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991.
研究p21活化激酶2(p21-activated kinase2,PAK2)在卵母细胞成熟过程中的作用.以爪蟾卵母细胞为模型,分别向爪蟾卵母细胞显微注射PAK2-N端(PAK2-N-terminal,PAK2-NT)和PAK2-N端突变体(PAK2-N-terminal mutation,PAK2-NTm)mRNA,荧光显微镜下观察胚泡破裂发生.采用共聚焦显微镜,时间延迟摄影法观察正常卵母细胞、PAK2-NTmRNA注射组和PAK2-NTm mRNA注射组卵母细胞胞质分裂、极体形成及与Cdc42活性的关系.结果表明,PAK2-NTmRNA和PAK2-NTm mRNA注射组的卵母细胞与正常卵母细胞胚泡破裂发生相似,但PAK2-NTmRNA和PAK2-NTm mRNA注射组未见胞质分裂和极体形成.结果提示,PAK2参与卵母细胞胞质分裂和极体形成可能不依赖于Cdc42的调节过程. 相似文献
992.
猫视网膜年龄相关的形态学变化 总被引:6,自引:1,他引:6
取老年猫(12龄,3~3.5kg)和青年猫(1~3龄,2~2.5kg)各4只的视网膜,经4%多聚甲醛处理后,用H.E.染色以显示视网膜结构,Nissl染色显示神经节细胞,免疫组织化学ABC法染色以显示星形胶质细胞特征性标志物胶质纤维酸性蛋白(GFAP)的阳性反应细胞的分布。显微镜下观察测量视网膜厚度,计数神经节细胞、GFAP免疫反应阳性细胞数。与青年猫比较,老年猫视网膜总厚度以及外核层、外网状层、内核层和内网状层厚度均显著减小;神经节细胞层的细胞密度显著下降;GFAP免疫反应阳性细胞显著增加,GFAP阳性细胞阳性反应强,胞体明显膨胀,突起稠密粗大。推测在衰老过程中视网膜细胞有神经元丢失现象,可能是造成视觉功能衰退的重要原因之一;视网膜星形胶质细胞的功能增强可能会延缓衰老。 相似文献
993.
Gakidis MA Cullere X Olson T Wilsbacher JL Zhang B Moores SL Ley K Swat W Mayadas T Brugge JS 《The Journal of cell biology》2004,166(2):273-282
Integrin regulation of neutrophils is essential for appropriate adhesion and transmigration into tissues. Vav proteins are Rho family guanine nucleotide exchange factors that become tyrosine phosphorylated in response to adhesion. Using Vav1/Vav3-deficient neutrophils (Vav1/3ko), we show that Vav proteins are required for multiple beta2 integrin-dependent functions, including sustained adhesion, spreading, and complement-mediated phagocytosis. These defects are not attributable to a lack of initial beta2 activation as Vav1/3ko neutrophils undergo chemoattractant-induced arrest on intercellular adhesion molecule-1 under flow. Accordingly, in vivo, Vav1/3ko leukocytes arrest on venular endothelium yet are unable to sustain adherence. Thus, Vav proteins are specifically required for stable adhesion. beta2-induced activation of Cdc42, Rac1, and RhoA is defective in Vav1/3ko neutrophils, and phosphorylation of Pyk2, paxillin, and Akt is also significantly reduced. In contrast, Vav proteins are largely dispensable for G protein-coupled receptor-induced signaling events and chemotaxis. Thus, Vav proteins play an essential role coupling beta2 to Rho GTPases and regulating multiple integrin-induced events important in leukocyte adhesion and phagocytosis. 相似文献
994.
