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1.
We have followed the internalization pathway of both epidermal growth factor (EGF) and its receptor in human epidermoid carcinoma (A431) cells. Using EGF conjugated with horseradish peroxidase and anti-receptor monoclonal antibodies (TL5 and EGFR1) coupled either directly or indirectly to colloidal gold we have identified an extensive elaboration of endosomal compartments, consisting of a peripheral branching network of tubular cisternae connected to vacuolar elements that contain small vesicles and a pericentriolar compartment consisting of a tubular cisternal network connected to multivesicular bodies. Immunocytochemistry on frozen thin sections using receptor-specific antibody-gold revealed that at 4 degrees C in the presence of EGF, receptors were mainly on the plasma membrane and, to a lesser extent, within some elements of both the peripheral and pericentriolar endosomal compartments. Upon warming to 37 degrees C there was an EGF-dependent redistribution of most binding sites, first to the peripheral endosome compartment and then to the pericentriolar compartment and lysosomes. Upon warming only to 20 degrees C the ligand-receptor complex accumulated in the pericentriolar compartment. Acid phosphatase cytochemistry identifies hydrolytic activity only within secondary lysosomes and trans cisternae of the Golgi stacks. Together these observations suggest that the prelysosomal endosome compartment extends to the pericentriolar complex and that the transfer of EGF receptor complexes to the acid phosphatase-positive lysosome involves a discontinuous, temperature-dependent step.  相似文献   
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Summary The susceptibility of cellulose to enzymatic hydrolysis can be significantly affected through pretreatment by means of gamma-ray radiation. Experiments were carried out to investigate the effects of this radiation on enzymatic hydrolysis and on the two major structural features of cellulose that most influence hydrolysis, namely, specific surface area and crystallinity.D. H. Beardmore is currently with Phillips Petroleum Company, Bartlesville, OK 74004, U.S.A.  相似文献   
3.
Allozyme variation encoded for by 22 enzyme loci analyzed with starch-gel electrophoresis from samples of gonochoristic Artemia monica and A. urmiana collected from Lake Urmia, Iran and from Mono Lake, CA, USA, respectively, are compared and contrasted with data from representative gonochoristic populations of A. franciscana, A. persimilis and A. salina, as well as diploid, triploid, tetraploid, and pentaploid parthenogenetic forms. Values for parameters measuring degree of genetic variability (number of alleles per locus, proportion of polymorphic loci, and expected heterozygosity) in A. monica and A. urmiana were among the highest in the genus (1.76, 0.46, 0.19, and 2.19, 0.55, and 0.14, respectively). For A. monica, possible factors promoting its high genetic variability are discussed. Mean values for Nei's D between A. monica and A. franciscana were very low (0.09) and consistent with reported cytological and morphological similarities, thus the physiological differentiation which distinguishes the former must involve differences at very few loci. D values from A. urmiana to rest of the gonochoristic species (0.95) are consistent with its taxonomic status and distinctive morphology, while its low genetic distance to the monophyletic Artemia parthenogenetic lineage (mean D = 0.48) suggests a recent common ancestry.  相似文献   
4.
Many animal populations live in social groups which avoid contact with other conspecific groups for at least part of the year. This may give rise to competition between groups for items such as shelter, land and mates. We couple intra-specific group competition with disease dynamics to investigate how infectious diseases may spread through population subgroups, particularly with reference to the contact rates between groups. Our model uses a nonlinear systems of ODEs for which steady-state analysis is carried out in the simplest two-group system. This indicates that coexistence of social groups is possible with the disease or that competitive exclusion occurs with one group dying out whilst the other retains disease. Moreover, we show that in certain circumstances the model can exhibit multistability and we discuss the ecological implications of this result in relation to contact between social groups.  相似文献   
5.
Histone acetylation is involved in the regulation of gene expression in plants and eukaryotes. Histone deacetylases (HDACs) are enzymes that catalyze the removal of acetyl groups from histones, which is associated with the repression of gene expression. To study the role of histone acetylation in the regulation of gene expression during seed germination, trichostatin A (TSA), a specific inhibitor of histone deacetylase, was used to treat imbibing Arabidopsis thaliana seeds. GeneChip arrays were used to show that TSA induces up-regulation of 45 genes and down-regulation of 27 genes during seed germination. Eight TSA-up-regulated genes were selected for further analysis – RAB18, RD29B, ATEM1, HSP70 and four late embryogenesis abundant protein genes (LEA). A gene expression time course shows that these eight genes are expressed at high levels in the dry seed and repressed upon seed imbibition at an exponential rate. In the presence of TSA, the onset of repression of the eight genes is not affected but the final level of repressed expression is elevated. Chromatin immunoprecipitation and HDAC assays show that there is a transient histone deacetylation event during seed germination at 1 day after imbibition, which serves as a key developmental signal that affects the repression of the eight genes. Electronic supplementary material Electronic supplementary material is available for this article at and accessible for authorised users.  相似文献   
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To determine the dosage at which antibiotic resistance evolution is most rapid, we treated Escherichia coli in vitro, deploying the antibiotic erythromycin at dosages ranging from zero to high. Adaptation was fastest just below erythromycin’s minimal inhibitory concentration (MIC) and genotype-phenotype correlations determined from whole genome sequencing revealed the molecular basis: simultaneous selection for copy number variation in three resistance mechanisms which exhibited an “inverted-U” pattern of dose-dependence, as did several insertion sequences and an integron. Many genes did not conform to this pattern, however, reflecting changes in selection as dose increased: putative media adaptation polymorphisms at zero antibiotic dosage gave way to drug target (ribosomal RNA operon) amplification at mid dosages whereas prophage-mediated drug efflux amplifications dominated at the highest dosages. All treatments exhibited E. coli increases in the copy number of efflux operons acrAB and emrE at rates that correlated with increases in population density. For strains where the inverted-U was no longer observed following the genetic manipulation of acrAB, it could be recovered by prolonging the antibiotic treatment at subMIC dosages.  相似文献   
9.
Isolating RNA from dry conifer seeds can be difficult because of a number of interfering compounds present in seeds. We describe a protocol for total RNA isolation from black spruce dry seeds, which is an adaptation of a method used for mouse myeloma tissues. The extraction relies on selective precipitation of RNA by using lithium chloride.  相似文献   
10.
Population cages ofDrosophila pseudoobscura with the gene arrangements Arrowhead and Chiricahua (CH) were studied at 15 1/2°, 17 1/2°, 19°, 22°C, and a fluctuating temperature (F°) ranging from 17° to 27° with mean of 22°. At the three lower temperatures there were only small but detectable changes in the frequency of CH, but at 22° and F° the earlier populations (V and K) showed the elimination of CH and the later ones (W and L) showed an equilibrium similar to that at 25°. Evidence is presented to show that an environmental change strongly affecting population size need have no effect on the inversion system. Several environmental factors that could have influenced the results are discussed.The temperature sensitivity of the inversion system is discussed in relation toWright's adaptive surface model of genotypes. It is proposed that at about 22° there are a number of narrowly separated steep-sided peaks, some of which represent polymorphic and others monomorphic genetic systems. At 25° the surface has a single peak favoring inversion polymorphism, while from 15° to 19° no well-defined peaks are discernible.Dedicated to Prof. L. C. Dunn in friendship and in recognition of his many contributions to the science of genetics.National Science Foundation (U.S.A.) Predoctoral Fellow, 1956–1959; Columbia University Fellow, 1959–1960; Boese Postdoctoral Fellow, Columbia University, 1961–1962.  相似文献   
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