PubMed HealthSearch

Biomedical subjects

D Carbonera

Publications and source records attributed to D Carbonera.

5 recordsLinked to original sources

Proteolytic and partial sequencing studies of the bifunctional dihydrofolate reductase-thymidylate synthase from Daucus carota.

The bifunctional dihydrofolate reductase-thymidylate synthase (DHFR-TS) of Daucus carota has been further characterized as regards molecular weight, amino acid composition, protease digestion and microsequencing of proteolytic peptides. Data reported in this paper demonstrate that the carrot protein has a calculated Mr of 124,000 thus indicating that, contrarily to what has previously been suggested, it occurs as a dimer of identical subunits. Results of partial amino acid microsequencing show the presence of sequences highly homologous with those of the active sites of both DHFR and TS from other organisms confirming, at the structural level, the bifunctional nature of the carrot protein. As in the case of Leishmania tropica DHFR-TS, incubation of the carrot protein with V8 protease led to a rapid loss of TS activity while retaining that of DHFR. However the pattern of proteolysis did not allow to establish whether the sequence of domains is DHFR-TS as in Leishmania, or vice versa. Low homology of other amino acid sequences, as judged by computer analysis, and absence of common epitopes indicate an apparent divergence between carrot and leishmanian proteins.

Amino Acid Sequence

Cellular localization of dihydrofolate reductase-thymidylate synthase in carrot cells.

The intracellular distribution and localization of dihydrofolate reductase-thymidylate synthase of wild type suspension carrot cells was analysed using cytochemical and immunocytochemical techniques; in both resting and growing normal cells (E4) the activity appeared to be predominantly cytoplasmic. The pattern of localization of the enzyme was also analysed during the different phases of the cell cycle. To this end carrot cells were synchronized with aphidicolin (an inhibitor of the alpha-like DNA polymerase which blocks cells at the G1/S boundary) and cycle phases checked by labelled-thymidine incorporation. Protoplasts obtained from cells inhibited with aphidicolin or from cells sampled at different times after the removal of the drug (S and G2 phase), failed to show a nuclear localization of DHFR-TS. These results indicate that in carrot the bifunctional enzyme does not change compartment during the cell cycle. Surprisingly Mtx-resistant cells (E2A2, E2A1C6; overproducing DHFR-TS) showed, irrespective of their physiological state (quiescent or growing), also a relevant nuclear or perinuclear immunofluorescence which could not be detected using cytochemical techniques. The reason of this altered localization is not clear and its possible relation with altered cytophysiological parameters is discussed.

Cell Cycle

[Myasthenia gravis. Indications, aims and methods of intensive therapy].

Some recent views on pathophisyology of "myasthenia gravis" are presented. The Authors explain the typical damage of myasthenia gravis, i.e. the progressively reduced muscolar function on the basis of an autoimmune derangement affecting the motor-end plates. The most commonly used types of treatment, both medical (i.e. antiChE, A.C.T.H., steroids and immunodepressant drugs) and surgical (thymectomy) are reviewed. The very important role of Intensive Care for the treatment either of myasthenia gravis "per se" or of possible consequences of some drugs (A.C.T.H. steroids) is also stressed. Finally the Authors present their results about their experience on 36 patients affected by myasthenia gravis and admitted to I.C.U. once (29 patients) or twice or more (7 patients). The Authors describe some practical problems presented by patients during their stay in I.C.U.

Adolescent