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281por Arii, Jun, Watanabe, Mizuki, Maeda, Fumio, Tokai-Nishizumi, Noriko, Chihara, Takahiro, Miura, Masayuki, Maruzuru, Yuhei, Koyanagi, Naoto, Kato, Akihisa, Kawaguchi, Yasushi“…Here we show that endosomal sorting complex required for transport-III (ESCRT-III) is recruited to the inner nuclear membrane (INM) during the nuclear export of herpes simplex virus 1 (HSV-1). …”
Publicado 2018
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282“…Eight young thoroughbred horses, taken 1858 km by road (travelling time, 41 h), were exmanined toassess the pathological nature of respiratory disease associated with transport. Three of the horses showed clinical abnormalities including pyrexia, coughing, leucocytosis and neutrophilia after the first 20 h of transportation. …”
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283por Song, Inseon, Volynski, Kirill, Brenner, Tanja, Ushkaryov, Yuri, Walker, Matthew, Semyanov, Alexey“…In mice, GABA from vesicular sources is regulated by mouse GABA transporter 1 (mGAT1), while that from non-vesicular sources by mouse GABA transporters 3/4 (mGAT3/4). This finding suggests that the two transporter systems do not just provide backup for each other, but regulate distinct signaling pathways. …”
Publicado 2013
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284“…The Endosomal Sorting Complexes Required for Transport III (ESCRT-III) proteins are critical for cellular membrane scission processes with topologies inverted relative to clathrin-mediated endocytosis. …”
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285“…A total of seven channels were identified, including three for cyclonic transport, three through the mountainous areas between the Longquan Mountain and the Huaying Mountain, and one along the Yangtze River. …”
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286“…A gene ontology analysis of these 25 genes revealed (1) catalytic; (2) transport; (3) signal transducer; (4) binding; (5) anti-oxidant and (6) structural activities. …”
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287“…We present a methodology leading to the reconstitution of efflux pumps from the Gram-negative bacteria Pseudomonas aeruginosa in a biomimetic environment that allows for an accurate investigation of their activity of transport. Three prerequisites are fulfilled: compartmentation in a lipidic environment, use of a relevant index for transport, and generation of a proton gradient. …”
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288por Mejlvang, Jakob, Olsvik, Hallvard, Svenning, Steingrim, Bruun, Jack-Ansgar, Abudu, Yakubu Princely, Larsen, Kenneth Bowitz, Brech, Andreas, Hansen, Tom E., Brenne, Hanne, Hansen, Terkel, Stenmark, Harald, Johansen, Terje“…Already 1 h after induction of starvation, they are rapidly degraded by a process that selectively delivers autophagy receptors to vesicles inside late endosomes/multivesicular bodies depending on the endosomal sorting complex required for transport III (ESCRT-III). Our data support a model in which amino acid deprivation elicits endocytosis of specific membrane receptors, induction of macroautophagy, and rapid degradation of autophagy receptors by endosomal microautophagy.…”
Publicado 2018
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289por Pandya, Raj, Chen, Richard Y. S., Gu, Qifei, Gorman, Jeffrey, Auras, Florian, Sung, Jooyoung, Friend, Richard, Kukura, Philipp, Schnedermann, Christoph, Rao, Akshay“…Our study reveals sub-picosecond coherent exciton transport (12–45 cm(2) s(–1)) followed by a diffusive phase of exciton transport (3–17 cm(2) s(–1)). A comparison between the different films suggests that the exciton transport in the studied materials is intricately linked to their nanoscale morphology, with PDI films that form large crystalline domains exhibiting the largest diffusion coefficients and transport lengths. …”
Publicado 2020
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290por Pfitzner, Anna-Katharina, Mercier, Vincent, Jiang, Xiuyun, Moser von Filseck, Joachim, Baum, Buzz, Šarić, Anđela, Roux, Aurélien“…The endosomal sorting complex required for transport-III (ESCRT-III) catalyzes membrane fission from within membrane necks, a process that is essential for many cellular functions, from cell division to lysosome degradation and autophagy. …”
Publicado 2020
