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91.
92.
Tumour‐associated macrophages (TAMs), which possess M2‐like characters and are derived from immature monocytes in the circulatory system, represent a predominant population of inflammatory cells in solid tumours. TAM infiltration in tumour microenvironment can be used as an important prognostic marker in many cancer types and is a potential target for cancer prevention or treatment. VEGI‐251 not only is involved in the inhibition of tumour angiogenesis, but also participates in the regulation of host immunity. This work aimed to investigate the involvement of VEGI‐251 in the regulation of specific antitumour immunity. We found that recombinant human VEGI‐251(rhVEGI‐251) efficiently mediated the elimination of TAMs in tumour tissue in mice, and induced apoptosis of purified TAMs in vitro. During this process, caspase‐8 and caspase‐3 were activated, leading to PARP cleavage and apoptosis. Most importantly, we further elucidated the mechanism underlying VEGI‐251‐triggered TAM apoptosis, which suggests that ASK1, an intermediate component of the VEGI‐251, activates the JNK pathway via TRAF2 in a potentially DR3‐dependent manner in the process of TAM apoptosis. Collectively, our findings provide new insights into the basic mechanisms underlying the actions of VEGI‐251 that might lead to future development of antitumour therapeutic strategies using VEGI‐251 to target TAMs.  相似文献   
93.
Postnatal development of the mouse uterus involves differentiation and development of the endometrial glands as well as the myometrium. Matrix metalloproteinases (MMPs) and their tissue inhibitors (TIMPs) are involved in extracellular matrix breakdown and morphogenesis of many epitheliomesenchymal organs. As a first step to understanding their roles in postnatal mouse uterine development, MMPs and TIMPs found to be expressed in the neonatal mouse uterus by microarray analysis were localized by in situ hybridization. The MMP-2 mRNA was detected only in the uterine stroma, whereas the MMP-10 mRNA was present only in the uterine epithelium from Postnatal Day (PND) 3 to PND 9. All other MMPs (MMP-11, MMP-14, and MMP-23) as well as TIMP-1, TIMP-2, and TIMP-3 were detected in both epithelial and stromal cells of the endometrium, but not in the myometrium. Uterine extracts were then analyzed by gelatin and casein gel zymography to detect active gelatinases and stromelysins, respectively. Five major gelatinase bands of activity were detected and inhibited by the MMP inhibitors, EDTA or 1,10-phenanthroline, but not by PMSF, a serine protease inhibitor. Western blot analysis confirmed the presence of MMP-2 and MMP-9 proteins in the uterus. Immunoreactive MMP-9 protein was detected only in the endometrial stroma, whereas immunoreactive MMP-2 protein was detected in both the stroma and epithelium of the uterus. Casein zymography detected three major bands of activity ( approximately 54, 63, and 80 kDa) that were inhibited by the serine protease inhibitor, PMSF, but not by the MMP inhibitors, EDTA or 1,10-phenanthroline, suggesting that they were serine proteases. These results support the hypothesis that MMPs and TIMPs regulate postnatal development of the mouse uterus.  相似文献   
94.
Phosphorus is a major nutrient vital for plant growth and development, with a substantial amount of cellular phosphorus being used for the biosynthesis of membrane phospholipids. Here, we report that NON-SPECIFIC PHOSPHOLIPASE C4 (NPC4) in rapeseed (Brassica napus) releases phosphate from phospholipids to promote growth and seed yield, as plants with altered NPC4 levels showed significant changes in seed production under different phosphate conditions. Clustered regularly interspaced short palindromic repeat (CRISPR)/CRISPR-associated nuclease 9 (Cas9)-mediated knockout of BnaNPC4 led to elevated accumulation of phospholipids and decreased growth, whereas overexpression (OE) of BnaNPC4 resulted in lower phospholipid contents and increased plant growth and seed production. We demonstrate that BnaNPC4 hydrolyzes phosphosphingolipids and phosphoglycerolipids in vitro, and plants with altered BnaNPC4 function displayed changes in their sphingolipid and glycerolipid contents in roots, with a greater change in glycerolipids than sphingolipids in leaves, particularly under phosphate deficiency conditions. In addition, BnaNPC4-OE plants led to the upregulation of genes involved in lipid metabolism, phosphate release, and phosphate transport and an increase in free inorganic phosphate in leaves. These results indicate that BnaNPC4 hydrolyzes phosphosphingolipids and phosphoglycerolipids in rapeseed to enhance phosphate release from membrane phospholipids and promote growth and seed production.  相似文献   
95.
