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Gut microbiome regulates inflammation and insulin resistance:a novel therapeutic target to improve insulin sensitivity
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作者 Dilvin Semo Holger Reinecke rinesh godfrey 《Signal Transduction and Targeted Therapy》 SCIE CSCD 2024年第3期825-827,共3页
In a recent study published in Nature,Takeuchi et al.used a multiomics strategy in humans to provide compelling evidence that increased carbohydrate metabolism by the gut microbiota contributes to insulin resistance(I... In a recent study published in Nature,Takeuchi et al.used a multiomics strategy in humans to provide compelling evidence that increased carbohydrate metabolism by the gut microbiota contributes to insulin resistance(IR).The authors uncovered a previously unknown link between elevated gut monosaccharides and host inflammatory cytokines and suggest potential intervention opportunities to combat IR by targeting specific gut microbial species. 展开更多
关键词 METABOLISM INFLAMMATION al.
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High REDOX RESPONSIVE TRANSCRIPTION FACTOR1 Levels Result in Accumulation of Reactive Oxygen Species in Arabidopsis thaliana Shoots and Roots 被引量:3
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作者 Mitsuhiro Matsuo Joy MichalJohnson +9 位作者 Ayaka Hieno Mutsutomo Tokizawa Mika Nomoto Yasuomi Tada rinesh godfrey Junichi Obokata Irena Sherameti Yoshiharu Y. Yamamoto~l Frank-D. Boehmer Ralf Oelmuller 《Molecular Plant》 SCIE CAS CSCD 2015年第8期1253-1273,共21页
Redox Responsive Transcription Factor1 (RRTF1) in Arabidopsis is rapidly and transiently upregulated by H202, as well as biotic- and abiotic-induced redox signals. RRTF1 is highly conserved in angio- sperms, but its... Redox Responsive Transcription Factor1 (RRTF1) in Arabidopsis is rapidly and transiently upregulated by H202, as well as biotic- and abiotic-induced redox signals. RRTF1 is highly conserved in angio- sperms, but its physiological role remains elusive. Here we show that inactivation of RRTF1 restricts and overexpression promotes reactive oxygen species (ROS) accumulation in response to stress. Transgenic lines overexpressing RRTF1 are impaired in root and shoot development, light sensitive, and susceptible to Alternaria brassicae infection. These symptoms are diminished by the beneficial root endophyte Piriformospora indica, which reduces ROS accumulation locally in roots and systemi- cally in shoots, and by antioxidants and ROS inhibitors that scavenge ROS. More than 800 genes were detected in mature leaves and seedlings of transgenic lines overexpressing RRTF1; ∽40% of them have stress-, redox-, ROS-regulated-, ROS-scavenging-, defense-, cell death- and related functions. Bioinformatic analyses and in vitro DNA binding assays demonstrate that RRTF1 binds to GCC-box-like sequences in the promoter of RRTFl-responsive genes. Upregulation of RRTF1 by stress stimuli and H202 requires WRKY18/40/60. RRTF1 is co-regulated with the phylogenet- ically related RAP2.6, which contains a GCC-box-like sequence in its promoter, but transgenic lines overexpressing RAP2.6 do not accumulate higher ROS levels. RRTF1 also stimulates systemic ROS accumulation in distal non-stressed leaves. We conclude that the elevated levels of the highly conserved RRTF1 induce ROS accumulation in response to ROS and ROS-producing abiotic and biotic stress signals. 展开更多
关键词 abiotic and biotic stress reactive oxygen species H202 REDOX RESPONSIVE TRANSCRIPTIONFACTOR1 RAP2.6 RRTF1 promoter binding sites
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