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101.
The gut microbiota plays an important yet incompletely understood role in the induction and propagation of ulcerative colitis (UC). Organism-level efforts to identify UC-associated microbes have revealed the importance of community structure, but less is known about the molecular effectors of disease. We performed 16S rRNA gene sequencing in parallel with label-free data-dependent LC-MS/MS proteomics to characterize the stool microbiomes of healthy (n = 8) and UC (n = 10) patients. Comparisons of taxonomic composition between techniques revealed major differences in community structure partially attributable to the additional detection of host, fungal, viral, and food peptides by metaproteomics. Differential expression analysis of metaproteomic data identified 176 significantly enriched protein groups between healthy and UC patients. Gene ontology analysis revealed several enriched functions with serine-type endopeptidase activity overrepresented in UC patients. Using a biotinylated fluorophosphonate probe and streptavidin-based enrichment, we show that serine endopeptidases are active in patient fecal samples and that additional putative serine hydrolases are detectable by this approach compared with unenriched profiling. Finally, as metaproteomic databases expand, they are expected to asymptotically approach completeness. Using ComPIL and de novo peptide sequencing, we estimate the size of the probable peptide space unidentified (“dark peptidome”) by our large database approach to establish a rough benchmark for database sufficiency. Despite high variability inherent in patient samples, our analysis yielded a catalog of differentially enriched proteins between healthy and UC fecal proteomes. This catalog provides a clinically relevant jumping-off point for further molecular-level studies aimed at identifying the microbial underpinnings of UC.  相似文献   
102.
In the 35 years since the revelation that short peptides bound to major histocompatibility complex class I and II molecules are the secret of the major histocompatibility complex–restricted nature of T-cell recognition, there has been enormous progress in characterizing the immunopeptidome, the repertoire of peptide presented for immunosurveillance. Here, the major milestones in the journey are marked, the contribution of proteasome-mediated splicing to the immunopeptidome is discussed, and exciting recent findings relating the immunopeptidome to the translatome revealed by ribosome profiling (RiboSeq) is detailed. Finally, what is needed for continued progress is opined about, which includes the infusion of talented young scientists into the antigen-processing field, currently undergoing a renaissance; thanks in part to the astounding success of T-cell–based cancer immunotherapy.  相似文献   
103.
Brain Cytochrome Oxidase in Alzheimer''s Disease   总被引:5,自引:0,他引:5  
A recent demonstration of markedly reduced (-50%) activity of cytochrome oxidase (CO; complex 4), the terminal enzyme of the mitochondrial enzyme transport chain, in platelets of patients with Alzheimer's disease (AD) suggested the possibility of a systemic and etiologically fundamental CO defect in AD. To determine whether a CO deficiency occurs in AD brain, we measured the activity of CO in homogenates of autopsied brain regions of 19 patients with AD and 30 controls matched with respect to age, postmortem time, sex, and, as indices of agonal status, brain pH and lactic acid concentration. Mean CO activity in AD brain was reduced in frontal (-26%: p less than 0.01), temporal (-17%; p less than 0.05), and parietal (-16%; not significant, p = 0.055) cortices. In occipital cortex and putamen, mean CO levels were normal, whereas in hippocampus, CO activity, on average, was nonsignificantly elevated (20%). The reduction of CO activity, which is tightly coupled to neuronal metabolic activity, could be explained by hypofunction of neurons, neuronal or mitochondrial loss, or possibly by a more primary, but region-specific, defect in the enzyme itself. The absence of a CO activity reduction in all of the examined brain areas does not support the notion of a generalized brain CO abnormality. Although the functional significance of a 16-26% cerebral cortical CO deficit in human brain is not known, a deficiency of this key energy-metabolizing enzyme could reduce energy stores and thereby contribute to the brain dysfunction and neurodegenerative processes in AD.  相似文献   
104.
