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1.
Cell Rep Med ; 3(1): 100497, 2022 01 18.
Artigo em Inglês | MEDLINE | ID: mdl-35106509

RESUMO

The blood-brain barrier (BBB) restricts clinically relevant accumulation of many therapeutics in the CNS. Low-dose methamphetamine (METH) induces fluid-phase transcytosis across BBB endothelial cells in vitro and could be used to enhance CNS drug delivery. Here, we show that low-dose METH induces significant BBB leakage in rodents ex vivo and in vivo. Notably, METH leaves tight junctions intact and induces transient leakage via caveolar transport, which is suppressed at 4°C and in caveolin-1 (CAV1) knockout mice. METH enhances brain penetration of both small therapeutic molecules, such as doxorubicin (DOX), and large proteins. Lastly, METH improves the therapeutic efficacy of DOX in a mouse model of glioblastoma, as measured by a 25% increase in median survival time and a significant reduction in satellite lesions. Collectively, our data indicate that caveolar transport at the adult BBB is agonist inducible and that METH can enhance drug delivery to the CNS.


Assuntos
Barreira Hematoencefálica/metabolismo , Cavéolas/metabolismo , Metanfetamina/farmacologia , Preparações Farmacêuticas/metabolismo , Animais , Transporte Biológico/efeitos dos fármacos , Barreira Hematoencefálica/efeitos dos fármacos , Barreira Hematoencefálica/ultraestrutura , Cavéolas/efeitos dos fármacos , Cavéolas/ultraestrutura , Doxorrubicina/farmacologia , Células Endoteliais/efeitos dos fármacos , Células Endoteliais/metabolismo , Células Endoteliais/ultraestrutura , Feminino , Glioma/patologia , Camundongos Endogâmicos C57BL , Camundongos Knockout , Ratos Wistar
2.
mBio ; 11(1)2020 01 21.
Artigo em Inglês | MEDLINE | ID: mdl-31964732

RESUMO

Listeria monocytogenes moves from one cell to another using actin-rich membrane protrusions that propel the bacterium toward neighboring cells. Despite cholesterol being required for this transfer process, the precise host internalization mechanism remains elusive. Here, we show that caveolin endocytosis is key to this event as bacterial cell-to-cell transfer is severely impaired when cells are depleted of caveolin-1. Only a subset of additional caveolar components (cavin-2 and EHD2) are present at sites of bacterial transfer, and although clathrin and the clathrin-associated proteins Eps15 and AP2 are absent from the bacterial invaginations, efficient L. monocytogenes spreading requires the clathrin-interacting protein epsin-1. We also directly demonstrated that isolated L. monocytogenes membrane protrusions can trigger the recruitment of caveolar proteins in a neighboring cell. The engulfment of these bacterial and cytoskeletal structures through a caveolin-based mechanism demonstrates that the classical nanometer-scale theoretical size limit for this internalization pathway is exceeded by these bacterial pathogens.IMPORTANCEListeria monocytogenes moves from one cell to another as it disseminates within tissues. This bacterial transfer process depends on the host actin cytoskeleton as the bacterium forms motile actin-rich membranous protrusions that propel the bacteria into neighboring cells, thus forming corresponding membrane invaginations. Here, we examine these membrane invaginations and demonstrate that caveolin-1-based endocytosis is crucial for efficient bacterial cell-to-cell spreading. We show that only a subset of caveolin-associated proteins (cavin-2 and EHD2) are involved in this process. Despite the absence of clathrin at the invaginations, the classical clathrin-associated protein epsin-1 is also required for efficient bacterial spreading. Using isolated L. monocytogenes protrusions added onto naive host cells, we demonstrate that actin-based propulsion is dispensable for caveolin-1 endocytosis as the presence of the protrusion/invagination interaction alone triggers caveolin-1 recruitment in the recipient cells. Finally, we provide a model of how this caveolin-1-based internalization event can exceed the theoretical size limit for this endocytic pathway.


