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排序方式: 共有135条查询结果,搜索用时 15 毫秒
81.
Stephanie Oertel Klaus Scholich Andreas Weigert Dominique Thomas Julia Schmetzer Sandra Trautmann Marthe-Susanna Wegner Heinfried H. Radeke Natalie Filmann Bernhard Brüne Gerd Geisslinger Irmgard Tegeder Sabine Grösch 《Cellular and molecular life sciences : CMLS》2017,74(16):3039-3055
Loss of intestinal barrier functions is a hallmark of inflammatory bowel disease like ulcerative colitis. The molecular mechanisms are not well understood, but likely involve dysregulation of membrane composition, fluidity, and permeability, which are all essentially regulated by sphingolipids, including ceramides of different chain length and saturation. Here, we used a loss-of-function model (CerS2+/+ and CerS2?/? mice) to investigate the impact of ceramide synthase 2, a key enzyme in the generation of very long-chain ceramides, in the dextran sodium salt (DSS) evoked model of UC. CerS2?/? mice developed more severe disease than CerS2+/+ mice in acute DSS and chronic AOM/DSS colitis. Deletion of CerS2 strongly reduced very long-chain ceramides (Cer24:0, 24:1) but concomitantly increased long-chain ceramides and sphinganine in plasma and colon tissue. In naive CerS2?/? mice, the expression of tight junction proteins including ZO-1 was almost completely lost in the colon epithelium, leading to increased membrane permeability. This could also be observed in vitro in CerS2 depleted Caco-2 cells. The increase in membrane permeability in CerS2?/? mice did not manifest with apparent clinical symptoms in naive mice, but with slight inflammatory signs such as an increase in monocytes and IL-10. AOM/DSS and DSS treatment alone led to a further deterioration of membrane integrity and to severe clinical symptoms of the disease. This was associated with stronger upregulation of cytokines in CerS2?/? mice and increased infiltration of the colon wall by immune cells, particularly monocytes, CD4+ and Th17+ T-cells, and an increase in tumor burden. In conclusion, CerS2 is crucial for the maintenance of colon barrier function and epithelial integrity. CerS2 knockdown, and associated changes in several sphingolipids such as a drop in very long-chain ceramides/(dh)-ceramides, an increase in long-chain ceramides/(dh)-ceramides, and sphinganine in the colon, may weaken endogenous defense against the endogenous microbiome. 相似文献
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84.
Caitlin Collin Frank Hauser Ernesto Gonzalez de Valdivia Shizhong Li Julia Reisenberger Eva M. M. Carlsen Zaid Khan Niels Ø. Hansen Florian Puhm Leif Søndergaard Justyna Niemiec Magdalena Heninger Guilin R. Ren Cornelis J. P. Grimmelikhuijzen 《Cellular and molecular life sciences : CMLS》2013,70(21):4197-4197
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86.
Sub1A is an ethylene-response-factor-like gene that confers submergence tolerance to rice 总被引:10,自引:0,他引:10
Xu K Xu X Fukao T Canlas P Maghirang-Rodriguez R Heuer S Ismail AM Bailey-Serres J Ronald PC Mackill DJ 《Nature》2006,442(7103):705-708
Most Oryza sativa cultivars die within a week of complete submergence--a major constraint to rice production in south and southeast Asia that causes annual losses of over US 1 billion dollars and affects disproportionately the poorest farmers in the world. A few cultivars, such as the O. sativa ssp. indica cultivar FR13A, are highly tolerant and survive up to two weeks of complete submergence owing to a major quantitative trait locus designated Submergence 1 (Sub1) near the centromere of chromosome 9 (refs 3, 4, 5-6). Here we describe the identification of a cluster of three genes at the Sub1 locus, encoding putative ethylene response factors. Two of these genes, Sub1B and Sub1C, are invariably present in the Sub1 region of all rice accessions analysed. In contrast, the presence of Sub1A is variable. A survey identified two alleles within those indica varieties that possess this gene: a tolerance-specific allele named Sub1A-1 and an intolerance-specific allele named Sub1A-2. Overexpression of Sub1A-1 in a submergence-intolerant O. sativa ssp. japonica conferred enhanced tolerance to the plants, downregulation of Sub1C and upregulation of Alcohol dehydrogenase 1 (Adh1), indicating that Sub1A-1 is a primary determinant of submergence tolerance. The FR13A Sub1 locus was introgressed into a widely grown Asian rice cultivar using marker-assisted selection. The new variety maintains the high yield and other agronomic properties of the recurrent parent and is tolerant to submergence. Cultivation of this variety is expected to provide protection against damaging floods and increase crop security for farmers. 相似文献
87.
A selective jumonji H3K27 demethylase inhibitor modulates the proinflammatory macrophage response 总被引:1,自引:0,他引:1
L Kruidenier CW Chung Z Cheng J Liddle K Che G Joberty M Bantscheff C Bountra A Bridges H Diallo D Eberhard S Hutchinson E Jones R Katso M Leveridge PK Mander J Mosley C Ramirez-Molina P Rowland CJ Schofield RJ Sheppard JE Smith C Swales R Tanner P Thomas A Tumber G Drewes U Oppermann DJ Patel K Lee DM Wilson 《Nature》2012,488(7411):404-408
88.
J. Papp W. Förster L. Szekeres V. Rösler 《Cellular and molecular life sciences : CMLS》1966,22(8):524-525
Zusammenfassung Nach mehrtägiger Vorbehandlung zeigt das amindepletierende DCI-Derivat I-06 (noch 24 h nach letzter Verabreichung) einen starken antifibrilla-torischen Effekt gegen CaCl2-Ventrikelflimmern. Das nicht amindepletierende Propranolol ist zu diesem Zeitpunkt unwirksam. Eine Schutzwirkung verursachen auch Prenylamin, Guanethidin, -Methyldopa und in geringerem Masse auch Reserpin. Bretylium bleibt ohne Einfluss. Die eventuelle Bedeutung der amindepletierenden Wirkung im Mechanismus der langdauernden antiarrhythmischen Wirkung wird diskutiert. 相似文献
89.
Regulation of p53 activity through lysine methylation 总被引:1,自引:0,他引:1
Chuikov S Kurash JK Wilson JR Xiao B Justin N Ivanov GS McKinney K Tempst P Prives C Gamblin SJ Barlev NA Reinberg D 《Nature》2004,432(7015):353-360
p53 is a tumour suppressor that regulates the cellular response to genotoxic stresses. p53 is a short-lived protein and its activity is regulated mostly by stabilization via different post-translational modifications. Here we report a novel mechanism of p53 regulation through lysine methylation by Set9 methyltransferase. Set9 specifically methylates p53 at one residue within the carboxyl-terminus regulatory region. Methylated p53 is restricted to the nucleus and the modification positively affects its stability. Set9 regulates the expression of p53 target genes in a manner dependent on the p53-methylation site. The crystal structure of a ternary complex of Set9 with a p53 peptide and the cofactor product S-adenosyl-l-homocysteine (AdoHcy) provides the molecular basis for recognition of p53 by this lysine methyltransferase. 相似文献
90.