Accumulation of amyloid-β (Aβ) is widely accepted as the key instigator of Alzheimer’s disease (AD). The proposed mechanism is that accumulation of Aβ results in inflammatory responses, oxidative damages, neurofibrillary tangles and, subsequently, neuronal/synaptic dysfunction and neuronal loss. Given the critical role of Aβ in the disease process, the proteases that produce this peptide are obvious targets. The goal would be to develop drugs that can inhibit the activity of these targets. Protease inhibitors have proved very effective for treating other disorders such as AIDS and hypertension. Mutations in APP (amyloid-β precursor protein), which flanks the Aβ sequence, cause early-onset familial AD, and evidence has pointed to the APP-to-Aβ conversion as a possible therapeutic target. Therapies aimed at modifying Aβ-related processes aim higher up the cascade and are therefore more likely to be able to alter the progression of the disease. However, it is not yet fully known whether the increases in Aβ levels are merely a result of earlier events that were already causing the disease.  相似文献   
105.
In the second half of 2005, a large-scale outbreak of influenza in poultry and wild birds was caused by a highly pathogenic H5N1 influenza virus in Russia. The level of pathogenicity is a polygenic trait, and most individual genes contribute to the influenza A virus pathogenicity in birds, animals, and humans. The full-length nucleotide sequences were determined for H5N1 strains isolated in the Kurgan region (Western Siberia). The structure of viral proteins was analyzed using the deduced amino acid sequences. The receptor-binding site of hemagglutinin (HA) in strains A/chicken/Kurgan/05/2005 and A/duck/Kurgan/08/2005 was typical for avian influenza viruses and contained Glu and Gly at positions 226 and 228, respectively. The structure of the basic amino acid cluster located within the HA cleavage site was identical in all isolates: QGERRRKKR. According to the neuraminidase structure, all H5N1 isolates from the Kurgan region were assigned to the Z genotype. Amino acid residues typical for the avian influenza virus were revealed in 30 out of 32 positions of M1, M2, NP, PA, and PB2, determining the host range specificity. One of the strains contained Lys at position 627 of PB2. Isolates from the Kurgan region were shown to have a remantadine-sensitive genotype. Both strains contained Glu at position 92 of NS1, indicating that the virus is interferon-resistant. Phylogenetic analysis related the Kurgan isolates to subclade 2 of clade 2 of highly pathogenic H5N1 influenza viruses.  相似文献   
106.
The spinocerebellar ataxias (SCAs) are a class of incurable diseases characterized by degeneration of the cerebellum that results in movement disorder. Recently, a new heritable form of SCA, spinocerebellar ataxia type 48 (SCA48), was attributed to dominant mutations in STIP1 homology and U box-containing 1 (STUB1); however, little is known about how these mutations cause SCA48. STUB1 encodes for the protein C terminus of Hsc70 interacting protein (CHIP), an E3 ubiquitin ligase. CHIP is known to regulate proteostasis by recruiting chaperones via a N-terminal tetratricopeptide repeat domain and recruiting E2 ubiquitin-conjugating enzymes via a C-terminal U-box domain. These interactions allow CHIP to mediate the ubiquitination of chaperone-bound, misfolded proteins to promote their degradation via the proteasome. Here we have identified a novel, de novo mutation in STUB1 in a patient with SCA48 encoding for an A52G point mutation in the tetratricopeptide repeat domain of CHIP. Utilizing an array of biophysical, biochemical, and cellular assays, we demonstrate that the CHIPA52G point mutant retains E3-ligase activity but has decreased affinity for chaperones. We further show that this mutant decreases cellular fitness in response to certain cellular stressors and induces neurodegeneration in a transgenic Caenorhabditis elegans model of SCA48. Together, our data identify the A52G mutant as a cause of SCA48 and provide molecular insight into how mutations in STUB1 cause SCA48.  相似文献   
107.