Assuntos
Caveolina 1/metabolismo , Interações Hospedeiro-Patógeno , Listeria monocytogenes/fisiologia , Listeriose/metabolismo , Listeriose/microbiologia , Animais , Biomarcadores , Linhagem Celular , Imunofluorescência , Humanos
3.
Mol Biol Cell ; 29(22): 2622-2631, 2018 11 01.
Artigo em Inglês | MEDLINE | ID: mdl-30188792

RESUMO

Centrosomes are the major microtubule-nucleating and microtubule-organizing centers of cells and play crucial roles in microtubule anchoring, organelle positioning, and ciliogenesis. At the centrosome core lies a tightly associated or "engaged" mother-daughter centriole pair.  During mitotic exit, removal of centrosomal proteins pericentrin and Cep215 promotes "disengagement" by the dissolution of intercentriolar linkers, ensuring a single centriole duplication event per cell cycle.  Herein, we explore a new mechanism involving vesicular trafficking for the removal of centrosomal Cep215. Using small interfering RNA and CRISPR/Cas9 gene-edited cells, we show that the endocytic protein EHD1 regulates Cep215 transport from centrosomes to the spindle midbody, thus facilitating disengagement and duplication. We demonstrate that EHD1 and Cep215 interact and show that Cep215 displays increased localization to vesicles containing EHD1 during mitosis. Moreover, Cep215-containing vesicles are positive for internalized transferrin, demonstrating their endocytic origin. Thus, we describe a novel relationship between endocytic trafficking and the centrosome cycle, whereby vesicles of endocytic origin are used to remove key regulatory proteins from centrosomes to control centriole duplication.


Assuntos
Centríolos/metabolismo , Vesículas Citoplasmáticas/metabolismo , Antígenos/metabolismo , Proteínas de Ciclo Celular , Linhagem Celular Tumoral , Citocinese , Endocitose , Humanos , Peptídeos e Proteínas de Sinalização Intracelular/metabolismo , Proteínas do Tecido Nervoso/metabolismo , Transporte Proteico , Transferrina/metabolismo , Proteínas de Transporte Vesicular/metabolismo
4.
PLoS One ; 13(5): e0197401, 2018.
Artigo em Inglês | MEDLINE | ID: mdl-29787576

RESUMO

Sphingosine-1-phosphate (S1P) is an important lipid signalling molecule. S1P is produced via intracellular phosphorylation of sphingosine (Sph). As a lipid with a single fatty alkyl chain, Sph may diffuse rapidly between cellular membranes and through the aqueous phase. Here, we show that the absence of microdomains generated by multimeric assemblies of flotillin proteins results in reduced S1P levels. Cellular phenotypes of flotillin knockout mice, including changes in histone acetylation and expression of Isg15, are recapitulated when S1P synthesis is perturbed. Flotillins bind to Sph in vitro and increase recruitment of Sph to membranes in cells. Ectopic re-localisation of flotillins within the cell causes concomitant redistribution of Sph. The data suggest that flotillins may directly or indirectly regulate cellular sphingolipid distribution and signalling.


Assuntos
Membrana Celular/química , Lisofosfolipídeos/química , Proteínas de Membrana/fisiologia , Esfingosina/análogos & derivados , Esfingosina/química , Animais , Cromatografia em Camada Fina , Citocinas/genética , Citoplasma/química , Células HeLa , Humanos , Lipídeos/química , Espectrometria de Massas , Proteínas de Membrana/genética , Camundongos , Camundongos Knockout , Mitocôndrias/química , Fenótipo , Fosforilação , RNA Interferente Pequeno/metabolismo , Transdução de Sinais , Esfingolipídeos/química , Ubiquitinas/genética
5.
Curr Biol ; 27(19): 2951-2962.e5, 2017 Oct 09.
Artigo em Inglês | MEDLINE | ID: mdl-28943089

