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71.
Di Gioia D Luziatelli F Negroni A Ficca AG Fava F Ruzzi M 《Journal of biotechnology》2010,156(4):309-316
Vanillin is one of the most important flavors in the food industry and there is great interest in its production through biotechnological processes starting from natural substrates such as ferulic acid. Among bacteria, recombinant Escherichia coli strains are the most efficient vanillin producers, whereas Pseudomonas spp. strains, although possessing a broader metabolic versatility, rapidly metabolize various phenolic compounds including vanillin. In order to develop a robust Pseudomonas strain that can produce vanillin in high yields and at high productivity, the vanillin dehydrogenase (vdh)-encoding gene of Pseudomonas fluorescens BF13 strain was inactivated via targeted mutagenesis. The results demonstrated that engineered derivatives of strain BF13 accumulate vanillin if inactivation of vdh is associated with concurrent expression of structural genes for feruloyl-CoA synthetase (fcs) and hydratase/aldolase (ech) from a low-copy plasmid. The conversion of ferulic acid to vanillin was enhanced by optimization of growth conditions, growth phase and parameters of the bioconversion process. The developed strain produced up to 8.41 mM vanillin, which is the highest final titer of vanillin produced by a Pseudomonas strain to date and opens new perspectives in the use of bacterial biocatalysts for biotechnological production of vanillin from agro-industrial wastes which contain ferulic acid. 相似文献
72.
73.
Bonanomi Giuliano Zotti Maurizio Cesarano Gaspare Sarker Tushar C. Saulino Luigi Saracino Antonio Idbella Mohamed Agrelli Diana D’Ascoli Rosaria Rita Angelo Adamo Paola Allevato Emilia 《Plant and Soil》2021,460(1-2):263-280
Plant and Soil - Data about woody debris (WD) decomposition are very scarce for the Mediterranean basin. The specific aim of this work is to explore the relationships between WD traits with the... 相似文献
74.
Stereospecific synthesis of "para-hydroxymexiletine" and sodium channel blocking activity evaluation
Catalano A Carocci A Fracchiolla G Franchini C Lentini G Tortorella V De Luca A De Bellis M Desaphy JF Conte Camerino D 《Chirality》2004,16(2):72-78
Both enantiomers of "para-hydroxymexiletine" (PHM), one of the main metabolites of mexiletine, were synthesized and fully characterized. Properties of (R)- and (S)-PHM, in terms of blocking potency and stereoselectivity on frog skeletal muscle Na(+) channels, were evaluated. The presence of a hydroxy group on the aryloxy moiety in the 4-position, as in PHM, reduced potency with respect to mexiletine in reducing I(Na max). However, PHM showed clear use-dependent behavior similar to that of mexiletine and, in contrast with what is observed with the parent compound, maintained its stereoselectivity during the use-dependent block. Chirality 16:72-78, 2004. 相似文献
75.
Cecilia C. Carmarán Sonia Rosenfeldt Diana Skigin Marina Inchaussandague Harold W. Keller 《Current microbiology》2013,67(6):674-678
Autofluorescence is reported for the first time in Myxomycete fruiting bodies. Ultrastructure of stalked sporangia of Diachea leucopodia (Didymiaceae, Physarales) was studied using scanning and transmission electron microscopy, energy-dispersive X-ray microanalysis, and fluorescence microscopy. External and internal properties of the peridium that surround the spores and capillitium exhibit autofluorescence. The stalk is composed of calcareous granules and energy-dispersive X-ray microanalysis demonstrates that the elemental composition of the peridium, capillitium, and stalk has varying concentrations of calcium. 相似文献
76.
