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81.
Jesse C. Traller Shawn J. Cokus David A. Lopez Olga Gaidarenko Sarah R. Smith John P. McCrow Sean D. Gallaher Sheila Podell Michael Thompson Orna Cook Marco Morselli Artur Jaroszewicz Eric E. Allen Andrew E. Allen Sabeeha S. Merchant Matteo Pellegrini Mark Hildebrand 《Biotechnology for biofuels》2016,9(1):258
Background
Improvement in the performance of eukaryotic microalgae for biofuel and bioproduct production is largely dependent on characterization of metabolic mechanisms within the cell. The marine diatom Cyclotella cryptica, which was originally identified in the Aquatic Species Program, is a promising strain of microalgae for large-scale production of biofuel and bioproducts, such as omega-3 fatty acids.Results
We sequenced the nuclear genome and methylome of this oleaginous diatom to identify the genetic traits that enable substantial accumulation of triacylglycerol. The genome is comprised of highly methylated repetitive sequence, which does not significantly change under silicon starved lipid induction, and data further suggests the primary role of DNA methylation is to suppress DNA transposition. Annotation of pivotal glycolytic, lipid metabolism, and carbohydrate degradation processes reveal an expanded enzyme repertoire in C. cryptica that would allow for an increased metabolic capacity toward triacylglycerol production. Identification of previously unidentified genes, including those involved in carbon transport and chitin metabolism, provide potential targets for genetic manipulation of carbon flux to further increase its lipid phenotype. New genetic tools were developed, bringing this organism on a par with other microalgae in terms of genetic manipulation and characterization approaches.Conclusions
Functional annotation and detailed cross-species comparison of key carbon rich processes in C. cryptica highlights the importance of enzymatic subcellular compartmentation for regulation of carbon flux, which is often overlooked in photosynthetic microeukaryotes. The availability of the genome sequence, as well as advanced genetic manipulation tools enable further development of this organism for deployment in large-scale production systems.82.
Gary D. Stoner Donald J. Merchant 《In vitro cellular & developmental biology. Plant》1972,7(6):330-343
Summary The amino acid requirements of strain L-M mouse cells grown in a chemically defined medium (2×Eagle) containing only the 13
essential amino acids (EAA) were investigated. Medium and acid hydrolysate samples were analyzed for amino acid content by
the method of ion exchange chromatography. The extent of utilization of the EAA differed;e.g. after 120 hr of cell growth without medium change, glutamine was exhausted from the medium; methionine, leucine, isoleucine,
cystine, arginine, and valine were depleted 60 to 80%; other EAA were used to lesser extents. Although the EAA were used in
excess of their requirements for protein synthesis, a correlation could generally be made between utilization and protein
amino acid composition.
Glutamine appeared to be, a growth-limiting factor. Use of U-14C-labeled glutamine indicated that over one-half of the metabolized glutamine was converted to carbon dioxide, 17% to cell
material, and 15% was extracted from the amino acid pools.
Nonessential amino acids (NEAA), viz. alanine, aspartic acid, glutamic acid, glycine, proline, and serine, were released into
the medium during growth, and some were reutilized. Exogenous provision of these did not improve cell growth. In contrast
to the other NEAA, only serine showed net utilization when provided exogenously. When glutamic acid largely replaced the glutamine
in the medium, it exerted a sparing effect on the glutamine requirement for protein synthesis. Suggestions are given for the
improvement of Eagle medium for cell growth.
Supported by Research Grants CA 03720 and CA 11802 from the National Institutes of Health.
Predoctoral, fellow supported, by Grant F01-GM-42156-02 from the National Institutes of Health. 相似文献
83.
VP4-specific intestinal antibody response to rotavirus in a murine model of heterotypic infection. 下载免费PDF全文
We have adapted a murine model of heterotypic rotavirus infection for the purpose of evaluating the intestinal antibody response to an infection that mimics human vaccination. Neonatal mice were infected with the rhesus rotavirus (RRV). The enzyme-linked immunospot assay was used in order to avoid common artifacts in the quantitation of intestinal immune responses inherent in measurements of luminal or serum immunoglobulins and to obtain easily quantifiable data in a flexible and convenient format. Functionally active lymphocytes were harvested from the spleen, small intestinal lamina propria, Peyer's patches, and mesenteric lymph nodes and processed into single-cell suspensions. Antibody-secreting cells (ASC) were quantitated from 5 to 50 days after infection for total, RRV-specific, baculovirus-expressed VP4-specific, and single-shell RRV-specific ASC secreting either immunoglobulin G (IgG), IgM, or IgA. The response to VP4 constituted less than 1.5% of the total virus-specific response, which was located almost exclusively in the gut and was 90% IgA. Intestinal ASC were directed overwhelmingly toward proteins incorporated in the single-shell particle, predominantly VP2 and VP6. We conclude that the antibody response to VP4, thought to be the site of the important neutralization sites conserved among several rotavirus serotypes, is an extremely small portion of the overall antibody response in the intestinal tract. 相似文献
84.