RESUMO

Caveolae introduce flask-shaped convolutions into the plasma membrane and help to protect the plasma membrane from damage under stretch forces. The protein components that form the bulb of caveolae are increasingly well characterized, but less is known about the contribution of proteins that localize to the constricted neck. Here we make extensive use of multiple CRISPR/Cas9-generated gene knockout and knockin cell lines to investigate the role of Eps15 Homology Domain (EHD) proteins at the neck of caveolae. We show that EHD1, EHD2, and EHD4 are recruited to caveolae. Recruitment of the other EHDs increases markedly when EHD2, which has been previously detected at caveolae, is absent. Construction of knockout cell lines lacking EHDs 1, 2, and 4 confirms this apparent functional redundancy. Two striking sets of phenotypes are observed in EHD1,2,4 knockout cells: (1) the characteristic clustering of caveolae into higher-order assemblies is absent; and (2) when the EHD1,2,4 knockout cells are subjected to prolonged cycles of stretch forces, caveolae are destabilized and the plasma membrane is prone to rupture. Our data identify the first molecular components that act to cluster caveolae into a membrane ultrastructure with the potential to extend stretch-buffering capacity and support a revised model for the function of EHDs at the caveolar neck.


Assuntos
Proteínas de Transporte/genética , Cavéolas/fisiologia , Proteínas de Ligação a DNA/genética , Proteínas Nucleares/genética , Proteínas de Transporte Vesicular/genética , Animais , Fenômenos Biomecânicos , Proteínas de Transporte/metabolismo , Proteínas de Ligação a DNA/metabolismo , Camundongos , Células NIH 3T3 , Proteínas Nucleares/metabolismo , Estresse Mecânico , Proteínas de Transporte Vesicular/metabolismo
6.
Trends Cell Biol ; 26(3): 177-189, 2016 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-26653791

RESUMO

Caveolae are small, bulb-shaped plasma membrane invaginations. Mutations that ablate caveolae lead to diverse phenotypes in mice and humans, making it challenging to uncover their molecular mechanisms. Caveolae have been described to function in endocytosis and transcytosis (a specialized form of endocytosis) and in maintaining membrane lipid composition, as well as acting as signaling platforms. New data also support a model in which the central function of caveolae could be related to the protection of cells from mechanical stress within the plasma membrane. We present evidence for these diverse roles and consider in vitro and in vivo experiments confirming a mechanoprotective role. We conclude by highlighting current gaps in our knowledge of how mechanical signals may be transduced by caveolae.


Assuntos
Cavéolas/fisiologia , Animais , Caveolinas/fisiologia , Endocitose , Humanos , Metabolismo dos Lipídeos , Transporte Proteico , Transdução de Sinais
7.
J Cell Biol ; 211(1): 53-61, 2015 Oct 12.
Artigo em Inglês | MEDLINE | ID: mdl-26459598

RESUMO

Caveolae are strikingly abundant in endothelial cells, yet the physiological functions of caveolae in endothelium and other tissues remain incompletely understood. Previous studies suggest a mechanoprotective role, but whether this is relevant under the mechanical forces experienced by endothelial cells in vivo is unclear. In this study we have sought to determine whether endothelial caveolae disassemble under increased hemodynamic forces, and whether caveolae help prevent acute rupture of the plasma membrane under these conditions. Experiments in cultured cells established biochemical assays for disassembly of caveolar protein complexes, and assays for acute loss of plasma membrane integrity. In vivo, we demonstrate that caveolae in endothelial cells of the lung and cardiac muscle disassemble in response to acute increases in cardiac output. Electron microscopy and two-photon imaging reveal that the plasma membrane of microvascular endothelial cells in caveolin 1(-/-) mice is much more susceptible to acute rupture when cardiac output is increased. These data imply that mechanoprotection through disassembly of caveolae is important for endothelial function in vivo.


