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Biomedical subjects

E Bartnik

Publications and source records attributed to E Bartnik.

At least 55 records · Page 3Linked to original sources

Intermediate filaments in non-neuronal cells of invertebrates: isolation and biochemical characterization of intermediate filaments from the esophageal epithelium of the mollusc Helix pomatia.

To screen invertebrate tissues for the possible expression of intermediate filaments (IFs), immunofluorescence microscopy with the monoclonal antibody anti-IFA known to detect all mammalian IF proteins was used (Pruss, R. M., R. Mirsky, M. C. Raff, R. Thorpe, A. J. Dowding, and B. H. Anderton. 1981. Cell, 27:419-428). In a limited survey, the lower chordate Branchiostoma as well as the invertebrates Arenicola, Lumbricus, Ascaris, and Helix pomatia revealed a positive reaction primarily on epithelia and on nerves, whereas certain other invertebrates appeared negative. To assess the nature of the positive reaction, Helix pomatia was used since a variety of epithelia was strongly stained by anti-IFA. Fixation-extraction procedures were developed that preserve in electron micrographs of esophagus impressive arrays of IFs as tonofilament bundles. Fractionation procedures performed on single cell preparations document large meshworks of long and curvilinear IF by negative stain. These structures can be purified. One- and two-dimensional gels show three components, all of which are recognized by anti-IFA in immunoblotting: 66 kD/pl 6.35, 53 kD/pl 6.05, and 52 kD/pl 5.95. The molar ratio between the larger and more basic polypeptide and the sum of the two more acidic forms is close to 1. After solubilization in 8.5 M urea, in vitro filament reconstitution is induced when urea is removed by dialysis against 2-50 mM Tris buffer at pH 7.8. The reconstituted filaments contain all three polypeptides. The results establish firmly the existence of invertebrate IFs outside neurones and demonstrate that the esophagus of Helix pomatia displays IFs which in line with the epithelial morphology of the tissue could be related to keratin IF of vertebrates.

Amino Acids↗

Cloning and mapping of fourteen different DNA fragments containing Aspergillus nidulans 5S rRNA genes.

Fourteen different plasmids hybridizing to Aspergillus nidulans 5S rRNA were isolated from a gene bank obtained after cloning Sau3A partial digests of A. nidulans DNA in a yeast--Escherichia coli vector, pBB29. The restriction maps of these plasmids were determined. The size of the cloned fragments was 2.7-9.5 kb, 12 of the plasmids were found to code for single 5S rRNA genes and 2 coded for 2 genes. No similarity of the sequences surrounding the 5S rRNA genes was found by restriction mapping.

Aspergillus nidulans↗

Mitochondrial transfer RNA genes from fungi (Aspergillus nidulans) and plants (Lupinus luteus) are transcribed in Xenopus laevis oocyte nuclei.

Three plasmids containing Aspergillus nidulans mitochondrial transfer RNA genes were microinjected into the nucleus of Xenopus laevis oocytes. Plasmids that contained a single tRNACys gene or two tRNA genes (Arg and Asn) yielded tRNA-sized transcripts. Plasmids containing cloned Lupinus mitochondrial tRNA genes were also transcribed and processed in X. laevis nuclei.

Animals↗

Mitochondrial DNA from lupine: restriction analysis and cloning of fragments coding for tRNA.

Mitochondrial DNA (mtDNA) was isolated from lupine. Restriction analysis was used to estimate its size, which is about 180 kb. A BamHI bank of this mtDNA was constructed using plasmids pBR322 and pBR327 as vectors. Eight clones containing plasmids hybridizing to mitochondrial tRNA (mttRNA) were isolated. Restriction maps of these plasmids were determined. Six of these plasmids hybridized to unique fragments and two to two fragments of very similar size, all obtained by BamHI cleavage of mtDNA.

Cloning, Molecular↗

Organization of the ribosomal RNA gene cluster in Aspergillus nidulans.

DNA coding for ribosomal RNA in Aspergillus nidulans was found to consist of a unit 7.8 kb in size which is tandemly repeated in the genome and codes for 5.8S, 18S and 26S rRNA. The repeat unit has been cloned, and its restriction map and the location of the individual rRNA coding sequences within the unit have been established.

Aspergillus nidulans↗

Discrepant judgements of community adjustment of mentally retarded adults: the contribution of personal responsibility.

Criteria used to determine community adjustment of mentally retarded adults were rated for importance by two groups of their employers, two groups of service-agency staff members, and one group of parents to determine whether normative criteria differed across the groups. In a second study case descriptions, varying on the adjustment criterion of personal responsibility, were presented to an additional sample from the five groups. Results of discriminant fuction analysis showed that parents and service-agency staff members differed markedly on the importance given to personal responsibility. This discrepancy was confirmed in the second study. Employers stressed work-related criteria more than did the other groups. The relevance of discrepancies between the criteria of adjustment used by parents, employers, and service-agency staff members to the measurement of adjustment and to social-validation programs were discussed.

Activities of Daily Living↗

New leucine auxotrophs of Aspergillus nidulans.

A series of Aspergillus nidulans leucine auxotrophs were isolated after nitroquinoline-1-oxide treatment and analyzed. Four complementation groups could be distinguished in addition to the previously known leuA group. A putative mutant for isopropylmalate isomerase (leuB) was mapped on chromosome I and found to be closely linked to leuA.

Aspergillus nidulans↗

Catabolite repression in Aspergillus nidulans; the role of glutamine synthetase.

A mutant (nit8) with a lowered activity of glutamine synthetase (GS) was isolated in Aspergillus nidulans. The levels of GS and of an arginine catabolic enzyme, ornithine transaminase (OTA) were assayed under a variety of growth conditions leading to repression, depression and induction of OTA in the wild type, nit8 and several regulatory mutants. The results obtained appear to exclude the possibility of involvement of GS in the regulation of arginine catabolism in A. nidulans.

Arginine↗

Basic and neutral amino acid transport in Aspergillus nidulans.

Arginine and methionine transport by Aspergillus nidulans mycelium was investigated. A single uptake system is responsible for the transport of arginine, lysine and ornithine. Transport is energy-dependent and specific for these basic amino acids. The Km value for arginine is 1 X 10(-5) M, and Vmax is 2-8 nmol/mg dry wt/min; Km for lysine is 8 X 10(-6) M; Kt for lysine as inhibitor of arginine uptake is 12 muM, and Ki for ornithine is mM. On minimal medium, methionine is transported with a Km of 0-I mM and Vmax about I nmol/mg dry wt/min; transport is inhibited by azide. Neutral amnio acids such as serine, phenylalanine and leucine are probably transported by the same system, as indicated by their inhibition of methionine uptake and the existence of a mutant specifically impaired in their transport. The recessive mutant nap3, unable to transport neutral amino acids, was isolated as resistant to selenomethionine and p-fluorophenylanine. This mutant has unchanged transport of methionine by general and specific sulphur-regulated permeases.

Amino Acids↗