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91.
92.
Supramembrane structures that connect conjugating agrobacterial cells were visualized for the first time by transmission electron
microscopy. The primary contact of cells during conjugation was shown to occur through the formation of long pili containing
no VirB1 protein. Pretreatment of agrobacterial cells with acetosyringone resulted in a six-to tenfold increase in the transfer
frequency of plasmid pTd33 at 19–25°C and had almost no effect at 30°C. The transfer of plasmid pTd33 fromA. tumefaciens strain GV3101 to plasmid-freeA. tumefaciens strain UBAPF-2 was 16 times decreased after the centrifugation of cells. The transfer efficiency of plasmid pTd33 fromA. tumefaciens strain LBA2525 (virB2::lacZ) to plasmid-freeA. tumefaciens strain UBAPF-2 was one order of magnitude lower than the transfer from the wild-typeA. tumefaciens strain GV3101. Treatment of donor cells with 0.01% SDS before mating decreased the transfer efficiency by a factor of 26.
The role of pili in the establishment of contact between conjugating cells of agrobacteria is discussed. 相似文献
93.
Localization and structure of snRNPs during mitosis. Immunofluorescent and biochemical studies 总被引:7,自引:0,他引:7
The distribution of U snRNAs during mitosis was studied by indirect immunofluorescence microscopy with snRNA cap-specific anti-m3G antibodies. Whereas the snRNAs are strictly nuclear at late prophase, they become distributed in the cell plasm at metaphase and anaphase. They re-enter the newly formed nuclei of the two daughter cells at early telophase, producing speckled nuclear fluorescent patterns typical of interphase cells. While the snRNAs become concentrated at the rim of the condensing chromosomes and at interchromosomal regions at late prophase, essentially no association of the snRNAs was observed with the condensed chromosomes during metaphase and anaphase. Independent immunofluorescent studies with anti-(U1)RNP autoantibodies, which react specifically with proteins unique to the U1 snRNP species, showed the same distribution of snRNP antigens during mitosis as was observed with the snRNA-specific anti-m3G antibody. Immunoprecipitation studies with anti-(U1)RNP and anti-Sm autoantibodies, as well as protein analysis of snRNPs isolated from extracts of mitotic cells, demonstrate that the snRNAs remain associated in a specific manner with the same set of proteins during interphase and mitosis. The concept that the overall structure of the snRNPs is maintained during mitosis also applies to the coexistence of the snRNAs U4 and U6 in a single ribonucleoprotein complex. Particle sedimentation studies in sucrose gradients reveal that most of the snRNPs present in sonicates of mitotic cells do not sediment as free RNP particles, but remain associated with high molecular weight (HMW) structures other than chromatin, most probably with hnRNA/RNP. 相似文献
94.
Four patients with ovarian cancer received 20 mg of sizofiran, a -1,3-glucan (molecular weight: 450,000), intramuscularly one day before and 4, 7, 11, 14, 18 and 21 days after second look laparotomy and recombinant interferon- (rIFN-) intraperitoneally on the day of second look laparotomy and 4, 7, 11, 14, 18 and 21 days thereafter.The peritoneal cavity was washed with physiological saline and peritoneal macrophages (Mø) were isolated. The number of Mø increased 30-1600 times during the treatment period. The concentrations of interleukin-1, interferon-, tumor necrosis factor and prostaglandin E2 were also found increased in the supernatant fluid of Mø cultured for 24 hours with 10 µg/ml of lipopolysaccharide. The present study demonstrated that the activation of peritoneal Mø could be maintained and its number was increased by repeated dosing of sizofiran and rIFN- in combination every three or four days in patients with ovarian cancer. Peritoneal Mø thus activated may exert an antitumor effect on ovarian cancer. 相似文献
95.
A -carotene oxygenase is described which occurs in the Cyanobacterium Microcystis. It cleaves -carotene and zeaxanthin specifically at the positions 7,8 and 7,8, while echinenone and myxoxanthophyll are not affected. The oxidative cleavage of -carotene leads to the formation of -cyclocitral and crocetindial and that of zeaxanthin to hydroxy--cyclocitral and crocetindial in nearly stoichiometric amounts. Oxidant is dioxygen as has been demonstrated by high incroporation (86%) of 18O2 into -cyclocitral. -Carotene oxygenase is membrane bound, sensitive to sulfhydryl reagents, antioxidants and chelating agents. Iron seems to be an essential part of the enzyme activity. Cofactors necessary for the reaction could not be detected.Abbreviations TLC
thin layer-chromatography
- PIPES
piperazine-N,N-bis-(2-ethanesulfonate) Na
- TES
2{[tris-(hydroxymethyl)-methyl]-amino} ethanesulfonic acid
Dedicated to Professor G. Drews on occasion of his 60th birthday 相似文献
96.
