-
1081por Predes, Danilo, Oliveira, Luiz F. S., Ferreira, Laís S. S., Maia, Lorena A., Delou, João M. A., Faletti, Anderson, Oliveira, Igor, Amado, Nathalia G., Reis, Alice H., Fraga, Carlos A. M., Kuster, Ricardo, Mendes, Fabio A., Borges, Helena L., Abreu, Jose G.“…Lonchocarpin impairs β-catenin nuclear localization and also inhibits the constitutively active form of TCF4, dnTCF4-VP16. Xenopus laevis embryology assays suggest that lonchocarpin acts at the transcriptional level. …”
Publicado 2019
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1082“…We used Tail-seq and polyribosome analysis to measure poly(A) tail and translational changes during oocyte maturation in Xenopus laevis. We identified large-scale poly(A) and translational changes during oocyte maturation, with poly(A) tail length changes preceding translational changes. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1083por Fujitani, Kazuko, Otomo, Asako, Nagayama, Yuto, Tachibana, Taro, Kato, Rika, Kawashima, Yusuke, Kodera, Yoshio, Kato, Tomoko, Takada, Shuji, Tamura, Kei, Takamatsu, Nobuhiko, Ito, Michihiko“…The transcription factor DMRT1 (doublesex and mab-3 related transcription factor) has two distinct functions, somatic-cell masculinization and germ-cell development in some vertebrate species, including mouse and the African clawed frog Xenopus laevis. However, its transcriptional regulation remains unclear. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1084por Pai, Vaibhav P., Cervera, Javier, Mafe, Salvador, Willocq, Valerie, Lederer, Emma K., Levin, Michael“…Extending prior work in Xenopus laevis that showed that misexpression of ion channels can rescue morphogenesis, we demonstrate and characterize a novel aspect of developmental bioelectricity: channel-dependent repair signals propagate long-range across the embryo. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1085“…SvHKT1;1 mediated inward and outward Na(+) transport in Xenopus laevis oocytes and did not complement K(+) transporter-defective mutant yeast. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1086por Le Mauff, Anaïs, Chouikh, Hamza, Cartereau, Alison, Charvet, Claude L., Neveu, Cédric, Rispe, Claude, Plantard, Olivier, Taillebois, Emiliane, Thany, Steeve H.“…The objective of this study was to characterize the pharmacological properties of tick nicotinic receptors using membrane microtransplantation in Xenopus laevis oocytes and two-electrodes voltage clamp method. …”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1087por Qian, Yong, Cosio, Danielle M. Orozco, Piatkevich, Kiryl D., Aufmkolk, Sarah, Su, Wan-Chi, Celiker, Orhan T., Schohl, Anne, Murdock, Mitchell H., Aggarwal, Abhi, Chang, Yu-Fen, Wiseman, Paul W., Ruthazer, Edward S., Boyden, Edward S., Campbell, Robert E.“…We characterized the performance of the new NIR GECIs in cultured cells, acute mouse brain slices, and Caenorhabditis elegans and Xenopus laevis in vivo. Our results demonstrate that NIR-GECO2 and NIR-GECO2G provide substantial improvements over NIR-GECO1 for imaging of neuronal Ca(2+) dynamics.…”
Publicado 2020
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1088por Fan, Yilin, Köberlin, Marielle S., Ratnayeke, Nalin, Liu, Chad, Deshpande, Madhura, Gerhardt, Jeannine, Meyer, Tobias“…A key process in replisome disassembly is the unloading of CMG helicases (CDC45–MCM–GINS), which is initiated in Caenorhabditis elegans and Xenopus laevis by the E3 ubiquitin ligase CRL2(LRR1). …”
Publicado 2021
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1089por Hansen, Tina V. A., Grencis, Richard K., Issouf, Mohamed, Neveu, Cédric, Charvet, Claude L.“…Here, we have identified the ACR-16-like and ACR-19 subunits from T. muris, and performed the functional characterization of the receptors in Xenopus laevis oocytes using two-electrode voltage-clamp electrophysiology. …”
Publicado 2021