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291por Yang, Zhisen, Xia, Jing, Hong, Jingjing, Zhang, Chenxi, Wei, Hong, Ying, Wei, Sun, Chunqiao, Sun, Lianghanxiao, Mao, Yanbo, Gao, Yongxiang, Tan, Shutang, Friml, Jiří, Li, Dianfan, Liu, Xin, Sun, Linfeng“…The PIN-FORMED (PIN) auxin transporters exhibit highly asymmetrical localizations at the plasma membrane and drive polar auxin transport(3,4); however, their structures and transport mechanisms remain largely unknown. …”
Publicado 2022
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292por Chapin, Samantha, Everson, Holly, Chapin, William, Quartaro, Amy, Komendera, Erik“…In this paper, a mixed assembly scheme is explored and a trade study is conducted on its possible advantages with respect to many phases of a mission: 1) manufacturing, 2) stowage and transport, 3) ISA, and 4) servicing. Finally, a weighted decision matrix was created to help compare the various advantages and disadvantages of different architectural schemes.…”
Publicado 2023
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293“…A mutation in CHMP2B locus (CHMP2B(intron5)), which encodes a component of endosomal sorting complex required for transport-III (ESCRT-III), is associated with a rare hereditary subtype of FTD linked to chromosome 3 (FTD-3). …”
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294por Blah, Nicolas, Sudrié-Arnaud, Bénédicte, Torre, Stéphanie, Marret, Stéphane, Bekri, Soumeya, Tebani, Abdellah“…Carnitine Palmitoyl transferase 2 (CPT II) is involved in long-chain fatty-acid mitochondrial transport. Three clinical phenotypes of CPT II deficiency have been described: Lethal neonatal onset, infantile severe form, and the late onset more common muscular form. …”
Publicado 2018
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295“…The corals attached to polycarbonate bolt were tolerant to long-distance aerial transport 3 days after the attachment. In addition to its implementation in various experiments using hermatypic corals, this method will contribute to aquaculture of hermatypic corals, exhibition of corals in aquariums, and coral reef restoration. …”
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296por Stukel, Michael R., Irving, John P., Kelly, Thomas B., Ohman, Mark D., Fender, Christian K., Yingling, Natalia“…The physical pump exports more carbon from the shallow ocean than active transport (3.8 vs. 2.9 mmol C m(−2) d(−1)), although active transport sequesters more carbon (1.0 vs. 0.8 Pg C) because of deeper remineralization depths. …”
Publicado 2023
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297por Bajorek, Monika, Schubert, Heidi L., McCullough, John, Langelier, Charles, Eckert, Debra M., Stubblefield, William-May B., Uter, Nathan T., Myszka, David G., Hill, Christopher P., Sundquist, Wesley I.“…ESCRT-III (endosomal sorting complexes required for transport-III) subunits cycle between two states: soluble monomers and higher-order assemblies that bind and remodel membranes during endosomal vesicle formation, midbody abscission and enveloped virus budding. …”
Publicado 2009
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298por Kadochi, Yui, Mori, Shiori, Fujiwara-Tani, Rina, Luo, Yi, Nishiguchi, Yukiko, Kishi, Shingo, Fujii, Kiyomu, Ohmori, Hitoshi, Kuniyasu, Hiroki“…In CT26 cells expressing 3-HBA and LAA transporters, 3-HBA and LAA reduced cell proliferation, mitochondrial volume and lactate production, and increased oxidative stress, particularly in low-glucose conditions. …”
Publicado 2017
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299por Maity, Sourav, Caillat, Christophe, Miguet, Nolwenn, Sulbaran, Guidenn, Effantin, Gregory, Schoehn, Guy, Roos, Wouter H., Weissenhorn, Winfried“…Many cellular processes such as endosomal vesicle budding, virus budding, and cytokinesis require extensive membrane remodeling by the endosomal sorting complex required for transport III (ESCRT-III). ESCRT-III protein family members form spirals with variable diameters in vitro and in vivo inside tubular membrane structures, which need to be constricted to proceed to membrane fission. …”
Publicado 2019
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300“…The strategies in these approaches focus on: 1) inhibition of Stx production and release by STEC, 2) inhibition of Stx bloodstream transport, 3) inhibition of Stx entry into the CNS parenchyma, 4) blockade of deleterious Stx action in neural cells, and 5) inhibition of immune system activation and CNS inflammation. …”
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