Xiao Shuhua Peter J. Hotez Sen Binggui Liu Sen Qiang Huiqing Xue Haichou Zhan Bin Feng Zheng 《Parasitology international》2001,50(4):241-248
The role of neutrophils in mediating host inflammation was examined in mice vaccinated with living third-stage infective hookworm larvae (L3). Mice were vaccinated by oral immunization with 500 L3 (Ancylostoma caninum) once every 2 weeks for a total of three immunizations. The vaccinated mice were then challenged intraperitoneally with 2000 L3, 1 week after the final immunization. To stimulate peritoneal production of neutrophils, 2 ml of 2% glycogen were injected intraperitoneally at 16 h prior to the challenge infection. Neutrophils were found to comprise 85% of the peritoneal cell population. L3 from the challenge infection were collected and then examined at timed intervals by inverted light microscopy, scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Greater than a fivefold increase in the total numbers of peritoneal cells was noted in the vaccinated mice as compared to unvaccinated mice. In the peritoneal cavity of vaccinated mice, the neutrophils adhered to the L3 within 2 h, and over 55% of the L3 were surround by clusters of neutrophils to form a sausage-like sheath 4 h later. At 24–72 h after challenge, almost all of the L3 recovered from the vaccinated mice were covered with thick clusters of cells. Both SEM and TEM demonstrated extensive ultrastructural damage to the L3. In contrast, the L3 recovered from the unvaccinated mice appeared to be unaffected by neutrophils. These studies suggest that neutrophils, like macrophages, can have an important role as effector cells in L3-vaccinated mice. 相似文献
995.
Aberrant zinc (Zn) homeostasis is associated with abnormal control of mammalian growth, although the molecular mechanisms of Zn's roles in regulating systemic growth remain to be clarified. Here we report that the cell membrane-localized Zn transporter SLC39A14 controls G-protein coupled receptor (GPCR)-mediated signaling. Mice lacking Slc39a14 (Slc39a14-KO mice) exhibit growth retardation and impaired gluconeogenesis, which are attributable to disrupted GPCR signaling in the growth plate, pituitary gland, and liver. The decreased signaling is a consequence of the reduced basal level of cyclic adenosine monophosphate (cAMP) caused by increased phosphodiesterase (PDE) activity in Slc39a14-KO cells. We conclude that SLC39A14 facilitates GPCR-mediated cAMP-CREB signaling by suppressing the basal PDE activity, and that this is one mechanism for Zn's involvement in systemic growth processes. Our data highlight SLC39A14 as an important novel player in GPCR-mediated signaling. In addition, the Slc39a14-KO mice may be useful for studying the GPCR-associated regulation of mammalian systemic growth. 相似文献
996.
Xue B Soeria-Atmadja D Gustafsson MG Hammerling U Dunker AK Uversky VN 《Proteins》2011,79(9):2595-2606
The pathological process of allergies generally involves an initial activation of certain immune cells, tied to an ensuing inflammatory reaction on renewed contact with the allergen. In IgE-mediated hypersensitivity, this typically occurs in response to otherwise harmless food- or air-borne proteins. As some members of certain protein families carry special properties that make them allergenic, exploring protein allergens at the molecular level is instrumental to an improved understanding of the disease mechanisms, including the identification of relevant antigen features. For this purpose, we inspected a previously identified set of allergen representative peptides (ARPs) to scrutinize protein intrinsic disorder. The resulting study presented here focused on the association between these ARPs and protein intrinsic disorder. In addition, the connection between the disorder-enriched ARPs and UniProt functional keywords was considered. Our analysis revealed that ~ 20% of the allergen peptides are highly disordered, and that ~ 77% of ARPs are either located within disordered regions of corresponding allergenic proteins or show more disorder/flexibility than their neighbor regions. Furthermore, among the subset of allergenic proteins, ~ 70% of the predicted molecular recognition features (MoRFs that consist of short interactive disordered regions undergoing disorder-to-order transitions at interaction with binding partners) were identified as ARPs. These results suggest that intrinsic disorder and MoRFs may play functional roles in IgE-mediated allergy. 相似文献
997.