Assuntos
Débito Cardíaco , Cavéolas/fisiologia , Células Endoteliais/fisiologia , Animais , Fenômenos Biomecânicos , Caveolina 1/genética , Caveolina 1/metabolismo , Membrana Celular/fisiologia , Células Cultivadas , Endocitose , Camundongos Endogâmicos C57BL , Camundongos Knockout
8.
Nat Commun ; 6: 6867, 2015 Apr 21.
Artigo em Inglês | MEDLINE | ID: mdl-25897946

RESUMO

Caveolae have long been implicated in endocytosis. Recent data question this link, and in the absence of specific cargoes the potential cellular function of caveolar endocytosis remains unclear. Here we develop new tools, including doubly genome-edited cell lines, to assay the subcellular dynamics of caveolae using tagged proteins expressed at endogenous levels. We find that around 5% of the cellular pool of caveolae is present on dynamic endosomes, and is delivered to endosomes in a clathrin-independent manner. Furthermore, we show that caveolae are indeed likely to bud directly from the plasma membrane. Using a genetically encoded tag for electron microscopy and ratiometric light microscopy, we go on to show that bulk membrane proteins are depleted within caveolae. Although caveolae are likely to account for only a small proportion of total endocytosis, cells lacking caveolae show fundamentally altered patterns of membrane traffic when loaded with excess glycosphingolipid. Altogether, these observations support the hypothesis that caveolar endocytosis is specialized for transport of membrane lipid.


Assuntos
Caveolina 1/metabolismo , Glicoesfingolipídeos/metabolismo , Proteínas de Membrana/metabolismo , Animais , Caveolina 1/genética , Membrana Celular , Regulação da Expressão Gênica/fisiologia , Genoma , Proteínas de Fluorescência Verde , Células HeLa , Humanos , Proteínas Luminescentes , Proteínas de Membrana/genética , Camundongos , Células NIH 3T3 , Fotodegradação , Proteínas Recombinantes , Proteína Vermelha Fluorescente
10.
Elife ; 3: e03970, 2014 Sep 17.
Artigo em Inglês | MEDLINE | ID: mdl-25232658

RESUMO

Several different endocytic pathways have been proposed to function in mammalian cells. Clathrin-coated pits are well defined, but the identity, mechanism and function of alternative pathways have been controversial. Here we apply universal chemical labelling of plasma membrane proteins to define all primary endocytic vesicles, and labelling of specific proteins with a reducible SNAP-tag substrate. These approaches provide high temporal resolution and stringent discrimination between surface-connected and intracellular membranes. We find that at least 95% of the earliest detectable endocytic vesicles arise from clathrin-coated pits. GPI-anchored proteins, candidate cargoes for alternate pathways, are also found to enter the cell predominantly via coated pits. Experiments employing a mutated clathrin adaptor reveal distinct mechanisms for sorting into coated pits, and thereby explain differential effects on the uptake of transferrin and GPI-anchored proteins. These data call for a revision of models for the activity and diversity of endocytic pathways in mammalian cells.


Assuntos
Clatrina/metabolismo , Endocitose , Redes e Vias Metabólicas , Complexo 2 de Proteínas Adaptadoras/metabolismo , Animais , Bioensaio , Biomarcadores/metabolismo , Biotinilação , Células COS , Chlorocebus aethiops , Invaginações Revestidas da Membrana Celular/metabolismo , Glicosilfosfatidilinositóis/metabolismo , Células HeLa , Humanos , Proteínas de Membrana/metabolismo , Proteômica , Receptores da Transferrina/metabolismo , Reprodutibilidade dos Testes , Vesículas Transportadoras/metabolismo
11.
Basic Res Cardiol ; 109(6): 439, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25204797