The regulation of mitochondrial morphology: intricate mechanisms and dynamic machinery 总被引:2,自引:0,他引:2
Mitochondria typically form a reticular network radiating from the nucleus, creating an interconnected system that supplies the cell with essential energy and metabolites. These mitochondrial networks are regulated through the complex coordination of fission, fusion and distribution events. While a number of key mitochondrial morphology proteins have been identified, the precise mechanisms which govern their activity remain elusive. Moreover, post translational modifications including ubiquitination, phosphorylation and sumoylation of the core machinery are thought to regulate both fusion and division of the network. These proteins can undergo several different modifications depending on cellular signals, environment and energetic demands of the cell. Proteins involved in mitochondrial morphology may also have dual roles in both dynamics and apoptosis, with regulation of these proteins under tight control of the cell to ensure correct function. The absolute reliance of the cell on a functional mitochondrial network is highlighted in neurons, which are particularly vulnerable to any changes in organelle dynamics due to their unique biochemical requirements. Recent evidence suggests that defects in the shape or distribution of mitochondria correlate with the progression of neurodegenerative diseases such as Alzheimer's, Huntington's and Parkinson's disease. This review focuses on our current understanding of the mitochondrial morphology machinery in cell homeostasis, apoptosis and neurodegeneration, and the post translational modifications that regulate these processes. 相似文献
77.
Hartman TE Sar N Genereux K Barritt DS He Y Burky JE Wesson MC Tso JY Tsurushita N Zhou W Sauer PW 《Biotechnology and bioengineering》2007,96(2):294-306
Presented is an antibody production platform based on the fed-batch culture of recombinant NS0-derived cell lines. NS0 host cells, obtained from the European Collection of Cell Cultures (ECACC, Salisbury, UK, Part No. 85110503), were first adapted to grow in a protein-free, cholesterol-free medium. The resulting host cell line was designated NS0-PFCF (protein-free, cholesterol-free). The five production cell lines presented here were generated using a common protocol consisting of transfection by electroporation and subcloning. The NS0-PFCF host cell line was transfected using a single expression vector containing the Escherichia coli xanthine-guanine phosphoribosyl transferase gene (gpt), and the antibody heavy and light chain genes driven by the CMV promoter. The five cell lines were chosen after one to three rounds of iterative subcloning, which resulted in a 19-64% increase in antibody productivity when four mother-daughter cell pairs were cultured in a fed-batch bioreactor process. The production cell lines were genetically characterized to determine antibody gene integrity, nucleotide sequences, copy number, and the number of insertion sites in the NS0 cell genome. Genetic characterization data indicate that each of the five production cell lines has a single stably integrated copy of the antibody expression vector, and that the antibody genes are correctly expressed. Stability of antibody production was evaluated for three of the five cell lines by comparing the early stage seed bank with the Working Cell Bank (WCB). Antibody productivity was shown to be stable in two of three cell lines evaluated, while one of the cell lines exhibited a 20% drop in productivity after passaging for approximately 4 weeks. These five NS0-derived production cell lines were successfully cultured to produce antibodies with acceptable product quality attributes in a standardized fed-batch bioreactor process, consistently achieving an average specific productivity of 20-60 pg/cell-day, and a volumetric productivity exceeding 120 mg/L-day (Burky et al., 2006). In contrast to the commonly available NS0 host cell line, which requires serum and cholesterol for growth, and the commonly used expression vector system, which uses a proprietary glutamine synthetase selection marker (GS-NS0), these NS0 cells are cholesterol-independent, grow well in a protein-free medium, use a non-proprietary selection marker, and do not require gene amplification for productivity improvement. These characteristics are advantageous for use of this NS0 cell line platform for manufacturing therapeutic antibodies. 相似文献
78.
Sardha P. Suriyapperuma Larissa Lozovatsky Steven L. Ciciotte Luanne L. Peters Diana M. Gilligan 《Mammalian genome》2000,11(1):16-23
Mouse cDNA sequences encoding α, β, and γ adducins were cloned from a mouse reticulocyte cDNA library. The purified clones
contain alternatively spliced exons from all three adducin genes. In the case of α and β, the inclusion of the alternatively
spliced exons results in truncated polypeptide isoforms (called α-2 and β-2). The mouse predicted amino acid sequences are
compared with published rat and human sequences. For completion of this comparison, cDNA encoding the rat β-1 carboxy terminus
was cloned by PCR. The carboxy terminal region containing MARCKS homology, calmodulin-binding region-2, and spectrin-actin-binding
site, is conserved among α-1, β-1, and γ-1 isoforms in mouse, rat, and humans. We also report here the localization of the
gene encoding γ adducin (Add3) to murine Chr 19, in a region that shows conserved synteny with human Chr 10.
