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501.
Silvia Zelli Anna Brancato Francesca Mattioli Martina Pepe Enrico Alleva Cristiana Carbone Carla Cannizzaro Walter Adriani 《Genes, Brain & Behavior》2021,20(4):e12709
Alterations in dopamine (DA) reuptake are involved in several psychiatric disorders whose symptoms can be investigated in knock out rats for the DA transporter (DAT-KO). Recent studies evidenced the role of epigenetic DAT modulation in depressive-like behavior. Accordingly, we used heterozygous (HET) rats born from both HET parents (termed MIX-HET), compared to HET rats born from WT-mother and KO-father (MAT-HET), implementing the role of maternal care on DAT modulation. We developed a “sudden fright” paradigm (based on dark-light test) to study reaction to fearful inputs in the DAT-KO, MAT-HET, MIX-HET, and WT groups. Rats could freely explore the whole 3-chambers apparatus; then, they were gently confined in one room where they experienced the fright; finally, they could freely move again. As expected, after the fearful stimulus only MAT-HET rats showed a different behavior consisting of avoidance towards the fear-associated chamber, compared to WT rats. Furthermore, ex-vivo immuno-fluorescence reveals higher prefrontal DAT levels in MAT-HET compared to MIX-HET and WT rats. Immuno-fluorescence shows also a different histone deacetylase (HDAC) enzymes concentration. Since HDAC concentration could modulate gene expression, within MAT-HET fore brain, the enhanced expression of DAT could well impair the corticostriatal-thalamic circuit, thus causing aberrant avoidance behavior (observed only in MAT-HET rats). DAT expression seems to be linked to a simply different breeding condition, which points to a reduced care by HET dams for epigenetic regulation. This could imply significant prefronto-cortical influences onto the emotional processes: hence an excessively frightful response, even to mild stressful agents, may draw developmental trajectories toward anxious and depressed-like behavior. 相似文献
502.
Taís Nóbrega de Sousa Flora Satiko Kano Cristiana Ferreira Alves de Brito Luzia Helena Carvalho 《Memórias do Instituto Oswaldo Cruz》2014,109(5):608-617
Plasmodium vivax infects human erythrocytes through a major pathway
that requires interaction between an apical parasite protein, the Duffy binding
protein (PvDBP) and its receptor on reticulocytes, the Duffy antigen/receptor for
chemokines (DARC). The importance of the interaction between PvDBP (region II, DBPII)
and DARC to P. vivax infection has motivated our malaria research
group at Oswaldo Cruz Foundation (state of Minas Gerais, Brazil) to conduct a number
of immunoepidemiological studies to characterise the naturally acquired immunity to
PvDBP in populations living in the Amazon rainforest. In this review, we provide an
update on the immunology and molecular epidemiology of PvDBP in the Brazilian
Amazon - an area of markedly unstable malaria transmission - and
compare it with data from other parts of Latin America, as well as Asia and
Oceania. 相似文献
503.
Wanderson M. Silva Cassiana S. Sousa Leticia C. Oliveira Siomar C. Soares Gustavo F.M.H. Souza Guilherme C. Tavares Cristiana P. Resende Edson L. Folador Felipe L. Pereira Henrique Figueiredo Vasco Azevedo 《Microbial biotechnology》2019,12(2):265-274
Lactococcus lactis is a bacteria with high biotechnological potential, where is frequently used in the amino acid production and production of fermented dairy products, as well as drug delivery systems and mucosal vaccine vector. The knowledge of a functional core proteome is important extremely for both fundamental understanding of cell functions and for synthetic biology applications. In this study, we characterized the L. lacits proteome from proteomic analysis of four biotechnological strains L. lactis: L. lactis subsp. lactis NCDO2118, L. lactis subsp. lactis IL1403, L. lactis subsp. cremoris NZ9000 and L. lactis subsp. cremoris MG1363. Our label-free quantitative proteomic analysis of the whole bacterial lysates from each strains resulted in the characterization of the L. lactis core proteome that was composed by 586 proteins, which might contribute to resistance of this bacterium to different stress conditions as well as involved in the probiotic characteristic of L. lactis. Kegg enrichment analysis shows that ribosome, metabolic pathways, pyruvate metabolism and microbial metabolism in diverse environments were the most enriched. According to our quantitative proteomic analysis, proteins related to translation process were the more abundant in the core proteome, which represent an important step in the synthetic biology. In addition, we identified a subset of conserved proteins that are exclusive of the L. lactis subsp. cremoris or L. lactis subsp. lactis, which some are related to metabolic pathway exclusive. Regarding specific proteome of NCDO2118, we detected ‘strain-specific proteins’. Finally, proteogenomics analysis allows the identification of proteins, which were not previously annotated in IL1403 and MG1363. The results obtained in this study allowed to increase our knowledge about the biology of L. lactis, which contributes to the implementation of strategies that make it possible to increase the biotechnological potential of this bacterium. 相似文献