Search PubMed⌕ Search

Biomedical subjects

E Wingender

Publications and source records attributed to E Wingender.

65 records · Page 4Linked to original sources

Faithful transcription of ribosomal 5-S RNA in vitro depends on the presence of several factors.

Cytoplasmic extracts from HeLa cells, capable of transcribing the cloned genes for ribosomal 5-S RNA, were employed to study the factors involved in this process. Two factors can be isolated, by gel filtration through Sephadex G-100, which are devoid of RNA polymerase activity. They significantly enhance the extent and specificity of the transcription of 5-S rRNA. Both proteins can jointly be purified by affinity chromatography on immobilized DNA containing the genes for ribosomal 5-S RNA from Xenopus borealis. Besides a protein of approximately 45 kDa, possibly corresponding to TF IIIA isolated from Xenopus oocytes, a second protein with a molecular mass of 22 +/- 1 kDa stimulates the formation of 5-S RNA. This protein is contained in the breakthrough of DEAE-cellulose; it binds to and is eluted from phosphocellulose with 0.6 M KCl. In addition, it was found that the exclusion volume obtained after gel filtration on Sephadex G-100 contains functional complexes, which are capable of transcribing the cloned 5-S genes and hence contain all the required factors. Direct evidence is presented that the protein of 22 kDa described above is contained in and can be isolated from such complexes. It is postulated from indirect evidence that an additional factor with a molecular mass in excess of 100 kDa is required which can be removed from functional polymerase complexes by gel filtration through Bio-Gel A5m.

Chromatography, DEAE-Cellulose↗

Parameters affecting the superreactivity of the cysteine side chain in histone H3. Characterization of a 32-amino-acid peptide including Cys-110.

Tryptic digestion of the whole histone mixture from chicken erythrocytes is used to isolate the hydrophobic portion (residues 84-115) of histone H3. The phenomenon of a superreactive thiol at Cys-110 was reinvestigated by the reaction of a neutral, fluorogenic reagent, N-[p-(2-benzimidazolyl)phenyl]maleimide, with this peptide and with the intact histone. Removing the highly basic portions of H3 leads to a strong reduction of Cys-110 reactivities, even if a stoichiometric complex with histone H4 is reconstituted. An apparent superreactivity is found only for a non-degraded histone H3 under conditions of low ionic strength but not for the histone complex in its native conformation. It is concluded that thiol activation is due to an artifactual cluster of positive charges around Cys-110 rather than to a stable microenvironment.

Amino Acid Sequence↗

Modulation of the nucleosome structure by histone acetylation.

A rapid procedure for the isolation of core particles from Chinese hamster ovary cells is described which permits measurements, usually at the day of their preparation. Particles of 145 +/- 5 base pairs, derived from interphase cells, will be compared with the analogue specimens from butyrate-treated cells, metaphase cells and a standard preparation from chicken erythrocytes. Butyrate cause an increase in the acetylation of histones H3 and H4, which induces alterations of the interhistone and histone-DNA interactions. Changes in the interhistone contacts, correlated to an extension of alpha-helical segments, lead to an altered accessibility of the H3 cysteine side-chains and to a different histone displacement by protamines. On the other hand, histone-DNA contacts are loosened in parts and this is particularly evident from the changes in the premelting region of a thermal-denaturation profile.

Acetylation↗

[Differentiation of osteogenetic cells: systems and regulators].

Bone formation comprises a complex but ordered sequence of events, beginning with the proliferation of chondrogenic and osteogenic precursor cells followed by their subsequent differentiation, ultimately leading to extracellular matrix maturation and mineralisation. Several models have been established which recreate discrete elements of this network. Factors induce ectopic bone formation, when implanted into muscle pouches, have been characterized as members of the TGF-beta-superfamily. Detailed information about the course of OB-differentiation has been obtained from an in vitro model system. The process of mineralisation was found to consist of three distinct time periods: a proliferative phase, a period of extracellular matrix maturation and mineralisation. The development of each states depends on each other. This model is not as complex as the whole organ and cannot of course lead to any conclusion about the kinetic differentiation path of a cell in its normal spatial environment. Different organ culture systems are described and through the application of sensitive methods the differentiation can be studied in the normal spatial environment. The cascade of events in the differentiation process must be strictly regulated. Hormones and growth factors in many cases show a bone-forming and/or bone-resorbing action. The effects of the classical calcium regulating hormones Vitamin D and PTH on OB-differentiation are reviewed. A large number of growth factors have been shown to effect OB. Growth factors, that have been isolated from the bone matrix are of particular interest to bone formation.

Animals↗

Integrated databases and computer systems for studying eukaryotic gene expression.

MOTIVATION: The goal of the work was to develop a WWW-oriented computer system providing a maximal integration of informational and software resources on the regulation of gene expression and navigation through them. Rapid growth of the variety and volume of information accumulated in the databases on regulation of gene expression necessarily requires the development of computer systems for automated discovery of the knowledge that can be further used for analysis of regulatory genomic sequences. RESULTS: The GeneExpress system developed includes the following major informational and software modules: (1) Transcription Regulation (TRRD) module, which contains the databases on transcription regulatory regions of eukaryotic genes and TRRD Viewer for data visualization; (2) Site Activity Prediction (ACTIVITY), the module for analysis of functional site activity and its prediction; (3) Site Recognition module, which comprises (a) B-DNA-VIDEO system for detecting the conformational and physicochemical properties of DNA sites significant for their recognition, (b) Consensus and Weight Matrices (ConsFrec) and (c) Transcription Factor Binding Sites Recognition (TFBSR) systems for detecting conservative contextual regions of functional sites and their recognition; (4) Gene Networks (GeneNet), which contains an object-oriented database accumulating the data on gene networks and signal transduction pathways, and the Java-based Viewer for exploration and visualization of the GeneNet information; (5) mRNA Translation (Leader mRNA), designed to analyze structural and contextual properties of mRNA 5'-untranslated regions (5'-UTRs) and predict their translation efficiency; (6) other program modules designed to study the structure-function organization of regulatory genomic sequences and regulatory proteins. AVAILABILITY: GeneExpress is available at http://wwwmgs.bionet.nsc. ru/systems/GeneExpress/ and the links to the mirror site(s) can be found at http://wwwmgs.bionet.nsc.ru/mgs/links/mirrors.html+ ++.

Algorithms↗