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901.
902.
903.
Gene delivery by lentivirus vectors 总被引:13,自引:0,他引:13
The capacity to efficiently transduce nondividing cells, shuttle large genetic payloads, and maintain stable long-term transgene
expression are attributes that have brought lentiviral vectors to the forefront of gene delivery vehicles for research and
therapeutic applications in a clinical setting. Our discussion initiates with advances in lentiviral vector development and
how these sophisticated lentiviral vectors reflect improvements in safety, regarding the prevention of replication competent
lentiviruses (RCLs), vector mobilization, and insertional mutagenesis. Additionally, we describe conventional molecular regulatory
systems to manage gene expression levels in a spatial and temporal fashion in the context of a lentiviral vector. State of
the art technology for lentiviral vector production by transient transfection and packaging cell lines are explicitly presented
with current practices used for concentration, purification, titering, and determining the safety of a vector stock. We summarize
lentiviral vector applications that have received a great deal of attention in recent years including the generation of transgenic
animals and the stable delivery of RNA interference molecules. Concluding remarks address some of the successes in preclinical
animals, and the recent transition of lentiviral vectors to human clinical trials as therapy for a variety of infectious and
genetic diseases. 相似文献
904.
Cooperation within Actin Filament in Vertebrate Skeletal Muscle 总被引:56,自引:0,他引:56
When actin molecules form “rigor complexes” with nucleotide-free myosin, tropomn binds calcium with greater affinity and in a cooperative response the remaining actin molecules not cornplexed with myosin are “turned on” even though calcium is absent. 相似文献
905.
906.
Yang Xi Dongyan Chen Lei Sun Yuhao Li Lei Li 《Biochemical and biophysical research communications》2013
Using the fluorescent dyes calcein and alcian blue, we stained the F3 generation of chemically (ENU) mutagenized zebrafish embryos and larvae, and screened for mutants with defects in bone development. We identified a mutant line, bone calcification slow (bcs), which showed delayed axial vertebra calcification during development. Before 4–5 days post-fertilization (dpf), the bcs embryos did not display obvious abnormalities in bone development (i.e., normal number, size and shape of cartilage and vertebrae). At 5–6 dpf, when vertebrae calcification starts, bcs embryos began to show defects. At 7 dpf, for example, in most of the bcs embryos examined, calcein staining revealed no signals of vertebrae mineralization, whereas during the same developmental stages, 2–14 mineralized vertebrae were observed in wild-type animals. Decreases in the number of calcified vertebrae were also observed in bcs mutants when examined at 9 and 11 dpf, respectively. Interestingly, by 13 dpf the defects in bcs mutants were no longer evident. There were no significant differences in the number of calcified vertebrae between wild-type and mutant animals. We examined the expression of bone development marker genes (e.g., Sox9b, Bmp2b, and Cyp26b1, which play important roles in bone formation and calcification). In mutant fish, we observed slight increases in Sox9b expression, no alterations in Bmp2b expression, but significant increases in Cyp26b1 expression. Together, the data suggest that bcs delays axial skeletal calcification, but does not affect bone formation and maturation. 相似文献
907.
Ae-Young Mo Bora Kwon Seralathan Kamala-Kannan Kui-Jae Lee Byung-Taek Oh Dae-Hyuk Kim Moon-Sik Yang Jin-Hyung Kim Seung-Moon Park 《World journal of microbiology & biotechnology》2010,26(6):1099-1105
Bacteria of the Bacillus species have been reported as an important microorganism in fermented soybean products. In the present study, thirty Bacillus isolates were screened from Meju, a Korean soybean fermentation starter. The comparative analysis of 16S rDNA sequences, 16S-23S internal transcribed spacer
sequences, phenotypic, and biochemical characterizations revealed three phylogenetically distinct groups namely Bacillus atrophaeus,
Bacillus polyfermenticus and Bacillus subtilis. The isolates were assayed for poly-γ-glutamate production and fibrinolytic activity. Among the isolates, B. polyfermenticus exhibited maximum poly-γ-glutamate production and fibrinolytic activity. Moreover, the soybean products fermented by B. polyfermenticus have increased the time taken for coagulation and hemorrhage in mice. The results of the present study clearly indicate the
functional role of B. polyfermenticus in fermented soybean products. 相似文献
908.
Genomewide association studies (GWAS) have proven a powerful hypothesis-free method to identify common disease-associated
variants. Even quite large GWAS, however, have only at best identified moderate proportions of the genetic variants contributing
to disease heritability. To provide cost-effective genotyping of common and rare variants to map the remaining heritability
and to fine-map established loci, the Immunochip Consortium has developed a 200,000 SNP chip that has been produced in very
large numbers for a fraction of the cost of GWAS chips. This chip provides a powerful tool for immunogenetics gene mapping. 相似文献
909.
Fernández-Acero FJ Jorge I Calvo E Vallejo I Carbú M Camafeita E Garrido C López JA Jorrin J Cantoral JM 《Archives of microbiology》2007,187(3):207-215
Botrytis cinerea is a phytopathogenic fungus causing disease in a substantial number of economically important crops. In an attempt to identify putative fungal virulence factors, the two-dimensional gel electrophoresis (2-DE) protein profile
from two B. cinerea strains differing in virulence and toxin production were compared. Protein extracts from fungal mycelium obtained by tissue
homogenization were analyzed. The mycelial 2-DE protein profile revealed the existence of qualitative and quantitative differences
between the analyzed strains. The lack of genomic data from B. cinerea required the use of peptide fragmentation data from MALDI-TOF/TOF and ESI ion trap for protein identification, resulting
in the identification of 27 protein spots. A significant number of spots were identified as malate dehydrogenase (MDH) and
glyceraldehyde-3-phosphate dehydrogenase (GAPDH). The different expression patterns revealed by some of the identified proteins
could be ascribed to differences in virulence between strains. Our results indicate that proteomic analysis are becoming an
important tool to be used as a starting point for identifying new pathogenicity factors, therapeutic targets and for basic
research on this plant pathogen in the postgenomic era. 相似文献
910.
Tylonycteris pachypus is a gregarious bat species with tens of individuals in a colony. The mechanisms by which mother bats recognize their pups and adult bats recognize each other are not clear. We hypothesized that such recognition is achieved by chemical discrimination and performed experiments to test the hypothesis. Results showed that mother bats were much more attracted to the scent from their own pups. For adult bats, females were attracted to the scent from both male and female groupmates but had a higher preference to the scent from female than from male groupmates. Male bats were much more attracted to the scent from male groupmates while showed no preference to the scent from female groupmates. Within a group, both female and male bats had no difference in preference to the scent from the same or opposite sex. These results suggest that mother–pup and groupmate recognition of T. pachypus can be achieved by olfactory cues. 相似文献