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71.
Summary The frequency of sister chromatid exchanges (SCE) and chromosome aberrations and the dynamics of cell division in peripheral blood lymphocytes of four patients with Fanconi's anemia were studied after in vitro exposure to alkylating agents TEPA and mitomycin.SCE frequency was significantly increased even after very low doses of mutagens, while chromosome aberrations were significantly increased only after high doses (0.160 g/ml mitomycin and 10-5 M TEPA). The responses of Fanconi's anemia cells and control cells did not differ significantly. The increased frequency of both SCE and chromosome aberrations was accompanied by gradual delay of cell division, which was most conspicuous in cells from patients with Fanconi's anemia.  相似文献   
72.
Several proteolytic enzymes have been studied with regard to their ability to induce DNA synthesis and cell proliferation in resting chick embryo fibroblasts. Of the enzymes examined, thrombin, bromelin, and trypsin exhibit potent mitogenic activity, elastase has significant but less marked activity, whereas thermolysin, papain, and α-protease are inactive. The enzymes were also tested for their ability to induce morphological change or to remove two iodinatable proteins of 250,000 and 205,000 daltons. Although the larger protein is removed by some but not all of the proteases examined, every protease tested removed the smaller cell surface protein. The ability of proteases to stimulate cell growth could not be correlated directly with removal of either of these cell surface proteins; however, loss of the smaller protein does correlate with the reduction of both cytoplasmic spreading and cell-cell interactions observed after protease treatment. A secondary, later event of migration of cells into clumps is observed in those instances when protease treatment did not result in a loss of the 250K protein. A role for each of these proteins in the processes of cellular adhesion is discussed.  相似文献   
73.
Mice of strains CBA and BALB/c, when injected with lymphocytes from theH-2-compatible Mls-antigen-incompatible strains C3H and DBA/2, respectively, develop a reduced lymphocyte reactivity against cells of the injected strains as measured in the mixed lymphocyte culture (MLC). The mechanism of the development of a depression of the MLC response against Mlsantigens is unknown. In this investigation we have tested the MLC response of lymphocytes from CBA mice preinjected with C3H lymphocytes against cells from 12 different strains. It was observed that the response decreased against cells from strains C3H, AKR, and A/Sn. Infusion of CBA mice with AKR lymphocytes decreased their MLC response against the same three strains. In contrast, infusion of CBA mice with A/Sn lymphocytes reduced their MLC responses against strains C3H, DBA/2, and the congenic strains A/Sn, A.SW, A.CA, and A.BY. BALB/c mice which were infused with DBA/2 lymphocytes developed reduced responses against DBA/2, C3H, and AKR. On the basis of these results we propose that mice of our strains C3H and AKR possess a common Mls-antigen which is strongly stimulatory, and that DBA/2 mice possess a second Mls-antigen which is also strongly stimulatory. The congenic strains A/Sn, A.SW, A.CA, and A.BY, which have differentH-2 complexes, possess a third Mls-antigen which is less stimulatory. The Mls-antigens of the strains listed above seem to exhibit extensive immunological crossreactivity.  相似文献   
74.
【目的】研究ε-聚赖氨酸发酵过程中污染微生物的种类。【方法】采用稀释涂布法、划线法、环境胁迫法和液体营养富集法等对污染样本进行微生物的分离与纯化,通过菌落形态和显微观察,再结合16S rRNA基因序列分析,确定分离菌株的系统发育地位,并对分离菌株的ε-聚赖氨酸耐受性进行考察。【结果】液体营养富集法实现了污染微生物的分离,通过16S rRNA基因序列分析鉴定其为一株Acinetobacter bereziniae,并证实该菌能在高浓度ε-聚赖氨酸条件下生长。【结论】Acinetobacter bereziniae是ε-聚赖氨酸发酵过程中的主要污染微生物,这为后期发酵污染防治提供了一定的指导作用。  相似文献   
75.
污水处理厂是抗生素抗性基因(antibiotic resistance genes,ARGs)和抗生素抗性细菌(antibiotic resistant bacteria,ARB)重要的源和汇,生物气溶胶是ARGs和ARB自污水处理厂向周边环境释放的关键载体。目前缺乏对污水处理厂生物气溶胶抗生素抗性污染特征、来源及潜在风险的系统性总结。本文从采样方法、检测方法、逸散特征、来源、潜在危害和风险评估等方面对污水处理厂抗生素抗性污染研究现状进行综述。惯性采样法和过滤法是常用的污水处理厂抗生素抗性生物气溶胶主要采集方法,而宏基因组测序、组装和分箱为其ARGs组成、可移动性和宿主提供了有效的检测方法,抗多药类、抗杆菌肽类、抗氨基糖苷类、抗四环素类、抗β-内酰胺类、抗磺胺类、抗大环内酯类和抗糖肽类等抗性基因在污水处理厂PM10、PM2.5和PM1.0颗粒物中广泛检出。格栅间、生化反应池和污泥处理单元是污水处理厂PM10、PM2.5和PM1.0负载ARGs和ARB的主要释放单元。污水处理厂不同粒径生物气溶胶中致病性ARB的存在增加了抗生素治疗的难度,而污水和污泥对ARGs和ARB的释放起到了重要的源的贡献。本文在研究内容、研究技术和控制策略等方面也提出了相关展望,以期为污水厂生物气溶胶抗生素抗性污染的监测和防护提供参考和借鉴。  相似文献   
76.
