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31.
Mortier E Quéméner A Vusio P Lorenzen I Boublik Y Grötzinger J Plet A Jacques Y 《The Journal of biological chemistry》2006,281(3):1612-1619
Interleukin-15 (IL-15) is crucial for the generation of multiple lymphocyte subsets (natural killer (NK), NK-T cells, and memory CD8 T cells), and transpresentation of IL-15 by monocytes and dendritic cells has been suggested to be the dominant activating process of these lymphocytes. We have previously shown that a natural soluble form of IL-15R alpha chain corresponding to the entire extracellular domain of IL-15R alpha behaves as a high affinity IL-15 antagonist. In sharp contrast with this finding, we demonstrate in this report that a recombinant, soluble sushi domain of IL-15R alpha, which bears most of the binding affinity for IL-15, behaves as a potent IL-15 agonist by enhancing its binding and biological effects (proliferation and protection from apoptosis) through the IL-15R beta/gamma heterodimer, whereas it does not affect IL-15 binding and function of the tripartite IL-15R alpha/beta/gamma membrane receptor. Our results suggest that, if naturally produced, such soluble sushi domains might be involved in the IL-15 transpresentation mechanism. Fusion proteins (RLI and ILR), in which IL-15 and IL-15R alpha-sushi are attached by a flexible linker, are even more potent than the combination of IL-15 plus sIL-15R alpha-sushi. After binding to IL-15R beta/gamma, RLI is internalized and induces a biological response very similar to the IL-15 high affinity response. Such hyper-IL-15 fusion proteins appear to constitute potent adjuvants for the expansion of lymphocyte subsets. 相似文献
32.
Melanie Lechner Karin Schmitt Susanne Bauer David Hot Christine Hubans Erwan Levillain Camille Locht Yves Lemoine Roy Gross 《BMC microbiology》2009,9(1):141
Background
Among the members of the genus Bordetella B. petrii is unique, since it is the only species isolated from the environment, while the pathogenic Bordetellae are obligately associated with host organisms. Another feature distinguishing B. petrii from the other sequenced Bordetellae is the presence of a large number of mobile genetic elements including several large genomic regions with typical characteristics of genomic islands collectively known as integrative and conjugative elements (ICEs). These elements mainly encode accessory metabolic factors enabling this bacterium to grow on a large repertoire of aromatic compounds. 相似文献33.
Sensorimotor restriction by a 14-day period of hindlimb unloading (HU) in the adult rat induces a reorganization of topographic maps and receptive fields. However, the underlying mechanisms are still unclear. Interest was turned towards a possible implication of intracellular MAPK signaling pathway since Extracellular-signal-Regulated Kinase 1/2 (ERK1/2) is known to play a significant role in the control of synaptic plasticity. In order to better understand the mechanisms underlying cortical plasticity in adult rats submitted to a sensorimotor restriction, we analyzed the time-course of ERK1/2 activation by immunoblot and of cortical reorganization by electrophysiological recordings, on rats submitted to hindlimb unloading over four weeks. Immunohistochemistry analysis provided evidence that ERK1/2 phosphorylation was increased in layer III neurons of the somatosensory cortex. This increase was transient, and parallel to the changes in hindpaw cortical map area (layer IV). By contrast, receptive fields were progressively enlarged from 7 to 28 days of hindlimb unloading. To determine whether ERK1/2 was involved in cortical remapping, we administered a specific ERK1/2 inhibitor (PD-98059) through osmotic mini-pump in rats hindlimb unloaded for 14 days. Results demonstrate that focal inhibition of ERK1/2 pathway prevents cortical reorganization, but had no effect on receptive fields. These results suggest that ERK1/2 plays a role in the induction of cortical plasticity during hindlimb unloading. 相似文献
34.
35.
M. D. Le Lagadec S. L. Chown C. H. Scholtz 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1998,168(2):112-122
Desiccation resistance and water balance were examined in the adults of seven trogid species, which differed both in body
size and in the habitats from which they were collected. Body water contents (51–58% fresh mass) and desiccation rates at
27 °C (0.00026–0.00093 g h−1) in these species were very similar to those of unrelated, similar-sized beetles from arid habitats. The keratin beetles
differed markedly from many other adult Coleoptera by virtue of their very high haemolymph osmolality and inability to regulate
haemolymph osmolality, and to catabolise lipids for water production, during desiccation. Like most other insects, the xeric
trogid species had lower rates of water loss and longer survival times than trogids from mesic areas. This was due both to
lower rates of water loss and to the larger body size of species from the more arid areas. Because absolute body water content
was higher in large beetles than in small ones, larger body size conferred higher desiccation resistance on the very large
Kalahari desert species. This suggests that there may be strong selection for large body size in such insects from arid areas.
