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1.
小泛素相关修饰蛋白(small ubiquitin related modifier,SUMO)修饰作用是蛋白质翻译后修饰的重要方式。SUMO化修饰与泛素化作用极为相似,并且在某些靶蛋白上可以与泛素竞争结合位点,从而起到稳定靶蛋白的作用,并参与调节靶蛋白的细胞定位、膜离子通道功能、DNA损伤修复以及转录活性等。核受体是一类在生物体内广泛分布的、配体依赖的转录因子超家族,参与机体生长发育、细胞分化,以及体内许多生理、病理过程中的基因表达调控。最近研究发现,核受体的SU-MO修饰可通过影响核受体的稳定性、转录活性、亚细胞定位等多重途径影响核受体的功能,并影响机体炎症反应及相关疾病的发生发展。本文对核受体的SUMO修饰在核受体功能调控中的作用,以及与机体相关疾病之间的关系做一简要综述。  相似文献   

2.
RelA/p65是NF-κB的一个亚单位,其翻译后修饰能够精细地调控NF-κB的转录激活,并在炎症反应及炎症反应相关疾病的发生和发展过程中发挥重要的作用.RelA的翻译后修饰主要包括磷酸化、乙酰化、甲基化以及泛素化等.这些翻译后修饰不仅能在生理和病理的条件下有效地调控NF-κB的转录激活,彼此之间还存在着复杂的相互作用,一种翻译后修饰可以使另一种修饰增强或是抑制,从而综合而完善地调控NF-κB的转录活性.本文就近年来RelA的翻译后修饰及这些修饰之间的相互作用对NF-κB信号通路影响的最新研究进展进行综述.  相似文献   

3.
RelA/p65是NF-κB的一个亚单位,其翻译后修饰能够精细地调控NF-κB的转录激活,并在炎症反应及炎症反应相关疾病的发生和发展过程中发挥重要的作用. RelA的翻译后修饰主要包括磷酸化、乙酰化、甲基化以及泛素化等.这些翻译后修饰不仅能在生理和病理的条件下有效地调控NF-κB的转录激活,彼此之间还存在着复杂的相互作用,一种翻译后修饰可以使另一种修饰增强或是抑制,从而综合而完善地调控NF κB的转录活性.本文就近年来RelA的翻译后修饰及这些修饰之间的相互作用对NF-κB信号通路影响的最新研究进展进行综述.  相似文献   

4.
小泛素相关修饰物(smallubiq uitin related modifier,SUMO)修饰是与泛素化修饰类似的蛋白质翻译后修饰,在细胞信号转导、核质运输与转录调控等方面发挥重要作用。核因子-κB(nuclear factor-κB,NF-κB)通路是公认的参与炎症和免疫反应的重要调节通路。近年来研究发现,SUMO通过各种机制广泛参与NF-κB信号通路的调节。研究两者的关系,可能为相关疾病的防治找到新的思路。  相似文献   

5.
<正>蛋白质翻译后修饰是指蛋白质在翻译后的化学修饰.它包含磷酸化、乙酰化、泛素化和甲基化等类型[1],在调节蛋白质活性、结构和功能等方面发挥着重要的作用,其重要性已被人们广泛认知[2~5].随着许多新的翻译后修饰类型的出现,蛋白质翻译后修饰这一研究领域变得越来越复杂而有趣.对于科研人员来说,从经典的磷酸化、泛素化,到新型的甲基化、SUMO化,各种蛋白质翻译后修饰无不散发着诱人的魅力,期待着人们  相似文献   

6.
蛋白质SUMO化修饰研究进展   总被引:4,自引:0,他引:4  
SUMO(small ubiquitin-related modifier)是类泛素蛋白家族的重要成员之一,可与多种蛋白结合发挥相应的功能,其分子结构及SUMO化反应途径都与泛素类似,但二者功能完全不同。SUMO化修饰可参与转录调节、核转运、维持基因组完整性及信号转导等多种细胞内活动,是一种重要的多功能的蛋白质翻译后修饰方式。SUMO化修饰功能的失调可能导致某些疾病的发生。  相似文献   