RESUMO

Endothelial cells are important elements in the vascular response to danger-associated molecules signaling through toll-like receptors (TLRs). Flotillin-1 and -2 are markers of membrane rafts but their true endothelial function is unknown. We hypothesized that flotillins are required for TLR signaling in human umbilical vein endothelial cells (HUVECs). Knockdown of flotillin-1 by shRNA decreased the TLR3-mediated poly-I:C-induced but not the TLR4-mediated LPS-induced inflammatory activation of HUVEC. As TLR3 but not TLR4 signals through the endosomal compartment, flotillin-1 might be involved in the transport of poly-I:C to its receptor. Consistently, uptake of poly-I:C was attenuated by flotillin-1 knockdown and probably involved the scavenger receptor SCARA4 as revealed by knockdown of this receptor. To determine the underlying mechanism, SILAC proteomics was performed. Down-regulation of flotillin-1 led to a reduction of the structural caveolae proteins caveolin-1, cavin-1 and -2, suggesting a role of flotillin-1 in caveolae formation. Flotillin-1 and caveolin-1 colocalized within the cell, and knockdown of flotillin-1 decreased caveolin-1 expression in an endoplasmic reticulum stress-dependent manner. Importantly, downregulation of caveolin-1 also attenuated TLR3-induced signaling. To demonstrate the importance of this finding, cell adhesion was studied. Flotillin-1 shRNA attenuated the poly-I:C-mediated induction of the adhesion molecules VCAM-1 and ICAM-1. As a consequence, the poly-I:C-induced adhesion of peripheral blood mononuclear cells onto HUVECs was significantly attenuated by flotillin-1 shRNA. Collectively, these data suggest that interaction between flotillin-1 and caveolin-1 may facilitate the transport of TLR3-ligands to its intracellular receptor and enables inflammatory TLR3 signaling.


Assuntos
Células Endoteliais/fisiologia , Proteínas de Membrana/fisiologia , Transdução de Sinais/fisiologia , Receptor 3 Toll-Like/fisiologia , Humanos
12.
PLoS One ; 9(7): e102935, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-25036884

RESUMO

The cavins are a family of proteins associated with caveolae, cavin-1, -2 and -3 being widely expressed while cavin-4 is restricted to striated muscle. Deletion of cavin-1 results in phenotypes including metabolic changes consistent with adipocyte dysfunction, and caveolae are completely absent. Deletion of cavin-2 causes tissue-specific loss of caveolae. The consequences of cavin-3 deletion are less clear, as there are divergent data on the abundance of caveolae in cavin-3 null mice. Here we examine the consequences of cavin-3 deficiency in vivo by making cavin-3 knockout mice. We find that loss of cavin-3 has minimal or no effects on the levels of other caveolar proteins, does not appear to play a major role in formation of protein complexes important for caveolar morphogenesis, and has no significant effect on caveolae abundance. Cavin-3 null mice have the same body weight and fat mass as wild type animals at ages 8 through 30 weeks on both normal chow and high fat diets. Likewise, the two mouse strains exhibit identical glucose tolerance tests on both diets. Microarray analysis from adipose tissue shows that the changes in mRNA expression between cavin-3 null and wild type mouse are minimal. We conclude that cavin-3 is not absolutely required for making caveolae, and suggest that the mechanistic link between cavin-3 and metabolic regulation remains uncertain.


Assuntos
Composição Corporal/genética , Cavéolas/metabolismo , Glucose/metabolismo , Proteínas de Membrana/genética , Proteínas de Membrana/metabolismo , Proteínas de Ligação a RNA/genética , Proteínas de Ligação a RNA/metabolismo , Adipócitos/metabolismo , Tecido Adiposo/metabolismo , Animais , Peso Corporal/genética , Dieta Hiperlipídica , Feminino , Glucose/genética , Teste de Tolerância a Glucose/métodos , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Camundongos Knockout , Morfogênese/genética , RNA Mensageiro/genética
13.
PLoS One ; 9(1): e85217, 2014.
Artigo em Inglês | MEDLINE | ID: mdl-24465508

RESUMO

Flotillin 1 and flotillin 2 associate in the plasma membrane to form microdomains that have roles in cell signaling, regulation of cell-cell contacts, membrane-cytoskeletal interactions, and endocytosis. They are thought to be involved in the trafficking and hence processing of the Amyloid Precursor Protein, APP. In this study we set out to obtain in vivo confirmation of a link between flotillins and cleavage of APP to release amyloidogenic Aß peptide, and to generate tools that would allow us to ask whether flotillins are functionally redundant. We used a mouse model for Aß-dependent cerebral amyloidosis, APPPS1 mice, combined with deletion of either flotillin 1 singly, or flotillin 1 and flotillin 2 together. There was a small but significant reduction in Aß levels, and the abundance of congo-red stained plaques, in brains of 12 week old mice lacking flotillin 1. A similar reduction in Aß levels was observed in the flotillin 1-/-, flotillin 2-/- double knockouts. We did not observe large effects on the clustering or endocytosis of APP in flotillin 1-/- mouse embryonic fibroblasts. We conclude that flotillins are likely to play some role in APP trafficking or processing, but the relevant cellular mechanisms require more investigation. The availability of flotillin 1-/-, flotillin 2-/- mice, which have no overt phenotypes, will facilitate research into flotillin function in vivo.


