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1.
Cell ; 170(6): 1175-1183.e11, 2017 Sep 07.
Artículo en Inglés | MEDLINE | ID: mdl-28867285

RESUMEN

We serendipitously discovered that the marine bacterium Vibrio fischeri induces sexual reproduction in one of the closest living relatives of animals, the choanoflagellate Salpingoeca rosetta. Although bacteria influence everything from nutrition and metabolism to cell biology and development in eukaryotes, bacterial regulation of eukaryotic mating was unexpected. Here, we show that a single V. fischeri protein, the previously uncharacterized EroS, fully recapitulates the aphrodisiac-like activity of live V. fischeri. EroS is a chondroitin lyase; although its substrate, chondroitin sulfate, was previously thought to be an animal synapomorphy, we demonstrate that S. rosetta produces chondroitin sulfate and thus extend the ancestry of this important glycosaminoglycan to the premetazoan era. Finally, we show that V. fischeri, purified EroS, and other bacterial chondroitin lyases induce S. rosetta mating at environmentally relevant concentrations, suggesting that bacteria likely regulate choanoflagellate mating in nature.


Asunto(s)
Aliivibrio fischeri/enzimología , Coanoflagelados/microbiología , Coanoflagelados/fisiología , Condroitinasas y Condroitín Liasas/metabolismo , Secuencia de Aminoácidos , Proteínas Bacterianas/química , Coanoflagelados/citología , Sulfatos de Condroitina/metabolismo , Meiosis , Reproducción , Alineación de Secuencia
2.
Elife ; 102021 11 03.
Artículo en Inglés | MEDLINE | ID: mdl-34730512

RESUMEN

Animals have evolved unique repertoires of innate immune genes and pathways that provide their first line of defense against pathogens. To reconstruct the ancestry of animal innate immunity, we have developed the choanoflagellate Monosiga brevicollis, one of the closest living relatives of animals, as a model for studying mechanisms underlying pathogen recognition and immune response. We found that M. brevicollis is killed by exposure to Pseudomonas aeruginosa bacteria. Moreover, M. brevicollis expresses STING, which, in animals, activates innate immune pathways in response to cyclic dinucleotides during pathogen sensing. M. brevicollis STING increases the susceptibility of M. brevicollis to P. aeruginosa-induced cell death and is required for responding to the cyclic dinucleotide 2'3' cGAMP. Furthermore, similar to animals, autophagic signaling in M. brevicollis is induced by 2'3' cGAMP in a STING-dependent manner. This study provides evidence for a pre-animal role for STING in antibacterial immunity and establishes M. brevicollis as a model system for the study of immune responses.


Asunto(s)
Coanoflagelados/inmunología , Inmunidad Innata , Proteínas de la Membrana/metabolismo , Coanoflagelados/genética , Coanoflagelados/metabolismo , Coanoflagelados/microbiología , GMP Cíclico/metabolismo , Proteínas de la Membrana/genética , Infecciones por Pseudomonas/inmunología , Pseudomonas aeruginosa , Transducción de Señal
3.
PLoS One ; 9(5): e95577, 2014.
Artículo en Inglés | MEDLINE | ID: mdl-24806026

RESUMEN

Choanoflagellates are unicellular and colonial aquatic microeukaryotes that capture bacteria using an apical flagellum surrounded by a feeding collar composed of actin-filled microvilli. Flow produced by the apical flagellum drives prey bacteria to the feeding collar for phagocytosis. We report here on the cell biology of prey capture in rosette-shaped colonies and unicellular "thecate" or substrate attached cells from the choanoflagellate S. rosetta. In thecate cells and rosette colonies, phagocytosis initially involves fusion of multiple microvilli, followed by remodeling of the collar membrane to engulf the prey, and transport of engulfed bacteria into the cell. Although both thecate cells and rosette colony cells produce ∼ 70 nm "collar links" that connect and potentially stabilize adjacent microvilli, only thecate cells were observed to produce a lamellipod-like "collar skirt" that encircles the base of the collar. This study offers insight into the process of prey ingestion by S. rosetta, and provides a context within which to consider potential ecological differences between solitary cells and colonies in choanoflagellates.


Asunto(s)
Coanoflagelados/fisiología , Coanoflagelados/microbiología , Flagelos/fisiología , Fagocitosis/fisiología
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