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Dong-Hui Xu Guo-Nan Chi Cong-Hai Zhao Dong-Yuan Li 《Journal of cellular biochemistry》2019,120(5):7516-7526
Glioma is a common primary brain tumor with high mortality rate and poor prognosis. Long noncoding RNA maternally expressed gene 3 (MEG3) is a tumor suppressor in diverse cancer types. However, the role of MEG3 in glioma remains unclear. We aimed to explore the effects of MEG3 on U251 cells as well as the underlying mechanisms. U251 cells were stably transfected with different recombined plasmids to overexpress or silence MEG3. Effects of aberrantly expressed MEG3 on cell viability, migration, apoptosis, expressions of apoptosis-associated and autophagy-associated proteins, and phosphorylated levels of key kinases in the PI3K/AKT/mTOR pathway were all evaluated. Then, messenger RNA (mRNA) and protein expression of Sirt7 in cells abnormally expressing MEG3 were estimated. In addition, effects of abnormally expressed MEG3 and Sirt7 on U251 cells were determined to reveal the underlying mechanism of MEG3-associated modulation. Cell viability and migration were significantly reduced by MEG3 overexpression whereas cell apoptosis as well as Bax and cleaved caspase-3/-9 proteins were obviously induced. Beclin-1 and LC3-II/LC3-I were upregulated and p62 was downregulated in MEG3 overexpressed cells. In addition, the autophagy pharmacological inhibitor (3-methyladenine, 3-MA) affected the effect of MEG3 overexpression on cell proliferation. Furthermore, the phosphorylated levels of key kinases in the PI3K/AKT/mTOR pathway were all reduced by MEG3 overexpression. Sirt7 was positively regulated by MEG3 expression, and effects of MEG3 overexpression on U251 cells were ameliorated by Sirt7 silence. MEG3 suppressed cell proliferation and migration but promoted autophagy in U251 cells through positively regulating Sirt7, involving in the inhibition of the PI3K/AKT/mTOR pathway. 相似文献
3.
Diversity and dynamics of the bacterial community involved in pig manure biodegradation in a microbial fermentation bed system 总被引:8,自引:0,他引:8
Qianqian Chen Bo Liu Jieping Wang Jianmei Che Guohong Liu Xiong Guan 《Annals of microbiology》2017,67(7):491-500
Overproduction of livestock manures with unpleasant odors causes significant environmental problems. The microbial fermentation bed (MFB) system is considered an effective approach to recycling utilization of agricultural byproducts and pig manure (PM). To gain a better understanding of bacterial communities present during the degradation of PM in MFB, the PM bacterial community was evaluated at different fermentation stages using 16S rRNA high throughput sequencing technology. The heatmap plot clustered five samples into short-term fermentation stage of 0–10 days and long-term fermentation stage of 15–20 days. The most abundant OTUs at the phylum level were Firmicutes, Actinobacteria and Proteobacteria in the long-term fermentation stage of PM, whereas Firmicutes, Bacteroidetes, and Proteobacteria predominated in the short-term fermentation stage of PM. At the genus level, organic degradation strains, such as Corynebacterium, Bacillus, Virgibacillus, Pseudomonas, Actinobacteria, Lactobacillus, Pediococcus were the predominate genera at the long-term fermentation stage, but were found only rarely in the short-term fermentation stage. C/N ratios increased and the concentration of the unpleasant odor substance 3-hydroxy-5-methylisoxazole (3-MI) decreased with prolonged period of fermentation. Redundancy analysis (RDA) demonstrated that the relative abundance of Firmicutes, Actinobacteria, Acidobacteria and Proteobacteria had a close relationship with degradation of 3-MI and increasing C/N ratio. These results provide valuable additional information about bacterial community composition during PM biodegradation in animal husbandry. 相似文献
4.