The Chinese wheat mosaic virus (CWMV) genome consists of two positive-strand RNAs that are required for CWMV replication and translation. The eukaryotic translation elongation factor (eEF1A) is crucial for the elongation of protein translation in eukaryotes. Here, we show that silencing eEF1A expression in Nicotiana benthamiana plants by performing virus-induced gene silencing can greatly reduce the accumulation of CWMV genomic RNAs, whereas overexpression of eEF1A in plants increases the accumulation of CWMV genomic RNAs. In vivo and in vitro assays showed that eEF1A does not interact with CWMV RNA-dependent RNA polymerase. Electrophoretic mobility shift assays revealed that eEF1A can specifically bind to the 3ʹ-untranslated region (UTR) of CWMV genomic RNAs. By performing mutational analyses, we determined that the conserved region in the 3ʹ-UTR of CWMV genomic RNAs is necessary for CWMV replication and translation, and that the sixth stem-loop (SL-6) in the 3ʹ-UTR of CWMV genomic RNAs plays a key role in CWMV infection. We conclude that eEF1A is an essential host factor for CWMV infection. This finding should help us to develop new strategies for managing CWMV infections in host plants.  相似文献   
96.
A new series of vinorelbine analogues are designed and synthesized to explore the vindoline C-16 substituent effects on the biomimetic coupling with catharanthine, and the structure-activity relationships of these vinorelbine analogues as cytotoxic agents are also studied. The results show that introduction of severe steric hindrance and/or electron-withdrawing group at C-16 site are not propitious to improving the yields of the coupling reaction, and the SAR information collected so far suggests that small alkyl groups substituted at C-16 of vindoline are conductive to maintaining the cytotoxicity.  相似文献   
97.
对玉米Hz85(O2/O2)和 Hz85(o2/o2)以及S7913(O2/O2)和 S7913 (o2/o2)两种不同核背景下的近等基因系(NIL),采用cDNA芯片杂交技术研究玉米o2突变基因及赖氨酸形成和胚乳发生相关基因在RNA水平上的表达差异。在两套NILs中检测到共同的表达差异克隆87个,对其序列分析得到26个TUGs(tentative unique genes)、11个未命名蛋白和6个新序列。这些TUGs分别参与了生长发育、胁迫响应、物质运输、信号转导、电子传递链、细胞防御、代谢等细胞过程,以及作为细胞组分和贮存蛋白。基于O2/o2 NILs间胚乳发育中基因表达的差异,讨论了o2籽粒中的不透明粉质胚乳形成的分子机制。  相似文献   
98.
李晓颜  康璇 《中国微生态学杂志》2014,(11):1268-1271,1274
目的探讨髓源性抑制细胞(MDSC)在乙肝HBe Ag阳性﹑HBe Ab阳性患者外周血中的表达水平及临床意义,并进一步分析MDSC与HBV-DNA的动态关系。方法 (1)选取乙肝两对半符合HBe Ag阳性﹑HBe Ab阳性表型的患者60例,将这些标本分为HBe Ag阳性组、HBe Ab阳性组。分析MDSC在这两组间的表达差别。(2)将患者分为HBV-DNA阳性组和HBV-DNA阴性组,分析HBV-DNA的复制水平与MDSC表达的相关性。(3)用流式细胞仪检测外周血中以CD33^+CD11b^+HLA-DR^-为特征的MDSC占外周血粒细胞的百分比。(4)结合患者的其他指标(ALT、AST、GGT),利用统计学软件分析其与MDSC表达水平之间的关系,进一步探讨它的临床意义。结果乙肝(HBe Ag阳性)MDSC表达水平(10.85±4.21)(n=22)(t=12.091)高于HBe Ab阳性组(5.88±2.95)(n=38)(t=12.281)(P〈0.01),结果差异有统计学意义;乙肝DNA阳性组中MDSC表达水平(9.30±4.44)(n=30)(t=11.473)显著高于DNA阴性组(6.10±3.29)(n=30)(t=10.161)(P〈0.01);乙肝患者外周血中的MDSC表达水平与ALT、AST、GGT成正相关。结论乙肝HBe Ag阳性、HBe Ab阳性阳患者外周血中的MDSC表达水平可能与乙肝的发生、发展密切相关;MDSC的表达水平与HBV-DNA复制水平呈正相关;外周血MDSC表达水平可作为乙肝患者临床监测的指标。  相似文献   
99.
c-Abl是非受体酪氨酸激酶,它在细胞内被一些基因毒性的、氧化的及其它形式的压力所激活。目前研究证明:应用标记的c-Abl发现其在细胞内可以相互形成同源二聚体,并且一分子c-Abl的N末端区域与相应的另一分子的C末端相互作用形成二聚体。实验进一步表明: cAbl SH3 结构域结合到另一c-Abl 分子富含脯氨酸的C-末端约958-982氨基酸区域。如果去除c-Abl 富含脯氨酸的结构域,就会阻止二聚体的形成。这些结果首先证实了c-Abl在细胞内可以相互形成同源二聚体,并暗示着二聚体的形成可能影响着c-Abl活性的调节。  相似文献   
100.
本研究运用组织分离法对采自贵州省都匀市斗篷山景区的地衣进行内生真菌分离,乙酸乙酯萃取菌株液体发酵物,通过打孔法筛选地衣内生真菌提取物并对9株临床致病菌株及耐药菌株进行抑菌活性实验.结果表明一株分离自星点梅衣属地衣Puncteliasp.的内生真菌DPS-165-9对其中的6株显示抑制活性.此6株菌为金黄色葡萄球菌Sta...  相似文献   
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