摘要 目的:揭示miR-455-5p对呼吸道合胞病毒(RSV)感染致气道上皮细胞炎症反应的作用机制。方法:qRT-PCR检测30例健康体检儿童(健康组)、RSV感染轻症组(n=41)和重症组(n=31)患儿血清miR-455-5p水平。将16HBE细胞分为Control组、NC-agomir组、miR-455-5p-agomir组、NC-antagomir组、miR-455-5p-antagomir组。使用Lipofectamine 3000转染16HBE细胞后培养48 h后,分为Blank组、NC组(转染了NC-agomir的细胞)、RSV+NC-agomir组、RSV+miR-455-5p-agomir组,用RSV病毒液感染RSV+NC-agomir组和RSV+miR-455-5p-agomir组16HBE细胞,Blank组和NC组16HBE细胞正常培养。用CCK-8法和EdU法检测细胞增殖、TUNEL法检测细胞凋亡、ELISA法检测上清液中TNF-α、IL-6、IL-8水平,qRT-PCR检测miR-455-5p和SOCS3的mRNA水平,Western blot检测SOCS3、IFN-α、STAT1、STAT2、p-STAT1和p-STAT2的蛋白水平。结果:与健康组相比,轻症组和重症组患儿的血清miR-455-5p水平降低(P<0.05)。与轻症组相比,重症组的血清miR-455-5p水平降低(P<0.05)。与Control组和NC-agomir组相比,miR-455-5p-agomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率升高(P<0.05),TUNEL阳性率降低(P<0.05),上清液中的TNF-α、IL-6和IL-8水平降低(P<0.05),SOCS3 mRNA和蛋白水平降低(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平升高(P<0.05)。与Control组和NC-antagomir组相比,miR-455-5p-antagomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率降低(P<0.05),TUNEL阳性率升高(P<0.05),上清液中的TNF-α、IL-6和IL-8水平升高(P<0.05),SOCS3 mRNA和蛋白水平升高(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平降低(P<0.05)。与Blank组和NC组相比,RSV+NC-agomir组16HBE细胞的miR-455-5p水平、相对细胞活力和EdU阳性率降低(P<0.05),TUNEL阳性率升高(P<0.05),上清液中的TNF-α、IL-6和IL-8水平升高(P<0.05),SOCS3 mRNA和蛋白水平升高(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平降低(P<0.05)。与RSV+NC-agomir组相比,RSV+miR-455-5p-agomir组的miR-455-5p水平、相对细胞活力和EdU阳性率升高(P<0.05),TUNEL阳性率降低(P<0.05),上清液中的TNF-α、IL-6和IL-8水平降低(P<0.05),SOCS3 mRNA和蛋白水平降低(P<0.05),IFN-α蛋白、STAT1和STAT2磷酸化水平升高(P<0.05)。结论:miR-455-5p在RSV感染患儿血清中下调,上调miR-455-5p通过抑制SOCS3的转录和表达从而激活RSV感染的16HBE细胞中IFN-α介导的抗病毒反应。  相似文献   
108.
摘要 目的:寻找具有血栓素A2受体(Thromboxane A2 receptor,TP)抑制作用的选择性环氧合酶-2(Cyclooxygenase-2,COX-2)抑制剂,以期降低其心血管疾病风险。方法:本研究从公开数据库中获取了512种TP抑制剂,通过分子对接、分子动力学模拟和ADMET预测,筛选出化合物TP84。结果:分子对接结果显示,与先前获批的选择性COX-2抑制剂罗非昔布相比,TP84对COX-2的亲和力更高,对环氧合酶-1(Cyclooxygenase-1,COX-1)的亲和力更低;分子动力学模拟进一步表明,模拟过程中TP84与COX-1的结合不稳定,而TP84能稳定结合COX-2,与COX-2的结合自由能是COX-1的3倍;此外,根据ADMET预测,TP84的药物化学、吸收、分布、代谢、排泄和毒性处于类药物候选物的可接受范围内。结论:TP84是一种潜在的低心血管疾病风险选择性COX-2抑制剂。  相似文献   
109.