Assuntos
Peptídeos beta-Amiloides/metabolismo , Angiopatia Amiloide Cerebral/metabolismo , Proteínas de Membrana/genética , Animais , Angiopatia Amiloide Cerebral/genética , Angiopatia Amiloide Cerebral/patologia , Modelos Animais de Doenças , Embrião de Mamíferos , Fibroblastos/metabolismo , Fibroblastos/patologia , Deleção de Genes , Genes Reporter , Proteínas de Fluorescência Verde/genética , Proteínas de Fluorescência Verde/metabolismo , Humanos , Proteínas de Membrana/deficiência , Camundongos , Camundongos Knockout , Cultura Primária de Células , Transporte Proteico
14.
PLoS Biol ; 11(8): e1001640, 2013.
Artigo em Inglês | MEDLINE | ID: mdl-24013648

RESUMO

Caveolae are an abundant feature of the plasma membrane of many mammalian cell types, and have key roles in mechano-transduction, metabolic regulation, and vascular permeability. Caveolin and cavin proteins, as well as EHD2 and pacsin 2, are all present in caveolae. How these proteins assemble to form a protein interaction network for caveolar morphogenesis is not known. Using in vivo crosslinking, velocity gradient centrifugation, immuno-isolation, and tandem mass spectrometry, we determine that cavins and caveolins assemble into a homogenous 80S complex, which we term the caveolar coat complex. There are no further abundant components within this complex, and the complex excludes EHD2 and pacsin 2. Cavin 1 forms trimers and interacts with caveolin 1 with a molar ratio of about 1∶4. Cavins 2 and 3 compete for binding sites within the overall coat complex, and form distinct subcomplexes with cavin 1. The core interactions between caveolin 1 and cavin 1 are independent of cavin 2, cavin 3, and EHD2 expression, and the cavins themselves can still interact in the absence of caveolin 1. Using immuno-electron microscopy as well as a recently developed protein tag for electron microscopy (MiniSOG), we demonstrate that caveolar coat complexes form a distinct coat all around the caveolar bulb. In contrast, and consistent with our biochemical data, EHD2 defines a different domain at the caveolar neck. 3D electron tomograms of the caveolar coat, labeled using cavin-MiniSOG, show that the caveolar coat is composed of repeating units of a unitary caveolar coat complex.


Assuntos
Cavéolas/metabolismo , Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Animais , Proteínas de Transporte/metabolismo , Cavéolas/ultraestrutura , Caveolina 1/metabolismo , Células HeLa , Humanos , Microscopia Eletrônica
16.
J Cell Sci ; 124(Pt 23): 3933-40, 2011 Dec 01.
Artigo em Inglês | MEDLINE | ID: mdl-22194304

RESUMO

Flotillins are membrane proteins that form microdomains in the plasma membrane of all mammalian cell types studied to date. They span the evolutionary spectrum, with proteins related to flotillins present in bacteria, fungi, plants and metazoans, which suggests that they perform important, and probably conserved, functions. Flotillins have been implicated in myriad processes that include endocytosis, signal transduction and regulation of the cortical cytoskeleton, yet the molecular mechanisms that underlie flotillin function in these different cases are still poorly understood. In this Commentary, we will provide an introduction to these intriguing proteins, summarise their proposed functions and discuss in greater detail some recent insights into the role of flotillin microdomains in endocytosis that have been provided by several independent studies. Finally, we will focus on the questions that are raised by these new experiments and their implications for future studies.