85.
Synthesis and Turnover of the Chloroplast Coupling Factor 1 in Chlamydomonas reinhardi 总被引:3,自引:1,他引:2 下载免费PDF全文
Studies on the biosynthesis of the chloroplast coupling factor 1 (CF1) in Chlamydomonas reinhardi have been initiated. The ratio of CF1 to chlorophyll in the cell was shown to be independent of the density of the culture. No turnover of assembled CF1 could be detected, thus suggesting that CF1 was synthesized at a rate equivalent to that of net chlorophyll synthesis. A lag of between 5 to 7 minutes in the incorporation of radioactive precursor sulfate into assembled CF1 was measureable. This puts an upper limit on the pool size of any precursor to the assembled CF1 complex. The pool size is estimated to be equivalent to 1% of the total CF1 in the cell. 相似文献
86.
Optimization of fermentation conditions for thermostable cellulase production byThielavia terrestris
Argyrios Margaritis Rosemina F. Merchant 《Journal of industrial microbiology & biotechnology》1986,1(3):149-156
Summary Of the eighteen different carbon sources, solka floc was optimal for the induction of cellulases by the thermophilic fungusThielavia terrestris. The temperature optimum for growth was between 44–52°C. The effect of initial and controlled pH on fungal growth and cellulase production was investigated and the results obtained showed that the maximum volumetric productivity (6.07 I.U./1 per h) of filter paper activity was achieved when the pH was controlled at 4.5–5.0. 相似文献
87.
Wieczorek E Lin Z Perkins EB Law DJ Merchant JL Zehner ZE 《The Journal of biological chemistry》2000,275(17):12879-12888
Vimentin is a component of the eukaryotic cytoskeleton belonging to the family of intermediate filament proteins. It exhibits a complex pattern of tissue- and development-specific expression. It is also a marker of the metastatic potential of many tumor cells. Previously, the human vimentin promoter was shown to contain several regions for the binding of positive and negative acting regulatory factors. Until now, the silencer element, which shuts down vimentin synthesis in selected tissues during development, was not precisely localized; nor was its binding protein known. In vivo DMS footprinting by ligation-mediated PCR delineated the position of guanine residues important to vimentin expression. Transient transfection assays in HeLa cells of various vimentin 5'-end promoter sequences and mutants thereof precisely defined two regulatory elements, a negative element and an adjoining positive acting element. Band shift assays, UV cross-linking, and Southwestern blot analysis confirm that the silencer element specifically binds a protein. Several lines of evidence show that ZBP-89, a zinc finger, Kruppel-like repressor protein is vimentin's silencer element binding factor. Co-immunoprecipitation and DNA affinity chromatography prove that Sp1 heterodimerizes with ZBP-89 when bound to the silencer element to yield a DNA-protein complex whose mobility is indistinguishable from that displayed by HeLa nuclear extract in band shift assays. 相似文献
88.
89.
Milk consumption was measured in pouch young of the northern brown bandicoot, Isoodon macrourus , using the 22 Na turnover technique. Milk consumption rates increased from about 2.3 ml young−1 d−1 at 23 days post-partum to about 17.2ml young−1 d−1 at 52 days, just prior to weaning. Young increased in mass from 8.5 g to around 112 g over the same period. Masś gained for each ml of milk consumed ranged from 0.28 to 0.65 gml−1 . The efficiency with which young converted milk energy and protein into body energy and protein ranged from 16.1 to 39.6% and 38.4 to 82.3%, respectively. 相似文献
90.
Dimitris Petroutsos Aimee M. Terauchi Andreas Busch Ingrid Hirschmann Sabeeha S. Merchant Giovanni Finazzi Michael Hippler 《The Journal of biological chemistry》2009,284(47):32770-32781
PGRL1 RNA and protein levels are increased in iron-deficient Chlamydomonas reinhardtii cells. In an RNAi strain, which accumulates lower PGRL1 levels in both iron-replete and -starved conditions, the photosynthetic electron transfer rate is decreased, respiratory capacity in iron-sufficient conditions is increased, and the efficiency of cyclic electron transfer under iron-deprivation is diminished. Pgrl1-kd cells exhibit iron deficiency symptoms at higher iron concentrations than wild-type cells, although the cells are not more depleted in cellular iron relative to wild-type cells as measured by mass spectrometry. Thiol-trapping experiments indicate iron-dependent and redox-induced conformational changes in PGRL1 that may provide a link between iron metabolism and the partitioning of photosynthetic electron transfer between linear and cyclic flow. We propose, therefore, that PGRL1 in C. reinhardtii may possess a dual function in the chloroplast; that is, iron sensing and modulation of electron transfer. 相似文献