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1090The Caenorhabditis elegans DEG-3/DES-2 Channel Is a Betaine-Gated Receptor Insensitive to Monepantelpor Hansen, Tina V. A., Sager, Heinz, Toutain, Céline E., Courtot, Elise, Neveu, Cédric, Charvet, Claude L.“…Here, our aim was to advance the pharmacological knowledge of the DEG-3/DES-2 channel from C. elegans by functionally expressing the DEG-3/DES-2 channel in Xenopus laevis oocytes and using two-electrode voltage-clamp electrophysiology. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1091por Bertaud, Anaïs, Cens, Thierry, Mary, Rosanna, Rousset, Matthieu, Arel, Elodie, Thibaud, Jean-Baptiste, Vignes, Michel, Ménard, Claudine, Dutertre, Sébastien, Collet, Claude, Charnet, Pierre“…Using heterologous expression in Xenopus laevis oocytes, and two-electrode voltage-clamp recording to assess the properties of the GABAr, we performed a comparative analysis of the pharmacological sensitivity of RDL subunits from A. pisum, A. mellifera and Varroa destructor GABAr to three pesticides (fipronil, picrotoxin and dieldrin). …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1092por Spruiell Eldridge, Sydnee L., Teetsel, Jonathan F. K., Torres, Ray A., Ulrich, Christina H., Shah, Vrutant V., Singh, Devanshi, Zamora, Melissa J., Zamora, Steven, Sater, Amy K.“…In this study, we investigate the response to focal impact injury to the optic tectum of Xenopus laevis tadpoles. This injury disrupts the blood-brain barrier, causing edema, and produces deficits in visually-driven behaviors which are resolved within one week. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1093por Mouchet, Florence, Rowenczyk, Laura, Minet, Antoine, Clergeaud, Fanny, Silvestre, Jérôme, Pinelli, Eric, Ferriol, Jessica, Leflaive, Joséphine, Ten-Hage, Loïc, Gigault, Julien, Ter Halle, Alexandra, Gauthier, Laury“…For this purpose, two relevant biological and aquatic models—amphibian larvae, Xenopus laevis, and dipters, Chironomus riparius—were used under normalized exposure conditions. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1094“…Here, we performed a genome-wide analysis of enhancers and associated genes in regenerating nephric tubules of Xenopus laevis. Putative enhancers were identified using assay for transposase-accessible chromatin with high-throughput sequencing (ATAC-seq) and H3K27ac chromatin immunoprecipitation sequencing (ChIP-seq) analyses. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1095por Jang, Dong Gil, Kwon, Keun Yeong, Kweon, Yeong Cheon, Kim, Byung-gyu, Myung, Kyungjae, Lee, Hyun-Shik, Young Park, Chan, Kwon, Taejoon, Park, Tae Joo“…Here, we examined the functions of GJA1 during ciliogenesis in human retinal pigment epithelium-1 and Xenopus laevis embryonic multiciliated-cells. GJA1 localizes to the motile ciliary axonemes or pericentriolar regions beneath the primary cilium. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1096por Negretti, Maria Isabella, Böse, Nina, Petri, Natalia, Kremnyov, Stanislav, Tsikolia, Nikoloz“…Processes leading to emergence of the asymmetric nodal domain differ depending on the mode of symmetry breaking. In Xenopus laevis and mouse embryos, the leftward fluid flow on the ventral surface of the left–right organizer leads through intermediate steps to enhanced activity of the nodal protein on the left side of the organizer and subsequent asymmetric nodal induction in the lateral plate mesoderm. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1097por Richards, David P., Patel, Rohit N., Duce, Ian R., Khambay, Bhupinder P. S., Birkett, Michael A., Pickett, John A., Mellor, Ian R.“…Here, we have explored the actions of (−)-adaline, found in the 2-spot (Adalia bipunctata) and 10-spot (Adalia decempunctata) ladybirds, on both mammalian (α1β1γδ, α7, α4β2, α3β4) and insect nAChRs using patch-clamp of TE671 cells and locust brain neurons natively expressing nAChRs, as well as two-electrode voltage clamp of Xenopus laevis oocytes recombinantly expressing nAChRs. …”
Publicado 2022
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1098“…We study individual cells of types that can be identified during the post‐mitotic phase of oogenesis in Xenopus laevis. Whole‐cell homogenates of isolated oocytes are used for kinetic analysis of enzymes, with a focus on the initial reaction rate. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1099“…To investigate protein dynamics during channel activation, we improved incorporation of the environment-sensitive fluorescent unnatural amino acid L-3-(6-acetylnaphthalen-2-ylamino)–2-aminopropanoic acid (ANAP) into Xenopus laevis oocyte-expressed P2X7Rs and performed voltage clamp fluorometry. …”
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto -
1100por Long, Qi, Yan, Kai, Wang, Chendong, Wen, Yanling, Qi, Furong, Wang, Hui, Shi, Peng, Liu, Xingguo, Chan, Wai-Yee, Lu, Xuemei, Zhao, Hui“…Here, we identified that modification of maternally defined H3K4me3 in Xenopus laevis and Xenopus tropicalis hybrids determines the different fates of the two types of hybrids as te×ls with developmental arrest and viable le×ts. …”
Publicado 2023
Enlace del recurso
Enlace del recurso
Enlace del recurso
Online Artículo Texto