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Lucia Lichvarova Thomas Henzi Dzhamilja Safiulina Allen Kaasik Beat Schwaller 《Cellular and molecular life sciences : CMLS》2018,75(24):4643-4666
The Ca2+-binding protein parvalbumin (PV) and mitochondria play important roles in Ca2+ signaling, buffering and sequestration. Antagonistic regulation of PV and mitochondrial volume is observed in in vitro and in vivo model systems. Changes in mitochondrial morphology, mitochondrial volume and dynamics (fusion, fission, mitophagy) resulting from modulation of PV were investigated in MDCK epithelial cells with stable overexpression/downregulation of PV. Increased PV levels resulted in smaller, roundish cells and shorter mitochondria, the latter phenomenon related to reduced fusion rates and decreased expression of genes involved in mitochondrial fusion. PV-overexpressing cells displayed increased mitophagy, a likely cause for the decreased mitochondrial volumes and the smaller overall cell size. Cells showed lower mobility in vitro, paralleled by reduced protrusions. Constitutive PV down-regulation in PV-overexpressing cells reverted mitochondrial morphology and fractional volume to the state present in control MDCK cells, resulting from increased mitochondrial movement and augmented fusion rates. PV-modulated, bi-directional and reversible mitochondrial dynamics are key to regulation of mitochondrial volume. 相似文献
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Environmental light is the 'zeitgeber' (time-giver) of circadian behaviour. Constant darkness is considered a 'free-running' circadian state. Mammals encounter constant darkness during hibernation. Ablation of the master clock synchronizer, the suprachiasmatic nucleus, abolishes torpor, a hibernation-like state, implicating the circadian clock in this phenomenon. Here we report a mechanism by which constant darkness regulates the gene expression of fat catabolic enzymes in mice. Genes for murine procolipase (mClps) and pancreatic lipase-related protein 2 (mPlrp2) are activated in a circadian manner in peripheral organs during 12 h dark:12 h dark (DD) but not light-dark (LD) cycles. This mechanism is deregulated in circadian-deficient mPer1-/-/mPer2m/m mice. We identified circadian-regulated 5'-AMP, which is elevated in the blood of DD mice, as a key mediator of this response. Synthetic 5'-AMP induced torpor and mClps expression in LD animals. Torpor induced by metabolic stress was associated with elevated 5'-AMP levels in DD mice. Levels of glucose and non-esterified fatty acid in the blood are reversed in DD and LD mice. Induction of mClps expression by 5'-AMP in LD mice was reciprocally linked to blood glucose levels. Our findings uncover a circadian metabolic rhythm in mammals. 相似文献
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Elin Swedenborg Krista A. Power Wen Cai Ingemar Pongratz Joëlle Rüegg 《Cellular and molecular life sciences : CMLS》2009,66(24):3873-3894
Together with the estrogen receptor (ER) alpha, estrogen receptor beta (ERβ) mediates many of the physiological effects of
estrogens. As ERβ is crucially involved in a variety of important physiological processes, its activity should be tightly
regulated. ERβ regulation is achieved by hormone binding as well as by posttranslational modifications of the receptor. Furthermore,
ERβ expression levels are under circadian control and can be regulated by DNA methylation of the ERβ promoter region. There
are also a number of factors that can interfere with ERβ activity, such as phytoestrogens, endocrine disruptive chemicals,
and growth factors. In this article, we outline different mechanisms of ERβ regulation and how they are implicated in various
diseases. We also discuss how these insights might help to specifically target ERβ in drug design. 相似文献
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Criteria from the World Conservation Union (IUCN) have been used to classify marine fish species as endangered since 1996, but deep-sea fish have not so far been evaluated--despite their vulnerability to aggressive deepwater fishing as a result of certain life-history traits. Here we use research-survey data to show that five species of deep-sea fish have declined over a 17-year period in the Canadian waters of the northwest Atlantic to such an extent that they meet the IUCN criteria for being critically endangered. Our results indicate that urgent action is needed for the sustainable management of deep-sea fisheries. 相似文献
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Résumé Durant le refroidissement du ganglion cervical supérieur perfusé du chat, la réaction de la membrane nictitante est notablement plus sensible aux stimulations de haute que de basse fréquence. Aux températures élevées, c'est l'inverse.L'influence de la fréquence des stimulations a aussi été perceptible lors des expériences, au cours desquelles le rendement de l'acétylcholine a été déterminé. A 37°C, le rendement s'accorît sensiblement lorsqu'on accélère le rythme de stimulation. A 20°C, cependant un nombre croissant de chocs préganglionnaires n'augmente pas le rendement total de l'acétylcholine. 相似文献
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Predation can be intense, creating strong direct and indirect effects throughout food webs. In addition, ecologists increasingly recognize that fluxes of organisms across ecosystem boundaries can have major consequences for community dynamics. Species with complex life histories often shift habitats during their life cycles and provide potent conduits coupling ecosystems. Thus, local interactions that affect predator abundance in one ecosystem (for example a larval habitat) may have reverberating effects in another (for example an adult habitat). Here we show that fish indirectly facilitate terrestrial plant reproduction through cascading trophic interactions across ecosystem boundaries. Fish reduce larval dragonfly abundances in ponds, leading to fewer adult dragonflies nearby. Adult dragonflies consume insect pollinators and alter their foraging behaviour. As a result, plants near ponds with fish receive more pollinator visits and are less pollen limited than plants near fish-free ponds. Our results confirm that strong species interactions can reverberate across ecosystems, and emphasize the importance of landscape-level processes in driving local species interactions. 相似文献
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