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2.
Mol Cell ; 83(12): 2077-2090.e12, 2023 Jun 15.
Artículo en Inglés | MEDLINE | ID: mdl-37209685

RESUMEN

Autophagy is a conserved intracellular degradation pathway that generates de novo double-membrane autophagosomes to target a wide range of material for lysosomal degradation. In multicellular organisms, autophagy initiation requires the timely assembly of a contact site between the ER and the nascent autophagosome. Here, we report the in vitro reconstitution of a full-length seven-subunit human autophagy initiation supercomplex built on a core complex of ATG13-101 and ATG9. Assembly of this core complex requires the rare ability of ATG13 and ATG101 to switch between distinct folds. The slow spontaneous metamorphic conversion is rate limiting for the self-assembly of the supercomplex. The interaction of the core complex with ATG2-WIPI4 enhances tethering of membrane vesicles and accelerates lipid transfer of ATG2 by both ATG9 and ATG13-101. Our work uncovers the molecular basis of the contact site and its assembly mechanisms imposed by the metamorphosis of ATG13-101 to regulate autophagosome biogenesis in space and time.


Asunto(s)
Autofagosomas , Autofagia , Humanos , Proteínas Relacionadas con la Autofagia/genética , Proteínas Relacionadas con la Autofagia/metabolismo , Autofagia/fisiología , Autofagosomas/metabolismo , Proteínas de la Membrana/metabolismo , Lípidos
3.
Mar Drugs ; 17(10)2019 Oct 22.
Artículo en Inglés | MEDLINE | ID: mdl-31652521

RESUMEN

Azaspiracids (AZAs) are marine biotoxins including a variety of analogues. Recently, novel AZAs produced by the Mediterranean dinoflagellate Azadinium dexteroporum were discovered (AZA-54, AZA-55, 3-epi-AZA-7, AZA-56, AZA-57 and AZA-58) and their biological effects have not been investigated yet. This study aimed to identify the biological responses (biomarkers) induced in mussels Mytilus galloprovincialis after the bioaccumulation of AZAs from A. dexteroporum. Organisms were fed with A. dexteroporum for 21 days and subsequently subjected to a recovery period (normal diet) of 21 days. Exposed organisms accumulated AZA-54, 3-epi-AZA-7 and AZA-55, predominantly in the digestive gland. Mussels' haemocytes showed inhibition of phagocytosis activity, modulation of the composition of haemocytic subpopulation and damage to lysosomal membranes; the digestive tissue displayed thinned tubule walls, consumption of storage lipids and accumulation of lipofuscin. Slight genotoxic damage was also observed. No clear occurrence of oxidative stress and alteration of nervous activity was detected in AZA-accumulating mussels. Most of the altered parameters returned to control levels after the recovery phase. The toxic effects detected in M. galloprovincialis demonstrate a clear biological impact of the AZAs produced by A. dexteroporum, and could be used as early indicators of contamination associated with the ingestion of seafood.


Asunto(s)
Dinoflagelados/metabolismo , Enfermedades Transmitidas por los Alimentos/prevención & control , Toxinas Marinas/toxicidad , Mytilus/efectos de los fármacos , Alimentos Marinos/toxicidad , Compuestos de Espiro/toxicidad , Animales , Enfermedades Transmitidas por los Alimentos/etiología , Hemocitos/efectos de los fármacos , Toxinas Marinas/biosíntesis , Mar Mediterráneo , Mutagénesis/efectos de los fármacos , Mytilus/genética , Estrés Oxidativo/efectos de los fármacos
4.
Nat Cell Biol ; 20(8): 917-927, 2018 08.
Artículo en Inglés | MEDLINE | ID: mdl-30050118

RESUMEN

Fibro-adipogenic progenitors (FAPs) are typically activated in response to muscle injury, and establish functional interactions with inflammatory and muscle stem cells (MuSCs) to promote muscle repair. We found that denervation causes progressive accumulation of FAPs, without concomitant infiltration of macrophages and MuSC-mediated regeneration. Denervation-activated FAPs exhibited persistent STAT3 activation and secreted elevated levels of IL-6, which promoted muscle atrophy and fibrosis. FAPs with aberrant activation of STAT3-IL-6 signalling were also found in mouse models of spinal cord injury, spinal muscular atrophy, amyotrophic lateral sclerosis (ALS) and in muscles of ALS patients. Inactivation of STAT3-IL-6 signalling in FAPs effectively countered muscle atrophy and fibrosis in mouse models of acute denervation and ALS (SODG93A mice). Activation of pathogenic FAPs following loss of integrity of neuromuscular junctions further illustrates the functional versatility of FAPs in response to homeostatic perturbations and suggests their potential contribution to the pathogenesis of neuromuscular diseases.


Asunto(s)
Adipogénesis , Esclerosis Amiotrófica Lateral/metabolismo , Desnervación/métodos , Interleucina-6/metabolismo , Atrofia Muscular Espinal/metabolismo , Atrofia Muscular/metabolismo , Mioblastos Esqueléticos/metabolismo , Músculo Cuádriceps/metabolismo , Factor de Transcripción STAT3/metabolismo , Transducción de Señal , Traumatismos de la Médula Espinal/metabolismo , Adipogénesis/efectos de los fármacos , Esclerosis Amiotrófica Lateral/genética , Esclerosis Amiotrófica Lateral/patología , Esclerosis Amiotrófica Lateral/prevención & control , Animales , Cardiotoxinas , Línea Celular , Técnicas de Cocultivo , Modelos Animales de Enfermedad , Fibrosis , Humanos , Interleucina-6/antagonistas & inhibidores , Interleucina-6/genética , Masculino , Ratones Endogámicos C57BL , Ratones Transgénicos , Atrofia Muscular/genética , Atrofia Muscular/patología , Atrofia Muscular/prevención & control , Atrofia Muscular Espinal/genética , Atrofia Muscular Espinal/patología , Atrofia Muscular Espinal/prevención & control , Mutación , Mioblastos Esqueléticos/efectos de los fármacos , Mioblastos Esqueléticos/patología , Fármacos Neuromusculares/farmacología , Músculo Cuádriceps/efectos de los fármacos , Músculo Cuádriceps/inervación , Músculo Cuádriceps/patología , Factor de Transcripción STAT3/antagonistas & inhibidores , Factor de Transcripción STAT3/genética , Nervio Ciático/cirugía , Traumatismos de la Médula Espinal/genética , Traumatismos de la Médula Espinal/patología , Traumatismos de la Médula Espinal/prevención & control , Superóxido Dismutasa-1/genética
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