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1.
When adapting young rats to different sugar substitutes (sorbitol, PolydextroseR and PalatinitR), effects were seen in the caecal morphology and caecal content e.g. bacterial concentration, which did not occur when adapting rats to sugars (glucose, sucrose). For in vitro studies, anaerobic growth of caecal flora in thioglycollate medium with and without the respective substances was monitored by continuous measurement of heat production, optical density and pH. Additionally, biochemical analyses and light microscopic observations were performed in order to detect differences between adapted and non-adapted flora. In particular the microcalorimetric data furnished valuable information about alterations in bacterial metabolic activity after adaptation to sugars and sugar substitutes, and clearly indicated that all the substances tested influenced the metabolism of caecal flora. 相似文献
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Summary Ninety five rho- mitochondrial DNA's of Saccharomyces cerevisiae were compared for their deletion structure by means of 15 genetic markers and 22 tRNA genes. The patterns of co-deletion and coretention of different tRNA genes allowed us to determine their positions with respect to each other. The deduced order of tRNA genes was consistent with the order of the genetic markers established by independent genetic approaches. Our previously proposed mitochondrial tRNA gene map has been revised and extended. Transfer RNA genes, corresponding to all 20 aminoacids, and two isoacceptor tRNA genes were localized. The possible position of each tRNA gene has been indicated on the physical map of mitochondrial DNA. Seventeen tRNA genes are carried by a narrow region representing less than 20% of the wild type genome.Abbreviations tRNA
transfer RNA
- mRNA
messenger RNA
- rRNA
ribosomal RNA
- mitDNA
mitochondrial DNA
- nucDNA
nuclear DNA
- EDTA
ethylenediaminetetraacetate
- C, E, OI, OII and P
drug resistance genetic loci
- Rib I, Rib III
OI, OII and PI respectively. The three letter symbols for amino acids (ala, cys, etc...) designate tRNA genes corresponding to each amino acid
Formerly Fondation Curie, Institut du Radium 相似文献
4.
Elisabetta Colletti Laura Frontali Claudio Palleschi Micheline Wesolowski Hiroshi Fukuhara 《Molecular & general genetics : MGG》1979,175(1):1-4
Summary In S. cerevisiae four isoacceptor mitochondrial tRNAs for serine have been separated by reversed phase chromatography. At least two of these species are products of different genes. In this work the deletion mapping technique has been used to locate two genes for tRNAser. The gene for tRNAser previously localized in the oli I region of the mitochondrial genome has been found to code for tRNA
ser
2
, and another gene coding for tRNA
ser
1
has been detected in the region where most of other tRNA genes are found. Results of fine mapping experiments allowed to localize this gene in the proximity of the gene for tRNAarg. 相似文献
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Function and subnuclear distribution of Rpp21, a protein subunit of the human ribonucleoprotein ribonuclease P 总被引:6,自引:4,他引:2
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Jarrous N Reiner R Wesolowski D Mann H Guerrier-Takada C Altman S 《RNA (New York, N.Y.)》2001,7(8):1153-1164
Rpp21, a protein subunit of human nuclear ribonuclease P (RNase P) was cloned by virtue of its homology with Rpr2p, an essential subunit of Saccharomyces cerevisiae nuclear RNase P. Rpp21 is encoded by a gene that resides in the class I gene cluster of the major histocompatibility complex, is associated with highly purified RNase P, and binds precursor tRNA. Rpp21 is predominantly localized in the nucleoplasm but is also observed in nucleoli and Cajal bodies when expressed at high levels. Intron retention and splice-site selection in Rpp21 precursor mRNA regulate the intranuclear distribution of the protein products and their association with the RNase P holoenzyme. Our study reveals that dynamic nuclear structures that include nucleoli, the perinucleolar compartment and Cajal bodies are all involved in the production and assembly of human RNase P. 相似文献
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Wesolowski V 《Memórias do Instituto Oswaldo Cruz》2006,101(Z2):139-145
Because of the relationship with subsistence, dental caries is a central issue in paleopathological research. Usually, comparisons between caries prevalence exhibited in different skeletal series are made. Dietary variation is the most common explanation for cavities prevalence. The aim of this paper is to verify if it is possible to compare caries prevalence reported on papers for archaeological skeletal series. Another goal is to determine if other factors besides diet are implicated in dental cavity prevalence explanation. Twenty six papers about dental health with caries prevalences published from 1999 to 2004 were analyzed for completeness. This assessment includes carious lesion diagnosis and characteristics, age, sex and size characteristics of samples, and prevalence calculation method. The majority of the analyzed papers do not provide adequate information in the topics listed above. Only very few implicated factors other than diet as a contributor to caries lesions development. 相似文献
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Kelton C Wesolowski JS Soloviev M Schweickhardt R Fischer D Kurosawa E McKenna SD Gross AW 《Archives of biochemistry and biophysics》2012,526(2):219-225
Certain combinations of non-competitive anti-EGFR antibodies have been reported to produce new effects on cells compared to either antibody used separately. New and enhanced combination-activity includes increased inhibition of signaling, increased receptor internalization and degradation, reduced proliferation of tumor cell lines and induction of complement-dependent cytotoxicity (CDC) effector function. To test requirements and mechanisms to elicit enhanced combination-activity with different EGFR binding domains, we created an anti-EGFR biparatopic antibody. A biparatopic antibody interacts through two different antigen-binding sites to a single antigen. A heterodimeric antibody with one binding domain derived from the C225 antibody and one binding domain derived from the humanized 425 (hu425) antibody was built on the strand-exchange engineered domain (SEED) scaffold. This anti-EGFR biparatopic-SEED antibody was compared to parental antibodies used alone and in combination, and to the corresponding monovalent anti-EGFR-SEED antibodies used alone or in combination. We found that the anti-EGFR biparatopic-SEED had enhanced activity, similar to the combination of the two parental antibodies. Combinations of monovalent anti-EGFR-SEED antibodies did not produce enhanced effectiveness in cellular assays. Our results show that the anti-EGFR biparatopic antibody created using the SEED scaffold has enhanced combination-activity in a single molecule. Furthermore, these data suggest that the potential to cross-link the two different epitopes is an important requirement in the mechanism of enhanced combination-activity. 相似文献