7.
O-GlcNAc修饰是一种特殊的糖基化修饰,几乎参与生物体内所有细胞过程的调控。该修饰与泛素化作为两种重要的蛋白质翻译后修饰形式,都与2型糖尿病、神经退行性疾病、癌症等疾病密切相关。O-GlcNAc修饰对蛋白质泛素化降解途径的影响主要体现在4个方面:(1)O-GlcNAc修饰能够抑制26S蛋白酶体的ATPase活性;(2)O-GlcNAc修饰会减少某些底物蛋白的泛素化降解;(3)O-GlcNAc修饰泛素化相关酶并调节其功能;(4)某些蛋白质(包括调控因子)发生O-GlcNAc修饰后间接影响蛋白质泛素化。  相似文献   

8.
HIF-1α的可逆性SUMO化修饰   总被引:3,自引:0,他引:3  
低氧诱导因子1(hypoxia inducible factor-1, HIF-1)是参与调节机体氧平衡的重要转录因子,在细胞低氧应答反应中起核心作用,能调节100多种涉及低氧应激下细胞适应和存活的靶基因.HIF-1由氧敏感的α亚基和在细胞内稳定表达的β亚基组成.其中α亚基可受到多种翻译后化学修饰作用,如在常氧下,HIF-1α通过泛素化蛋白酶修饰并导致其快速降解.最近几年发现的泛素样蛋白家族成员小泛素蛋白样修饰蛋白(SUMO)也能与HIF-1α共价结合.SUMO是一种分子量约为12 kD的小蛋白,从拟南芥到人类普遍存在.SUMO可共价结合许多靶底物蛋白,并对其进行翻译后修饰,该过程称为SUMO化.与泛素化蛋白酶体途径不同的是,SUMO化修饰能在常氧和相对低氧的条件下调节HIF-1α蛋白的稳定性,从而改变其转录活性.SUMO化是一个可逆的动态过程,可被特异性蛋白酶ULP/SENP将其从底物上去除.本文主要就HIF-1α的可逆性SUMO化修饰作一综述.  相似文献   

9.
真核细胞转录因子NF-κB通过调节多种靶基因表达,参与炎症、免疫反应、程序性细胞死亡、细胞增殖和分化的调控。RelA是NF-κB家族一个重要的成员,其翻译后修饰可精准调控NF-κB的转录活性,在调节炎症、肿瘤、代谢以及免疫应答等重要的生命活动及相关疾病的发生发展过程中起重要作用。现总结相关领域最新研究进展,综述RelA翻译后修饰的种类、调控机制,对NF-κB通路功能的影响,及其在NF-κB介导的炎症、癌症等多种疾病中的功能。  相似文献   

10.
泛素化(ubiquitination)是真核细胞内广泛存在的蛋白质翻译后修饰方式,参与并调控DNA修复、细胞周期、免疫应答、信号通路等真核细胞内几乎所有的生命活动。同时,细胞通过去泛素化酶(deubiquitinases,DUBs)使泛素化修饰成为可逆过程,保证了泛素化系统及其相关生理过程的动态平衡。病原菌感染过程中,宿主细胞可通过泛素化修饰发挥抗细菌感染作用。然而,病原菌可编码并分泌效应因子,靶向宿主泛素(ubiquitin,Ub)系统并调控宿主泛素化修饰过程,干扰宿主细胞的免疫应答,从而促进细菌存活与毒力。本文概述了重要病原菌利用效应因子调控宿主细胞泛素化修饰的研究进展,有助于全面理解病原菌调控宿主泛素化修饰促进感染的机制。  相似文献   