Irene Jao Vicki Marsh Primus Che Chi Melissa Kapulu Mainga Hamaluba Sassy Molyneux Philip Bejon Dorcas Kamuya 《Bioethics》2020,34(8):819-832
Controlled human malaria infection (CHMI) studies involve the deliberate infection of healthy volunteers with malaria parasites under controlled conditions to study immune responses and/or test drug or vaccine efficacy. An empirical ethics study was embedded in a CHMI study at a Kenyan research programme to explore stakeholders’ perceptions and experiences of deliberate infection and moral implications of these. Data for this qualitative study were collected through focus group discussions, in-depth interviews and non-participant observation. Sixty-nine participants were involved, including CHMI study volunteers, community representatives and research staff. Data were managed using QSR Nvivo 10 and analysed using an inductive-deductive approach, guided by ethics literature. CHMI volunteers had reasonable understanding of the study procedures. Decisions to join were influenced by study incentives, trust in the research institution, their assessment of associated burdens and motivation to support malaria vaccine development. However, deliberate malaria infection was a highly unusual research strategy for volunteers, community representatives and some study staff. Volunteers’ experiences of physical, emotional and social burdens or harms were often greater than anticipated initially, and fluctuated over time, related to specific procedures and events. Although unlikely to deter volunteers' participation in similar studies in furture, we argue that the dissonance between level of understanding of the burdens involved and actual experiences are morally relevant in relation to community engagement, informed consent processes, and ongoing support for volunteers and research staff. We further argue that ethics oversight of CHMI studies should take account of these issues in deciding whether consent, engagement and the balance of benefits and harms are reasonable in a given context. 相似文献
5.
Siyi Zhu Hongchen He Chi Zhang Haiming Wang Chengfei Gao Xijie Yu Chengqi He 《Bioelectromagnetics》2017,38(6):406-424
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Effects of different sugars on pullulan production, UDP-glucose level, and activities of α-phosphoglucose mutase, UDPG-pyrophosphorylase and glucosyltransferase in Aureobasidium pullulans Y68 were examined. It was found that more pullulan was produced when the yeast strain was grown in the medium containing glucose than when it was cultivated in the medium supplementing other sugars. Our results demonstrate that when more pullulan was synthesized, less UDP-glucose was left in the cells of A. pullulans Y68. However, it was observed that more pullulan was synthesized, the cells had higher activities of α-phosphoglucose mutase, UDPG-pyrophosphorylase and glycosyltransferase. Therefore, high pullulan yield is related to high activities of α-phosphoglucose mutase, UDPG-pyrophosphorylase and glucosyltransferase in A. pullulans Y68 grown on different sugars. A pathway of pullulan biosynthesis in A. pullulan Y68 was proposed based on the results of this study and those from other researchers. This study will be helpful to metabolism-engineer the yeast strain to further enhance pullulan yield. 相似文献
8.
Two Saccharomyces cerevisiae strains with different degrees of ethanol tolerance adapted differently to produced ethanol. Adaptation in the less ethanol-tolerant
strain was high and resulted in a reduced formation of ethanol-induced respiratory deficient mutants and an increased ergosterol
content of the cells. Adaptation in the more ethanol-tolerant strain was less pronounced. Journal of Industrial Microbiology & Biotechnology (2000) 24, 75–78.
Received 22 June 1999/ Accepted in revised form 06 October 1999 相似文献
9.
Frida Ben Rais Lasram Jean Antoine Tomasini Mohamed Salah Romdhane Thang Do Chi David Mouillot 《Hydrobiologia》2008,607(1):51-62
Since its opening 5.33 million years ago, the Gibraltar Strait has always contributed to the Mediterranean fauna and flora.
Despite the increasing importance of the phenomenon, ecological determinants underlying colonization success of Atlantic fishes
in the Mediterranean Sea have been poorly investigated. Here we reconstruct the recent historical colonization of the whole
Mediterranean Sea by Atlantic fishes and we aim to determine where Atlantic fishes preferentially establish and whether some
biological traits and ecological factors can be correlated to the colonization success (climate match, position in the water
column, maximum body length, propagules, confamilial resistance, depth). A database on Atlantic fish species records from
1810 to 2006 was built and the colonization rate of each introduced species was estimated. Analysis of Variance, Chi squared
test and logistic regression were used to investigate the relationships between ecological variables and colonization success.
In addition, an index of asymmetry was used to analyse the relative colonization on the two sides of the Mediterranean Sea.
Overall 48.33% of Atlantic species introduced in the Mediterranean Sea succeeded in colonizing eastwards. We found that habitat
depth of Atlantic species is significantly related to their colonization success due to the obstacle of the shallow depth
of the Gibraltar Strait (300 m). It also appears that despite the cyclonic general water circulation on the North Western
basin, the northern side is more colonized than the southern one: 70.40% of the studied species colonize the northern side,
while only 29.62% colonize the southern one. Two hypotheses may explain this trend: the bottom-up process that enhances the
colonization success of Atlantic fishes along the Spanish coast of Alboran Sea owning to its high productivity and the intensiveness
of the scientific explorations along the northern Mediterranean side. We conclude that crossing the Gibraltar Strait does
not guarantee the colonization success and that species life-history and functional traits are poor predictors. Instead we
suggest that environmental factors may determine favourable locations for invasive species installation.
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users.
Handling editor: J. Cambray. 相似文献
10.