为分析比较不同浓度石灰氮对连作黄瓜田土壤环境的作用效果,通过2年温室定位试验,在黄瓜秸秆还田的基础上以不施石灰氮为对照(CK),研究施用\[高浓度石灰氮1350 kg·hm-2(CaCN2 90)、中浓度石灰氮900 kg·hm-2(CaCN2 60)、低浓度石灰氮450 kg·hm-2(CaCN2 30)\]对连作黄瓜土壤微生物生物量碳(SMBC)、微生物生物量氮(SMBN)及酶活性的影响.结果表明:与其他处理相比,CaCN2 90显著降低苗期0~10 cm 土层SMBC,但增加了初瓜期后0~20 cm土层SMBC.施用石灰氮处理均显著提高了末瓜期0~20 cm土层SMBC及盛瓜期至末瓜期0~10 cm土层SMBN,但第1年(2012年)不同石灰氮用量间无明显规律,第2年(2013年)盛瓜期后SMBN随着石灰氮施用浓度的增加而升高.施用石灰氮有利于秸秆的腐熟,提高土壤有机质含量,且石灰氮浓度越高越有利于秸秆的腐熟.相比对照,施用石灰氮能有效提升土壤脲酶、过氧化氢酶和多酚氧化酶活性,其中脲酶活性随石灰氮浓度的增加升高,而多酚氧化酶活性随石灰氮浓度的增加而降低,CaCN2 60可有效提高过氧化氢酶活性.相关分析表明:土壤有机质、脲酶及过氧化氢酶活性与SMBC、SMBN呈极显著正相关,多酚氧化酶活性与SMBC、SMBN呈显著负相关.表明黄瓜秸秆还田后施用石灰氮900 kg·hm-2能够改善温室黄瓜连作田土壤环境,有效减缓温室黄瓜连作障碍. 相似文献
998.
999.
泡沫细胞形成是动脉粥样硬化发生的关键环节,胆固醇逆转运可以防止泡沫细胞形成,ATP结合盒转运体G1(ATP-binding cassette transporter G1,ABCG1)在胆固醇逆转运中起着很重要的作用,可将细胞内胆固醇转运至高密度脂蛋白(high density lipoprotein,HDL).肝X受体α (liver X receptor α,LXRα)可通过调节其靶基因ABCG1的表达来调控胆固醇逆转运.脂联素有很广泛的心血管保护作用,但对RAW 264.7巨噬细胞ABCG1表达的影响尚不清楚.为了研究脂联素对RAW 264.7巨噬细胞ABCG1表达的影响及其机制,采用实时荧光定量PCR、蛋白质印迹法检测ABCG1和LXRα的表达,使用液体闪烁计数仪检测胆固醇流出率,并利用siRNA干扰技术抑制LXRα的表达来研究LXRα在脂联素调节ABCG1中的作用.结果表明,脂联素浓度依赖性和时间依赖性地上调ABCG1和LXRα的mRNA和蛋白质的表达,促进巨噬细胞胆固醇流出.经LXRα siRNA处理后,脂联素上调ABCG1的作用消失,胆固醇流出率也相应减少.上述结果提示,脂联素经LXRα途径促进RAW 264.7巨噬细胞ABCG1表达和胆固醇流出,防止泡沫细胞形成,减轻动脉粥样硬化. 相似文献
1000.
Jeffrey K. Bailey Alexander T. Fields Kaijian Cheng Albert Lee Eric Wagenaar Remy Lagrois Bailey Schmidt Bin Xia Dzwokai Ma 《The Journal of biological chemistry》2015,290(14):8987-9001
Cytokinesis partitions the cytoplasm of a parent cell into two daughter cells and is essential for the completion of cell division. The final step of cytokinesis in animal cells is abscission, which is a process leading to the physical separation of two daughter cells. Abscission requires membrane traffic and microtubule disassembly at a specific midbody region called the secondary ingression. Here, we report that WD repeat-containing protein 5 (WDR5), a core subunit of COMPASS/MLL family histone H3 lysine 4 methyltransferase (H3K4MT) complexes, resides at the midbody and associates with a subset of midbody regulatory proteins, including PRC1 and CYK4/MKLP1. Knockdown of WDR5 impairs abscission and increases the incidence of multinucleated cells. Further investigation revealed that the abscission delay is primarily due to slower formation of secondary ingressions in WDR5 knockdown cells. Consistent with these defects, midbody microtubules in WDR5 knockdown cells also display enhanced resistance to depolymerization by nocodazole. Recruitment of WDR5 to the midbody dark zone appears to require integrity of the WDR5 central arginine-binding cavity, as mutations that disrupt histone H3 and MLL1 binding to this pocket also abolish the midbody localization of WDR5. Taken together, these data suggest that WDR5 is specifically targeted to the midbody in the absence of chromatin and that it promotes abscission, perhaps by facilitating midbody microtubule disassembly. 相似文献