11.
In China, baicalin is the main active component of Scutellaria baicalensis, which has been used in the treatment of inflammation-related diseases, such as inflammation-induced acute lung injury. However, its specific mechanism remains unclear. This study examined the protective effect of baicalin on LPS-induced inflammation injury of alveolar epithelial cell line A549 and explored its protective mechanism. Compared with the LPS-induced group, the proliferation inhibition rates of alveolar type II epithelial cell line A549 intervened by different concentrations of baicalin decreased significantly, as did the levels of inflammatory factors IL-6, IL-1β, prostaglandin 2 and TNF-α in the supernatant. The expression levels of inflammatory proteins inducible NO synthase (iNOS), NF-κB65, phosphorylated ERK (p-ERK1/2), and phosphorylated c-Jun N-terminal kinase (p-JNK1) significantly decreased, as did the protein expression of follistatin-like protein 1 (FSTL1). In contrast, expression of miR-200b-3p significantly increased in a dose-dependent manner. These results suggested that baicalin could significantly inhibit the expression of inflammation-related proteins and improve LPS-induced inflammatory injury in alveolar type II epithelial cells. The mechanism may be related to the inhibition of ERK/JNK inflammatory pathway activation by increasing the expression of miR-200b-3p. Thus, FSTL1 is the regulatory target of miR-200b-3p.  相似文献   

12.
Cholesterol gallstones are solid calculi that form in the gallbladder from bile constituents and chiefly comprise cholesterol. Cholesterol gallstones are prevalent and costly for healthcare systems. In addition to various environmental factors, genetic risk contributes substantially to gallstone susceptibility. Candidate gene approaches to identify contributory genes are based on prior knowledge of gene-protein function. Whether selected from the entire genome or from limited genomic regions detected by experimental linkage analyses, thus far, candidate genes predominantly were related to lipid homeostasis. Alternatively, comprehensive review of available data suggests that a fundamental driving force underlying cholesterol gallstone formation is inflammation. Therefore, we predict that Lith genes in mice and LITH genes in humans also encode inflammatory molecules, their receptors and other mediators. Indeed, many Lith loci, defined experimentally using inbred mouse models, co-localise with genes that encode inflammation-related proteins. Systematic review of the literature reveals evidence consistent with inflammatory responses that may dictate each of the three cornerstones of cholesterol gallstone formation: biliary cholesterol supersaturation; cholesterol nucleation; gallbladder hypomotility. Genetically targeted inbred mice represent a powerful tool to interrogate the relationship between immune-related genes and gallstone susceptibility. We urge researchers to consider inflammation-related genes when designing population case-control genetic association studies pertaining to the genetic basis of gallstones. Immune and inflammatory events underlie each criterion necessary for cholesterol gallstone formation, which suggests that variation within the respective genes is fundamental for gallstone formation. In turn, inflammatory mediators may exert a spectrum of effects in response to genetic variation within lipid homeostatic genes.  相似文献   

13.
Responsible for interpreting histone post-translational modifications, epigenetic reader proteins have emerged as novel therapeutic targets for a wide range of diseases. Chemical probes have been critical in enabling target validation studies and have led to translational advances in cancer and inflammation-related pathologies. Here, we present the most recently reported probes of reader proteins that recognize acylated and methylated lysine. We will discuss challenges associated with achieving potent antagonism of reader domains and review ongoing efforts to overcome these hurdles, focusing on targeting strategies including the use of peptidomimetic ligands, allosteric modulators, and protein degraders.  相似文献   