Increased transport of acetyl‐CoA into the endoplasmic reticulum causes a progeria‐like phenotype 下载免费PDF全文
Yajing Peng Samantha L. Shapiro Varuna C. Banduseela Inca A. Dieterich Kyle J. Hewitt Emery H. Bresnick Guangyao Kong Jing Zhang Kathryn L. Schueler Mark P. Keller Alan D. Attie Timothy A. Hacker Ruth Sullivan Elle Kielar‐Grevstad Sebastian I. Arriola Apelo Dudley W. Lamming Rozalyn M. Anderson Luigi Puglielli 《Aging cell》2018,17(5):e12820
The membrane transporter AT‐1/SLC33A1 translocates cytosolic acetyl‐CoA into the lumen of the endoplasmic reticulum (ER), participating in quality control mechanisms within the secretory pathway. Mutations and duplication events in AT‐1/SLC33A1 are highly pleiotropic and have been linked to diseases such as spastic paraplegia, developmental delay, autism spectrum disorder, intellectual disability, propensity to seizures, and dysmorphism. Despite these known associations, the biology of this key transporter is only beginning to be uncovered. Here, we show that systemic overexpression of AT‐1 in the mouse leads to a segmental form of progeria with dysmorphism and metabolic alterations. The phenotype includes delayed growth, short lifespan, alopecia, skin lesions, rectal prolapse, osteoporosis, cardiomegaly, muscle atrophy, reduced fertility, and anemia. In terms of homeostasis, the AT‐1 overexpressing mouse displays hypocholesterolemia, altered glycemia, and increased indices of systemic inflammation. Mechanistically, the phenotype is caused by a block in Atg9a‐Fam134b‐LC3β and Atg9a‐Sec62‐LC3β interactions, and defective reticulophagy, the autophagic recycling of the ER. Inhibition of ATase1/ATase2 acetyltransferase enzymes downstream of AT‐1 restores reticulophagy and rescues the phenotype of the animals. These data suggest that inappropriately elevated acetyl‐CoA flux into the ER directly induces defects in autophagy and recycling of subcellular structures and that this diversion of acetyl‐CoA from cytosol to ER is causal in the progeria phenotype. Collectively, these data establish the cytosol‐to‐ER flux of acetyl‐CoA as a novel event that dictates the pace of aging phenotypes and identify intracellular acetyl‐CoA‐dependent homeostatic mechanisms linked to metabolism and inflammation. 相似文献
97.
Reza Shafaatian Mark A. Payton John D. Reid 《Molecular & general genetics : MGG》1996,252(1-2):101-114
WD-repeat proteins contain four to eight copies of a conserved motif that usually ends with a tryptophan-aspartate (WD) dipeptide. TheSaccharomyces cerevisiae PWP2 gene, identified by sequencing of chromosome III, is predicted to contain eight so-called WD-repeats, flanked by nonhomologous extensions. This gene is expressed as a 3.2-kb mRNA in all cell types and encodes a protein of 104 kDa. ThePWP2 gene is essential for growth because spores carrying thepwp21::HIS3 disruption germinate before arresting growth with one or two large buds. The growth defect ofpwp21::HIS3 cells was rescued by expression ofPWP2 or epitope-taggedHA-PWP2 using the galactose-inducibleGAL1 promoter. In the absence of galactose, depletion of Pwp2p resulted in multibudded cells with defects in bud site selection, cytokinesis, and hydrolysis of the septal junction between mother and daughter cells. In cell fractionation studies, HA-Pwp2p was localized in the particulate component of cell lysates, from which it would be solubulized by high salt and alkaline buffer but not by nonionic detergents or urea. Indirect immunofluorescence microscopy indicated that HA-Pwp2p was clustered at multiple points in the cytoplasm. These results suggest that Pwp2p exists in a proteinaceous complex, possibly associated with the cytoskeleton, where it functions in control of cell growth and separation. 相似文献
98.
Results of the present investigation indicate that mouse-nerve growth factor (-NGF), which belongs to the kallikrein family of proteins, specifically cleaves the Phe-His bond of a synthetic renin substrate and exhibits rat-tonin-like activity. Since other mouse kallikreins do not cleave this bond,-NGF may play a regulatory role in the generation of antiogensin-II. 相似文献
99.
Cyclic AMP signaling enhances lipopolysaccharide sensitivity and interleukin‐33 production in RAW264.7 macrophages 下载免费PDF全文
Shizuka Sato Yoshiki Yanagawa Sachiko Hiraide Kenji Iizuka 《Microbiology and immunology》2016,60(6):382-389
While it has been suggested that IL‐33 plays pathogenic roles in various disorders, the factors that stimulate IL‐33 production are poorly characterized. In the present study, the effect of cyclic adenosine monophosphate (cAMP) signaling on IL‐33 production in RAW264.7 macrophages in response to various doses of LPS was examined. High‐dose LPS treatment induced IL‐33 and TNF protein production in RAW264.7 macrophages. In contrast, low‐dose LPS failed to induce IL‐33 production while significantly inducing TNF production. In the presence of the membrane‐permeable cAMP analog 8‐Br‐cAMP, low‐dose LPS induced vigorous IL‐33 production. This phenomenon was consistent with amounts of mRNA. Similarly, the cAMP‐increasing agent adrenaline also enhanced the sensitivity of RAW264.7 macrophages to LPS as demonstrated by IL‐33 production. The protein kinase A (PKA) inhibitor H89 blocked the effects of 8‐Br‐cAMP and adrenaline on IL‐33 production, suggesting that PKA is involved in IL‐33 induction. Taken together, cAMP‐mediated signaling pathway appears to enhance the sensitivity of RAW264.7 macrophages to LPS with respect to IL‐33 production. Our findings suggest that stress events and the subsequent secretion of adrenaline enhance macrophage production via IL‐33; this process may be associated with the pathogenesis of various disorders involving IL‐33. 相似文献
100.
W Knoll J Baumann P Korpiun U Theilen 《Biochemical and biophysical research communications》1980,96(2):968-974
Chlorophyll a was incorporated into dipalmitoyllecithin vesicles in different concentrations. Depending on the physical state of the lipid, the chlorophyll can aggregate into domains. This phase separation was demonstrated by fluorescence as well as by photoacoustic measurements. 相似文献