Most ecological and ecophysiological investigations of geographical variation in body size, and the species-body size distribution,
have focused on temperature and metabolic rate as explanatory variables. This study suggests that attention should also be
given to desiccation resistance.
Accepted: 29 September 1997 相似文献
36.
Helene Strick-Marchand Mathilde Dusséaux Sylvie Darche Nicholas D. Huntington Nicolas Legrand Guillemette Masse-Ranson Erwan Corcuff James Ahodantin Kees Weijer Hergen Spits Dina Kremsdorf James P. Di Santo 《PloS one》2015,10(3)
Hepatic infections by hepatitis B virus (HBV), hepatitis C virus (HCV) and Plasmodium parasites leading to acute or chronic diseases constitute a global health challenge. The species tropism of these hepatotropic pathogens is restricted to chimpanzees and humans, thus model systems to study their pathological mechanisms are severely limited. Although these pathogens infect hepatocytes, disease pathology is intimately related to the degree and quality of the immune response. As a first step to decipher the immune response to infected hepatocytes, we developed an animal model harboring both a human immune system (HIS) and human hepatocytes (HUHEP) in BALB/c Rag2-/- IL-2Rγc-/- NOD.sirpa uPAtg/tg mice. The extent and kinetics of human hepatocyte engraftment were similar between HUHEP and HIS-HUHEP mice. Transplanted human hepatocytes were polarized and mature in vivo, resulting in 20–50% liver chimerism in these models. Human myeloid and lymphoid cell lineages developed at similar frequencies in HIS and HIS-HUHEP mice, and splenic and hepatic compartments were humanized with mature B cells, NK cells and naïve T cells, as well as monocytes and dendritic cells. Taken together, these results demonstrate that HIS-HUHEP mice can be stably (> 5 months) and robustly engrafted with a humanized immune system and chimeric human liver. This novel HIS-HUHEP model provides a platform to investigate human immune responses against hepatotropic pathogens and to test novel drug strategies or vaccine candidates. 相似文献
37.
38.
Britt-Marie Swahn David Wensbo Johan Sandell Daniel Sohn Can Slivo David Pyring Jonas Malmström Erwan Arzel Michaela Vallin Margareta Bergh Fredrik Jeppsson Allan E. Johnson Anders Juréus Jan Neelissen Samuel Svensson 《Bioorganic & medicinal chemistry letters》2010,20(6):1976-1980
The syntheses and SAR of new series of β-amyloid binding agents are reported. The effort to optimize signal-to-background ratios for these ligands are described. Compounds 8, 21 and 30 displayed desirable lipophilicity and pharmacokinetic properties. Compounds 8 and 21 were evaluated with in vitro autoradiographic studies and in vivo in APP/PS1 transgenic mice. It is shown that it was possible to increase the signal-to-background ratios compared to PIB 1, as demonstrated by compounds 8 and 21. 相似文献
39.
Cécile Vanpé Lucie Debeffe Maxime Galan A. J. Mark Hewison Jean‐Michel Gaillard Emmanuelle Gilot‐Fromont Nicolas Morellet Hélène Verheyden Jean‐François Cosson Bruno Cargnelutti Joël Merlet Erwan Quéméré 《Oikos》2016,125(12):1790-1801
Dispersal is a key life‐history trait governing the response of individuals, populations and species to changing environmental conditions. In the context of global change, it is therefore essential to better understand the respective role of condition‐, phenotype‐ and genetic‐dependent drivers of dispersal behaviour. Although the importance of immune function and pathogen infestation in determining patterns of dispersal is increasingly recognised, no study to our knowledge has yet investigated the influence of immune gene variability on dispersal behaviour. Here, we filled this knowledge gap by assessing whether individual heterozygosity at five immune gene loci (one from the Major histocompatibility complex and four from encoding Toll‐like receptors) influences roe deer natal dispersal. We found that dispersal propensity was affected by immune gene diversity, suggesting potential pathogen‐mediated selection through over‐dominance. However, the direction of this effect differed between high and low quality individuals, suggesting that dispersal propensity is driven by two different mechanisms. In support of the condition‐dependent dispersal hypothesis, dispersal propensity increased with increasing body mass and, among high quality individuals only (standardized body mass > 18 kg), with increasing immune gene diversity. However, among poor quality individuals, we observed the opposite pattern such that dispersal propensity was higher for individuals with lower immune gene diversity. We suggest that these poor quality individuals expressed an emergency dispersal tactic in an attempt to escape a heavily infested environment associated with poor fitness prospects. Our results have potentially important consequences in terms of population genetics and demography, as well as host–pathogen evolution. 相似文献
40.