14.
Antioxidant intake may be linked to a reduction of the chronic low-grade inflammatory state related to obesity and several accompanying disorders such as insulin resistance, cardiovascular diseases, and metabolic syndrome. So, the aim of this study was to evaluate the potential associations between nail trace elements and several indicators in healthy young adults, emphasizing on the putative effect of antioxidant trace element intake on inflammation-related marker concentrations. This study enrolled 149 healthy young adults, whose anthropometrical and blood pressure values as well as lifestyle features were analyzed. Fasting blood samples were collected for the biochemical and inflammation-related measurements (C-reactive protein, tumor necrosis factor-alpha (TNF-α), interleukin (IL)-6, IL-18, and homocysteine). Nail samples were collected for the analysis of selenium, zinc, and copper concentrations. Our results showed that nail selenium was negatively associated with IL-18; nail zinc concentrations were inversely related to circulating IL-6, IL-18, and TNF-α, whereas nail copper (Cu) and Cu/selenium values were negatively correlated with homocysteine levels and the Cu/zinc ratio was unaffected. In conclusion, nail content on some trace elements related to antioxidant defense mechanisms seems to be associated with several inflammation-related markers linked to chronic diseases in apparently healthy young adults, which is of interest to understand the role of antioxidant intake.  相似文献   

15.
Polymorphoneuclear leukocytes or neutrophils, a major component of white blood cells, contribute to the innate immune response in humans. Upon sensing changes in the microenvironment, neutrophils adhere to the vascular wall, migrate through the endothelial cell (EC)-pericyte bilayer, and subsequently through the extracellular matrix to reach the site of inflammation. These cells are capable of destroying microbes, cell debris, and foreign proteins by oxidative and non-oxidative processes. While primarily mediators of tissue homeostasis, there are an increasing number of studies indicating that neutrophil recruitment and transmigration can also lead to host-tissue injury and subsequently inflammation-related diseases. Neutrophil-induced tissue injury is highly regulated by the microenvironment of the infiltrated tissue, which includes cytokines, chemokines, and the provisional extracellular matrix, remodeled through increased vascular permeability and other cellular infiltrates. Thus, investigation of the effects of matrix proteins on neutrophil-EC interaction and neutrophil transmigration may help identify the proteins that induce pro- or anti-inflammatory responses. This area of research presents an opportunity to identify therapeutic targets in inflammation-related diseases. This review will summarize recent literature on the role of neutrophils and the effects of matrix proteins on neutrophil-EC interactions, with focus on three different disease models: 1) atherosclerosis, 2) COPD, and 3) tumor growth and progression. For each disease model, inflammatory molecules released by neutrophils, important regulatory matrix proteins, current anti-inflammatory treatments, and the scope for further research will be summarized.  相似文献   

16.
Studying cartilage differentiation, we observed the emergence of inflammation-related proteins suggesting that a common pathway was activated in cartilage differentiation and inflammation. In the present paper, we investigated the expression pathway of the inflammation-related enzyme Cyclooxygenase-2 (COX-2) during differentiation and inflammatory response of the chondrocytic cell line MC615. Cells were cultured either as (i) proliferating prechondrogenic cells expressing type I collagen or (ii) differentiated hyperconfluent cells expressing Sox9 and type II collagen. The p38 and the NF-kB pathways were investigated in standard conditions and after inflammatory agents treatment. NF-kB was constitutively activated in differentiated cells. The activation level of NF-kB in differentiated cells was comparable to the level in proliferating cells treated with the inflammatory agent LPS. In both cases, p65 was bound to the NF-kB consensus sequence of COX-2 promoter. p38, constitutively activated in differentiated cells, was activated in proliferating cells by treatment with LPS or IL-1alpha. In stimulated proliferating cells the two pathways are connected since addition of the p38-specific inhibitor SB203580 inhibited p38 activation, significantly reduced NF-kB activation and repressed COX-2 synthesis indicating that p38 is upstream NF-kB activation and COX-2 synthesis. In differentiated cells, the treatment with the inflammatory agent neither enhance NF-kB activation, nor synthesis of COX-2 while the addition of SB203580 neither repressed activation of p38, nor COX-2 synthesis, suggesting a constitutive activation of a p38/NF-kB/COX2 pathway. Our data indicate that in chondrocytes, COX-2 is expressed via p38 activation/NF-kB recruitment during both differentiation and inflammatory response.  相似文献   

