINE | ID: mdl-33763206

RESUMEN

We introduce MosaicExplorerJ, an ImageJ macro to stitch 3D tiles from terabyte-size microscopy datasets. As opposed to existing software, stitching does not require any prior information on the actual positions of the tiles, sample fiducials, or conversion of raw TIFF images, and the stitched images can be explored instantly. MosaicExplorerJ was specifically designed to process lightsheet microscopy datasets from optically cleared samples. It can handle multiple fluorescence channels, dual-side lightsheet illumination and dual-side camera detection.


Asunto(s)
Procesamiento de Imagen Asistido por Computador , Microscopía , Programas Informáticos
16.
Patterns (N Y) ; 1(3): 100040, 2020 Jun 12.
Artículo en Inglés | MEDLINE | ID: mdl-33205108

RESUMEN

Image analysis is key to extracting quantitative information from scientific microscopy images, but the methods involved are now often so refined that they can no longer be unambiguously described by written protocols. We introduce BIAFLOWS, an open-source web tool enabling to reproducibly deploy and benchmark bioimage analysis workflows coming from any software ecosystem. A curated instance of BIAFLOWS populated with 34 image analysis workflows and 15 microscopy image datasets recapitulating common bioimage analysis problems is available online. The workflows can be launched and assessed remotely by comparing their performance visually and according to standard benchmark metrics. We illustrated these features by comparing seven nuclei segmentation workflows, including deep-learning methods. BIAFLOWS enables to benchmark and share bioimage analysis workflows, hence safeguarding research results and promoting high-quality standards in image analysis. The platform is thoroughly documented and ready to gather annotated microscopy datasets and workflows contributed by the bioimaging community.

17.
Methods Mol Biol ; 2040: 385-395, 2019.
Artículo en Inglés | MEDLINE | ID: mdl-31432489

RESUMEN

With rapidly advancing microscopy techniques for live cell imaging, we are now able to image groups of migrating cells in many different in vivo contexts. However, as the resulting data sets become larger and more complex, following the behavior of these cells and extracting accurate quantitative data become increasingly challenging. Here we present a protocol for carrying out accurate automated tracking of cells moving over time in 3D, implemented as custom-built macro scripts for ImageJ. As opposed to many generic tracking workflows, the workflow we propose here accounts for the overall movement of the embryo, allows the selection of subgroups of cells, and includes a step for the complete assisted review of all 3D tracks. Furthermore, it is easy to add new custom track measurement to the code provided. Together, these present a reliable method for the precise tracking of cells, from which distinct subsets of cells can be selected from within a population.


Asunto(s)
Rastreo Celular/métodos , Imagenología Tridimensional/métodos , Microscopía Intravital/métodos , Imagen de Lapso de Tiempo/métodos , Algoritmos , Animales , Movimiento Celular , Rastreo Celular/instrumentación , Drosophila melanogaster , Embrión no Mamífero/diagnóstico por imagen , Imagenología Tridimensional/instrumentación , Microscopía Intravital/instrumentación , Microscopía Fluorescente/instrumentación , Microscopía Fluorescente/métodos , Reproducibilidad de los Resultados , Programas Informáticos , Imagen de Lapso de Tiempo/instrumentación
18.
Sci Rep ; 9(1): 10140, 2019 07 12.
Artículo en Inglés | MEDLINE | ID: mdl-31300688

RESUMEN

Intestinal organoids have emerged as a powerful in vitro tool for studying intestinal biology due to their resemblance to in vivo tissue at the structural and functional levels. However, their sphere-like geometry prevents access to the apical side of the epithelium, making them unsuitable for standard functional assays designed for flat cell monolayers. Here, we describe a simple method for the formation of epithelial monolayers that recapitulates the in vivo-like cell type composition and organization and that is suitable for functional tissue barrier assays. In our approach, epithelial monolayer spreading is driven by the substrate stiffness, while tissue barrier function is achieved by the basolateral delivery of medium enriched with stem cell niche and myofibroblast-derived factors. These monolayers contain major intestinal epithelial cell types organized into proliferating crypt-like domains and differentiated villus-like regions, closely resembling the in vivo cell distribution. As a unique characteristic, these epithelial monolayers form functional epithelial barriers with an accessible apical surface and physiologically relevant transepithelial electrical resistance values. Our technology offers an up-to-date and novel culture method for intestinal epithelium, providing an in vivo-like cell composition and distribution in a tissue culture format compatible with high-throughput drug absorption or microbe-epithelium interaction studies.


Asunto(s)
Mucosa Intestinal/citología , Mucosa Intestinal/fisiología , Intestino Delgado/citología , Animales , Técnicas de Cultivo de Célula/instrumentación , Técnicas de Cultivo de Célula/métodos , Proliferación Celular , Colágeno , Medios de Cultivo Condicionados/farmacología , Combinación de Medicamentos , Proteínas Fluorescentes Verdes/genética , Laminina , Membranas Artificiales , Organoides , Proteoglicanos , Proteína Wnt3A/metabolismo
19.
Sci Rep ; 9(1): 18822, 2019 Dec 06.
Artículo en Inglés | MEDLINE | ID: mdl-31806863

RESUMEN

An amendment to this paper has been published and can be accessed via a link at the top of the paper.

20.
Eur J Cell Biol ; 97(4): 243-256, 2018 May.
Artículo en Inglés | MEDLINE | ID: mdl-29573831

RESUMEN

Tissues and organs undergo extensive remodelling to reach their final morphology and physiological activity. The genetic programs underlying tissue formation are well studied, but less is known about how this formation is influenced by extrinsic forces derived from other concomitant morphogenetic events. Here we address this question in Drosophila melanogaster. We analyse tissue organisation in the embryonic epidermis at stage 10 by computational tissue segmentation methods to provide a quantitative description of packing. We find that the epidermis adopts different organisations along the dorso-ventral axis that correlate with differences in cell density. We analyse the contribution of three morphogenetic events that take place right before or concomitant to this period of embryogenesis, neuroblast delamination, asynchronous postblastoderm cell divisions and germ band extension, and we find that they all exert an influence on the packing of the epidermis. We previously described that the apical determinant Crumbs accumulates differentially in the epidermis along the dorso-ventral axis. Here we find that this differential accumulation of Crumbs correlates with the differential tissue packing. Perturbation of the three mentioned morphogenetic events also modulate Crumbs differential accumulation, suggesting that Crb could act as a read-out of tissue organisation. We also previously showed that Crb plays a role in regulating cell architecture. Now we find that it is also required for proper packing of the embryonic epidermis. In summary, here we uncover an intimate relationship between morphogenetic events and cell packing within a tissue that is dependent on surrounding cell density. Furthermore we find that this morphogenetically-regulated tissue packing modulates the key cell polarity protein Crumbs, which in turn is required for tissue packing, suggesting that it may participate in the molecular mechanism/s underlying the described tissue organisation.


Asunto(s)
Drosophila melanogaster/embriología , Epidermis/embriología , Morfogénesis , Animales , División Celular , Linaje de la Célula , Proteínas de Drosophila/genética , Proteínas de Drosophila/metabolismo , Drosophila melanogaster/genética , Células Epidérmicas , Epidermis/metabolismo , Proteínas de la Membrana/genética , Proteínas de la Membrana/metabolismo
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