Search PubMed⌕ Search

Biomedical subjects

C L Markert

Publications and source records attributed to C L Markert.

At least 37 records · Page 2Linked to original sources

Molecular signals for initiating protein synthesis in organ hypertrophy.

When chronically provoked to increased physiologic activity, organs increase in mass through augmented protein protein synthesis. This process of compensatory hypertrophy can involve cell division as well as cell growth. To test for molecules that might regulate organ size, by inducing hypertrophy, we performed a series of experiments using isolated, perfused, canine hearts in which the left ventricle was beating but performed no work. Hypertrophying hearts and kidneys as well as normal control organs were extracted and the extracts were perfused through isolated heart preparations. Before and after perfusion, RNA was extracted from fragments of the isolated hearts and translated in cell-free media containing [35S]methionine. Incorporation of methionine into protein was measured by liquid scintillation spectrometry. When perfused through normal hearts, extracts from hypertrophying heart and kidney were able to increase greatly the translational ability of RNA extracted from the normal hearts; corresponding perfusates from nonhypertrophying hearts and kidneys had no effect. Our results indicate that molecules that initiate hypertrophic organ growth are extractable, are generated by the cells of the organ under stress, and are probably similar in heart and kidney and perhaps in many other organs as well.

Animals↗

Manufactured hexaparental mice show that adults are derived from three embyronic cells.

Two female chimeric mice have been produced by aggregates of three genetically marked eight-cell embryos. All three embryonic genotypes are clearly expressed in the pigment pattern of the adults. These hexaparental mice together with their littermates demonstrate that, in the 64-celled blastocyst, at least three cells, and probably only three, are the source of all adult tissues.

Animals↗

Homozygous mouse embryos produced by microsurgery.

Homozygous mouse blastocysts have been produced following microsurgical removal of one pronucleus from the fertilized egg, diploidization in cytochalasin B, and culture in vitro. This combination of techniques should greatly shorten the time required to obtain homozygous strains of mice.

Animals↗

Myocardial LDH isozyme distribution in the ischemic and hypoxic heart.

Small myocardial specimens were obtained from 12 patients undergoing coronary reconstructive surgery and from 12 patients undergoing surgical correction for cyanotic congenital heart defects. The specimens were analyzed for LDH isozyme distribution. A control analysis was performed on myocardial specimens obtained at the time of surgical correction for acyanotic congenital heart defects in seven patients with normal coronary arteries. There was a 42% increase in the proportion of A subunits in the hearts of coronary patients as compared to controls. This represented a shift toward an anaerobic isozyme distribution. There was no change in the percentage of A units from the hearts of cyanotic patients as compared to acyanotic hearts of the same age. Cardiac muscle from patients with coronary vascular disease had an altered LDH subunit composition. Such an alteration was not present with chronic systemic hypoxia. These deficiencies may or may not be related to differing local metabolic responses to the two conditions. However, in the clinical situations, ischemic heart muscle may be oxygen deprived to the point of lactic acid production while hypoxic heart muscle usually is not. Consequently, these findings may represent a compensatory cellular mechanism which provides for continued energy production during chronic ischemia by enhancing glycolysis.

Adolescent↗

Immunochemical homologies among subunits of trout lactate dehydrogenase isozymes.

Lactate dehydrogenase is a tetrameric enzyme, generally composed of one or two kinds of subunits each encoded in a separate gene. Most vertebrates synthesize five major isozymic forms of lactate dehydrogenase, but the salmonid fish, particularly trout, synthesize many more. The numerous lactate dehydrogenase isozymes of trout can be selectively removed from tissue homogenates by suitably prepared antisera to specific lactate dehydrogenase subunits of fish. Electrophoretic resolution of such antisera-treated homogenates then permits an identification of each isozyme and a determination of its subunit composition and probable genetic basis. Such data indicate that trout are tetraploid organisms and have duplicate and slightly different loci for two and perhaps three of the lactate dehydrogenase loci found in other fish. The evolutionary relationships among the lactate dehydrogenase loci can also be assessed by these immunochemical data.

Animals↗

Lactate dehydrogenase isozymes: dissociation and denaturation by dilution.

The tetrameric enzyme lactate dehydrogenase dissociates into its constituent monomeric subunits in a high ion to protein concentration ratio, in certain ionic environments when frozen, and at extreme dilution. Dissociation by dilution involves changes in tertiary conformation which inactivate the enzyme. The dissociation is strongly inhibited by homologous native proteins, but only slightly by denatured or unrelated proteins.

Animals↗