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M C Carr

Publications and source records attributed to M C Carr.

At least 55 records · Page 3Linked to original sources

Nucleoside phosphotransferase from barley. Characterization and evidence for ping pong kinetics involving phosphoryl enzyme.

A nucleoside phosphotransferase has been purified to homogeneity from barley seedlings. Its Mr is about 50,000 and it consists of two subunits of equal size. A tightly bound metal ion required for activity can be replaced by Mg, Ba, or Co ions, but not by divalent Cu, Ca, Cd, or Hg. The enzyme is capable of catalyzing the transfer of phosphate from nucleoside monophosphates to the 5'-hydroxyl of any other nucleoside, but shows a decided preference for purine deoxynucleoside phosphate acceptors. A short lived phosphoryl enzyme intermediate has been trapped by rapid denaturation in presence of [32P]AMP. The steady state kinetics of this enzyme is found to be fully consistent with a branched ping pong pathway involving a compulsory phosphoryl enzyme intermediate from which phosphate may be transferred to nucleoside or to water. With appropriately chosen substrates, parallel line reciprocal plots were obtained, provided that both products of the branched pathway were taken into account in the rate measurements. Conversely, when only transphosphorylation was measured, converging reciprocal plots were obtained. Accordingly, assays were devised for the measurement of three velocity components: transphosphorylation, hydrolysis, and the sum of both reactions. Competitive inhibition of the transferase reaction by higher concentrations of either substrate is attributed to deadend interactions. Instead of being inhibited by the formation of a putative E-P.AMP complex, however, the phosphatase reaction is accelerated almost 2-fold.

Adenosine Monophosphate↗

Deoxyguanosine kinase. Distinct molecular forms in mitochondria and cytosol.

Two distinct deoxyguanosine kinase activities have been identified in calf thymus tissue. They can be differentiated by subcellular location, electrophoretic mobility, chromatographic behavior, nucleoside specificity, apparent Km values, and end product inhibition. After a 130-fold purification from mitochondrial extract, the newly discovered kinase was specific primarily for deoxyguanosine and deoxyinosine. Unlike the cytosol enzyme, which proved to be the broadly specific deoxycytidine kinase studied previously, the mitochondrial enzyme does not phosphorylate deoxycytidine. Its apparent Km for deoxyguanosine, 6 micromolar, is 2 orders of magnitude lower than that of the cytosol enzyme. The mitochondrial enzyme is strongly inhibited by dGTP and dITP and activated up to 6-fold by dTDP and UDP, whereas neither dCTP nor dATP had much effect.

Animals↗

Chlamydiae, cervicitis, and abnormal Papanicolaou smears.

Cervical abnormalities accompanied by Papanicolaou Class II or Class III cytologic results are commonly encountered in gynecologic office practice. Chlamydiae are a common cause of genital tract infection, with or without manifest symptoms or signs. An immunofluorescence method was used to determine the presence of antichlamydial antibodies in cervical secretions. Eleven of 15 patients in whom such antibodies were found (73.3%) had Papanicolaou Class II or Class III smears, in contrast to only 3 of 18 patients (16.7%) without antichlamydial antibodies. The determination of antichlamydial antibodies in cervical mucus was highly reproducible, and specimens were readily collected in the office, without the need of prompt laboratory procedures. In selected patients, tetracycline treatment of early chlamydial infection resulted both in the disappearance of the antibody from cervical secretions and in the reversion of the Papanicolaou smear from Class II or Class III to Class I.

Adult↗

The numerical development of lymphoid cells during human embryogenesis.

We have studied the cellular growth rates in the fetal thymus, spleen, and bone marrow of 12 human fetuses ranging in gestational age from 7 to 20 weeks. In all instances growth rates were linear when plotted logarithmically. However, the spleen had a biphasic growth curve. These data are useful in predicting the cellular yields which can be obtained from human fetal lymphoid organs which are to be used for transplantation in immune deficiency diseases and other clinical conditions.

Bone Marrow↗

Ontogeny of immunity in man.

We have reviewed selected aspects of recent findings in the ontogeny of immunity in man. For obvious reasons, constraints placed on experimental work with human subjects, albeit deceased foetuses, limit the work to in vitro studies. Nevertheless, a number of novel and important concepts have emerged. First, as in lower animals, lymphoid development of the foetal thymus in general precedes the development of immunocompetence in peripheral lymphoid tissues. A striking exception to this rule is the finding of cells in early foetal liver which respond to allogeneic cells in the mixed lymphocyte culture some weeks before lymphoid organization of the thymus. In addition, the response of foetal cells to allogeneic cells in the mixed lymphocyte reaction (MLR) precedes the response to phytohaemagglutinin (PHA), a stimulant with relative T cell specificity. The use of markers for T cells to map the emergence of this class of lymphocytes correlates well with various functional attributes of T cells in in vitro culture systems. B cells emerge first in foetal liver at about 9 weeks' gestation, but formation of immunoglobulin by the foetus occurs at very low levels until after birth. There is a suggestion that progression from IgM to IgA synthesis occurs during human foetal lymphoid development. Taken as a whole, these data suggest a rather remarkable and perhaps unexpected degree of cellular and potential humoral immunocompetence at early stages of feotal development in man.

Animals↗

Ontogeny of cellular immunity in man.

The purpose of this study was to determine the precise developmental sequence of the acquisition of phytohemagglutinin (PHA) and allogenic cell responsiveness (MLR) in the human fetus. Reactivity was determined quantitatively by 3H-thymidine incorporation in various fetal lymphoid tissues. MLR reactivity was the earliest detectable response occurring first in liver lymphoid cells at 5 weeks fetal age. Reactivity to PHA then appeared in thymocytes at 10.5 weeks and at 14 weeks in the spleen and blood. MLR reactivity first appeared in the thymus at 12.5 weeks and in the spleen and blood at 14.5 weeks. Marrow lymphocytes failed to react up to 18 weeks. These results suggest that fetal thymus is immunocompetent by about 10.5 weeks and MLR responsiveness may be under nonthymic (hepatic) control during development.

Blood↗