Received: 1 June 1999 / Accepted: 25 August 1999 相似文献
79.
Diana L. Six Michael Poulsen Allison K. Hansen Michael J. Wingfield Jolanda Roux Paul Eggleton Bernard Slippers Timothy D. Paine 《Symbiosis (Philadelphia, Pa.)》2011,53(3):101-121
The influence of humans on ecosystem dynamics has been, and continues to be, profound. Anthropogenic effects are expected
to amplify as human populations continue to increase. Concern over these effects has given rise to a large number of studies
focusing on impacts of human activities on individual species or on biotic community structure and composition. Lacking are
studies on interactions, particularly mutualisms. Because of the role of mutualisms in ecosystem stability, such studies are
critically needed if we are to begin to better understand and predict the responses of ecosystems to anthropogenic change.
Most organisms are involved in at least one mutualism, and many in several. Mutualisms facilitate the ability of partners
to exploit particular habitats and resources, and play a large role in determining ecological boundaries. When change disrupts,
enhances, or introduces new organisms into a mutualism, the outcome and stability of the original partnership(s) is altered
as are effects of the symbiosis on the community and ecosystem as a whole. In this paper, using examples from six microbe-insect
mutualisms in forest and savanna settings, we showcase how varied and complex the responses of mutualisms can be to an equally
varied set of anthropogenic influences. We also show how alterations of mutualisms may ramify throughout affected systems.
We stress that researchers must be cognizant that many observed changes in the behaviors, abundances, and distributions of
organisms due to human activities are likely to be mediated by mutualists which may alter predictions and actual outcomes
in significant ways. 相似文献
80.
Expression, localization, and functional role for synaptotagmins in pancreatic acinar cells 总被引:1,自引:0,他引:1
Falkowski MA Thomas DD Messenger SW Martin TF Groblewski GE 《American journal of physiology. Gastrointestinal and liver physiology》2011,301(2):G306-G316
Secretagogue-induced changes in intracellular Ca(2+) play a pivotal role in secretion in pancreatic acini yet the molecules that respond to Ca(2+) are uncertain. Zymogen granule (ZG) exocytosis is regulated by soluble N-ethylmaleimide-sensitive factor attachment protein receptor (SNARE) complexes. In nerve and endocrine cells, Ca(2+)-stimulated exocytosis is regulated by the SNARE-associated family of proteins termed synaptotagmins. This study examined a potential role for synaptotagmins in acinar secretion. RT-PCR revealed that synaptotagmin isoforms 1, 3, 6, and 7 are present in isolated acini. Immunoblotting and immunofluorescence using three different antibodies demonstrated synaptotagmin 1 immunoreactivity in apical cytoplasm and ZG fractions of acini, where it colocalized with vesicle-associated membrane protein 2. Synaptotagmin 3 immunoreactivity was detected in membrane fractions and colocalized with an endolysosomal marker. A potential functional role for synaptotagmin 1 in secretion was indicated by results that introduction of synaptotagmin 1 C2AB domain into permeabilized acini inhibited Ca(2+)-dependent exocytosis by 35%. In contrast, constructs of synaptotagmin 3 had no effect. Confirmation of these findings was achieved by incubating intact acini with an antibody specific to the intraluminal domain of synaptotagmin 1, which is externalized following exocytosis. Externalized synaptotagmin 1 was detected exclusively along the apical membrane. Treatment with CCK-8 (100 pM, 5 min) enhanced immunoreactivity by fourfold, demonstrating that synaptotagmin is inserted into the apical membrane during ZG fusion. Collectively, these data indicate that acini express synaptotagmin 1 and support that it plays a functional role in secretion whereas synaptotagmin 3 has an alternative role in endolysosomal membrane trafficking. 相似文献