Assuntos
Endocitose , Proteínas de Membrana/química , Transdução de Sinais , Animais , Membrana Celular/química , Citoesqueleto/química , Dinaminas/química , Proteínas Ligadas por GPI/química , Humanos , Microdomínios da Membrana/química , Receptores de Superfície Celular/química , Solubilidade
17.
J Cell Sci ; 124(Pt 16): 2777-85, 2011 Aug 15.
Artigo em Inglês | MEDLINE | ID: mdl-21807942

RESUMO

The pacsin (also termed syndapin) protein family is well characterised structurally. They contain F-BAR domains associated with the generation or maintenance of membrane curvature. The cell biology of these proteins remains less understood. Here, we initially confirm that EHD2, a protein previously shown biochemically to be present in caveolar fractions and to bind to pacsins, is a caveolar protein. We go on to report that GFP-pacsin 2 can be recruited to caveolae, and that endogenous pacsin 2 partially colocalises with caveolin 1 at the plasma membrane. Analysis of the role of pacsin 2 in caveolar biogenesis using small interfering RNA (siRNA) reveals that loss of pacsin 2 function results in loss of morphologically defined caveolae and accumulation of caveolin proteins within the plasma membrane. Overexpression of the F-BAR domain of pacsin 2 (but not the related F-BAR domains of CIP4 and FBP17) disrupts caveolar morphogenesis or trafficking, implying that pacsin 2 interacts with components required for these processes. We propose that pacsin 2 has an important role in the formation of plasma membrane caveolae.


Assuntos
Proteínas Adaptadoras de Transdução de Sinal/metabolismo , Proteínas de Transporte/metabolismo , Cavéolas/fisiologia , Caveolina 1/metabolismo , Membrana Celular/metabolismo , Fibroblastos/fisiologia , Proteínas/metabolismo , Proteínas Adaptadoras de Transdução de Sinal/genética , Animais , Cavéolas/ultraestrutura , Membrana Celular/ultraestrutura , Clonagem Molecular , Proteínas do Citoesqueleto , Fibroblastos/ultraestrutura , Humanos , Camundongos , Microscopia Eletrônica , Células NIH 3T3 , Estrutura Terciária de Proteína/genética , Transporte Proteico/genética , Proteínas/genética , RNA Interferente Pequeno/genética , Transgenes/genética
19.
West J Emerg Med ; 12(4): 551-5, 2011 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-22224158

RESUMO

INTRODUCTION: We established the most common cutaneous diseases that received dermatology consultation in the adult emergency department (ED) and identified differentiating clinical characteristics of dermatoses that required hospital admission. METHODS: A retrospective chart review of 204 patients presenting to the ED who received dermatology consultations at Los Angeles County/University of Southern California Medical Center, an urban tertiary care teaching hospital. RESULTS: Of all patients, 18% were admitted to an inpatient unit primarily for their cutaneous disease, whereas 82% were not. Of nonadmitted patients, the most commonly diagnosed conditions were eczematous dermatitis not otherwise specified (8.9%), scabies (7.2%), contact dermatitis (6.6%), cutaneous drug eruption (6.0%), psoriasis vulgaris (4.2%), and basal cell carcinoma (3.6%). Of patients admitted for their dermatoses, the most highly prevalent conditions were erythema multiforme major/Stevens-Johnson syndrome (22%), pemphigus vulgaris (14%), and severe cutaneous drug eruption (11%). When compared with those of nonadmitted patients, admitted skin conditions were more likely to be generalized (92% vs 72%; P = 0.0104), acute in onset (<1 month duration) (81% vs 51%; P = 0.0005), painful (41% vs 15%; P = 0.0009), blistering (41% vs 7.8%; P < 0.0001), and ulcerated or eroded (46% vs 7.8%; P < 0.0001). They were more likely to involve the mucosa (54% vs 7.2%; P < 0.0001) and less likely to be pruritic (35% vs 58%; P = 0.0169). CONCLUSION: We have described a cohort of patients receiving dermatologic consultation in the ED of a large urban teaching hospital. These data identify high-risk features of more severe skin disease and may be used to refine curricula in both emergency and nonemergency cutaneous disorders for emergency physicians.

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