酸性磷酸酶动力学特征可反映不同底物供应下土壤磷转化状况。以人工恢复的引进种黑松人工林和本地种栓皮栎人工林以及自然恢复的天然次生林为研究对象,开展凋落物添加去除和根系去除对土壤酸性磷酸酶动力学特征的影响研究。结果表明:(1)三种森林恢复方式下土壤酸性磷酸酶活性和最大反应速度(Vmax)均为双倍凋落物>对照>去除凋落物>去除根系>无输入;(2)改变凋落物和根系输入对酸性磷酸酶的半饱和常数(Km)和催化效率(Vmax/Km)影响不大;(3)酸性磷酸酶活性受速效磷含量的反馈调节;土壤氮可利用性和含水量显著影响酸性磷酸酶活性。改变凋落物和根系输入对引进种黑松人工林土壤有机磷转化能力影响最大,天然次生林次之,本地种栓皮栎人工林最稳定。根系对土壤酸性磷酸酶动力学特征的影响大于凋落物。其结果可为暖温带森林恢复,应对气候变化和森林防火、收集凋落物等管理措施提供理论依据。  相似文献   
77.
78.
The HAV nonstructural protein 2C is essential for virus replication; however, its precise function remains elusive. Although HAV 2C shares 24–27% sequence identity with other 2Cs, key motifs are conserved. Here, we demonstrate that HAV 2C is an ATPase but lacking helicase activity. We identified an ATPase-independent nuclease activity of HAV 2C with a preference for polyuridylic single-stranded RNAs. We determined the crystal structure of an HAV 2C fragment to 2.2 Å resolution, containing an ATPase domain, a region equivalent to enterovirus 2C zinc-finger (ZFER) and a C-terminal amphipathic helix (PBD). The PBD of HAV 2C occupies a hydrophobic pocket (Pocket) in the adjacent 2C, and we show the PBD–Pocket interaction is vital for 2C functions. We identified acidic residues that are essential for the ribonuclease activity and demonstrated mutations at these sites abrogate virus replication. We built a hexameric-ring model of HAV 2C, revealing the ribonuclease-essential residues clustering around the central pore of the ring, whereas the ATPase active sites line up at the gaps between adjacent 2Cs. Finally, we show the ribonuclease activity is shared by other picornavirus 2Cs. Our findings identified a previously unfound activity of picornavirus 2C, providing novel insights into the mechanisms of virus replication.  相似文献   
79.
Long noncoding RNAs (lncRNAs) play important roles in the spatial and temporal regulation of muscle development and regeneration. Nevertheless, the determination of their biological functions and mechanisms underlying muscle regeneration remains challenging. Here, we identified a lncRNA named lncMREF (lncRNA muscle regeneration enhancement factor) as a conserved positive regulator of muscle regeneration among mice, pigs and humans. Functional studies demonstrated that lncMREF, which is mainly expressed in differentiated muscle satellite cells, promotes myogenic differentiation and muscle regeneration. Mechanistically, lncMREF interacts with Smarca5 to promote chromatin accessibility when muscle satellite cells are activated and start to differentiate, thereby facilitating genomic binding of p300/CBP/H3K27ac to upregulate the expression of myogenic regulators, such as MyoD and cell differentiation. Our results unravel a novel temporal-specific epigenetic regulation during muscle regeneration and reveal that lncMREF/Smarca5-mediated epigenetic programming is responsible for muscle cell differentiation, which provides new insights into the regulatory mechanism of muscle regeneration.  相似文献   
80.
As a member of the deoxyribonuclease 1 family, DNASE1L3 plays a significant role both inside and outside the cell. However, the role of DNASE1L3 in hepatocellular carcinoma (HCC) and its molecular basis remains to be further investigated. In this study, we report that DNASE1L3 is downregulated in clinical HCC samples and evaluate the relationship between its expression and HCC clinical features. In vivo and in vitro experiments showed that DNASE1L3 negatively regulates the proliferation, invasion and metastasis of HCC cells. Mechanistic studies showed that DNASE1L3 recruits components of the cytoplasmic β‐catenin destruction complex (GSK‐3β and Axin), promotes the ubiquitination degradation of β‐catenin, and inhibits its nuclear transfer, thus, decreasing c‐Myc, P21 and P27 level. Ultimately, cell cycle and EMT signals are restrained. In general, this study provides new insight into the mechanism for HCC and suggests that DNASE1L3 can become a considerable target for HCC.

Decreased expression of DNASE1L3 is associated with poor prognosis in patients with HCC DNASE1L3 inhibits the proliferation and cell cycle of HCC cells in vitro and promotes the invasion and metastasis of HCC cells DNASE1L3 inhibits the tumorigenicity and metastasis of HCC cells in vivo DNASE1L3 interacts with β‐catenin and promotes its binding to the β‐catenin destroying complex DNASE1L3 interacts with P21 and stabilizes P21 by mediating the deubiquitin activity  相似文献   
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