摘要 目的:探讨慢性阻塞性肺疾病(chronic obstructive pulmonary disease,COPD)不同表型评估测试问卷(COPD assessment test,CAT)评分与肺功能及预后的关系。方法:收集361例COPD患者临床资料、CAT评分、肺功能检查结果及肺外合并症、肺内并发症等情况,按临床表型分为肺气肿组(n=200)和支气管炎组(n=161),分析肺气肿组200例和支气管炎组161例COPD患者CAT评分与肺功能及预后的关系。结果:肺气肿组CAT评分高于支气管炎组(P<0.05),一秒用力呼气容积(FEV1)占预计值百分比(FEV1%)、FEV1/用力肺活量(FVC)低于支气管炎组(P<0.05),吸气分数(IC/TLC)低于支气管炎组,残总比(RV/TLC)高于支气管炎组(P<0.05);肺气肿组肺间质性病变、肺动脉高压发生率均高于支气管炎组(P<0.05);支气管炎、肺气肿组CAT评分均与FEV1%、FEV1/FVC、IC/TLC呈负相关(P<0.05),与RV/TLC呈正相关(P<0.05),肺气肿各参数相关度更高(P<0.05);肺气肿组不同CAT评分患者肺间质性病变、肺动脉高压发生率比较差异有统计学意义(P<0.05),支气管炎组不同CAT评分肺动脉高压发生率比较差异有统计学意义(P<0.05),随CAT评分的升高,肺气肿组肺间质性病变、肺动脉高压发生率上升,支气管炎组肺动脉高压发生率上升。结论: COPD肺气肿表型CAT评分较支气管炎表型高,肺功能降低更明显,呈现肺过度通气,气流受限特点,更易并发肺间质纤维化、肺动脉高压,且与CAT评分变化密切相关。  相似文献   
110.
摘要 目的:探讨妊娠合并乙肝病毒(HBV)感染患者血清脱氧核糖核酸甲基转移酶1(DNMT1)、T细胞免疫球蛋白粘蛋白-3(TIM-3)与乙型肝炎病毒-脱氧核糖核酸(HBV-DNA)病毒载量和妊娠结局的关系。方法:选取2021年1月~2022年1月南京医科大学第一附属医院收治的186例妊娠合并HBV感染患者为HBV感染组,根据HBV-DNA病毒载量分为阳性组56例和阴性组130例,根据妊娠结局分为结局不良组和结局良好组,另选取同期于南京医科大学第一附属医院进行孕检的150名健康孕妇为对照组。采用酶联免疫吸附法检测血清DNMT1、TIM-3水平。比较HBV感染组与对照组、阳性组与阴性组血清DNMT1、TIM-3水平。采用单因素及多因素Logistic回归分析妊娠合并HBV感染患者妊娠结局不良的影响因素,受试者工作特征(ROC)曲线分析血清DNMT1、TIM-3水平对妊娠合并HBV感染患者妊娠结局不良的预测价值。结果:与对照组比较,HBV感染组血清DNMT1、TIM-3水平升高(P<0.05)。与阴性组比较,阳性组血清DNMT1、TIM-3水平升高(P<0.05)。186例妊娠合并HBV感染患者妊娠结局不良发生率为55.38%(103/186)。单因素分析显示,妊娠结局不良与HBV感染孕周、HBV-DNA病毒载量、谷草转氨酶(AST)、谷丙转氨酶(ALT)、DNMT1、TIM-3有关(P<0.05)。多因素Logistic回归分析显示,HBV-DNA病毒载量阳性和DNMT1>34.94 ng/mL、TIM-3>18.96 pg/mL为妊娠合并HBV感染患者妊娠结局不良的独立危险因素(P<0.05)。ROC曲线分析显示,血清DNMT1、TIM-3水平单独和联合检测预测妊娠合并HBV感染患者妊娠结局不良的曲线下面积分别为0.798、0.791、0.870。结论:妊娠合并HBV感染患者血清DNMT1、TIM-3水平升高与HBV-DNA病毒载量阳性和妊娠结局不良密切相关,血清DNMT1、TIM-3水平联合对妊娠合并HBV感染患者妊娠结局预测价值良好。  相似文献   
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