17.
18.
Previously, we have shown that DA-6034, a synthetic derivative of flavonoid eupatilin, inhibited NF-kappaB activation in colon epithelial cells and prevented trinitrobenzene sulfonic acid-induced rat colitis. The aim of this study was to investigate the preventive and therapeutic effect of DA-6034 on dextran sulfate sodium (DSS)-induced colitis and on inflammation-related cancer. C57BL/6 mice were given 4% DSS for 5 days with and without DA-6034 in the acute preventive model. In the acute therapeutic model, mice were given 4% DSS for 5 days followed by rectal administration of DA-6034. Colitis was quantified by body weight, disease activity index (DAI), colon length, and histology. In the inflammation-related cancer model, mice were given a single intraperitoneal injection of azoxymethane, then three cycles of 2% DSS for 5 days, then 2 weeks of free water consumption. Apoptosis was determined by in situ terminal deoxynucleotidyl transferase-mediated deoxyuridine triphosphate nick-end labeling assay, and the expression of Ki-67, phospho-kappaB kinase alpha (IKKalpha), and COX-2 were evaluated by immunohistochemistry. In both the acute preventive and acute therapeutic models, DA-6034 significantly attenuated DSS-induced weight loss, an increase in DAI, and a shortening of colon length. DA-6034-treated mice maintained crypt architecture and revealed a scanty infiltration of inflammatory cells in both the preventive and therapeutic models. In the inflammation-related cancer model, DA-6034 reduced the number of colon tumors and ameliorated weight loss and shortening of colon length. DA-6034 strongly enhanced apoptosis and inhibited the expression of COX-2 and phospho-IKKalpha in inflammation-related colon cancer models. Our results suggest that DA-6034 prevents acute murine colitis and inhibits inflammation-related colon carcinogenesis. DA-6034 could be a potential therapeutic agent for inflammatory bowel disease.  相似文献   

19.
细菌中常见的蛋白翻译后修饰   总被引:1,自引:0,他引:1  
蛋白质的翻译后修饰在生物体生命活动中发挥着重要作用,大部分蛋白质都会经历翻译后修饰。对这些修饰的了解和掌握非常重要,因为这些修饰可能会改变蛋白质的物理及化学性质,如折叠、构象、稳定性及活性,从而改变蛋白的功能。此外,修饰基团本身也可能具有某些功能。因此,分析研究蛋白质翻译后修饰具有重要意义。细菌中常见的翻译后修饰过程有糖基化、磷酸化和乙酰化,我们简要综述了这几种修饰过程。  相似文献   

20.
β-Carotene is converted into vitamin A in the body and can remove reactive oxygen species. However, it is still unclear whether β-carotene alters the expression levels of inflammation-related genes in macrophages and how this is regulated. In the present study, we investigated whether the administration of β-carotene under hyperglycemic conditions altered the expression level of inflammation-related genes and whether any observed differences were associated with changes in histone modifications in juvenile macrophage-like THP-1 cells. THP-1 cells (from a human monocytic leukemia cell line) were cultured in low glucose (5 mM), high glucose (25 mM), or high glucose (25 mM) + β-carotene (5 μM) media for 1 day, and mRNA expression levels of genes related to oxidative stress and inflammation, and histone modifications were determined by mRNA microarray and qRT-PCR analyses, and chromatin immunoprecipitation assays, respectively. The expression of inflammation-related genes, such as IL31RA, CD38, and NCF1B, and inflammation-associated signaling pathway genes, such as ITGAL, PRAM1, and CSF3R, were upregulated by β-carotene under high-glucose conditions. Under these conditions, histone H3 lysine 4 (K4) demethylation, H3K36 trimethylation, and H3K9 acetylation around the CD38, NCF1B, and ITGAL genes were higher in β-carotene-treated cells than in untreated cells. Treatment of juvenile macrophage-like THP-1 cells with β-carotene under these high glucose conditions induced the expression of inflammation-related genes, K9 acetylation, and K4 di- and K36 trimethylation of histone H3 around these genes.  相似文献   

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