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Biomedical subjects

M L Campo

Publications and source records attributed to M L Campo.

At least 19 recordsLinked to original sources

Inhibition of phosphatidylcholine synthesis precedes apoptosis induced by C2-ceramide: protection by exogenous phosphatidylcholine.

Cerebellar granule neurons in primary culture underwent apoptosis when exposed to C2-ceramide. Addition of exogenous phosphatidylcholine (PtdCho) resulted in a dose-dependent full prevention of neuronal death. Exogenous PtdCho also prevented apoptosis induced by farnesol, N-oleoylethanolamine, and sphingomyelinase, but did not prevent apoptosis induced after lowering the potassium concentration in the medium to non-depolarizing levels. Moreover, C2-ceramide inhibited labeling of [32P]PtdCho in cells incubated with [32P]orthophosphate, with the same potency to that causing apoptosis. Although cell viability did not decrease during the first few hours, inhibition of PtdCho synthesis was already patent after a 1 h exposure to C2-ceramide. Taken together, these results strongly suggest that inhibition of PtdCho synthesis constitutes one of the primary events by which C2-ceramide triggers apoptosis in cerebellar granule neurons.

Animals↗

Prevalence of methicillin-resistant and methicillin-susceptible Staphylococcus aureus in the community.

Recent reports indicate that community-acquired methicillin-resistant Staphylococcus aureus (MRSA) infections are increasing and may now involve persons without risk factors predisposing for acquisition. To estimate the extent of community MRSA in New York City, the prevalence of S. aureus and MRSA nasal colonization in a well-patient population of 500 children and guardians was determined. The prevalence of S. aureus nasal carriage was 35% for children and 28% for guardians. One person with predisposing risk factors was colonized with an MRSA, which was identified as the predominant clone found in New York City hospitals. A high degree of methicillin-susceptible S. aureus strain diversity was noted, with no apparent selection for specific clonal types. Thus, MRSA colonization is not ubiquitous in persons without predisposing risk outside of the health care environment. Bacterial competition and a lack of strong selection may limit the community spread of MRSA and can account for its sporadic distribution.

Adolescent↗

MCC and PSC, the putative protein import channels of mitochondria.

All but a small fraction of the hundreds of proteins in a mitochondrion are synthesized in the cytoplasm and imported into the organelle. Water-filled channels are integral to the process of translocating proteins since channels can provide an aqueous pathway through the hydrophobic environment of the membrane. The MCC (multiple conductance channel) and PSC (peptide-sensitive channel) are two high-conductance channels previously identified in electrophysiological studies of mitochondrial membranes. MCC and PSC are the putative pores of the import complexes of the inner and outer membranes, respectively. The genetic, biochemical, and biophysical evidence regarding these assignments are summarized herein. These findings support the identification of MCC and PSC as the protein import channels of mitochondria.

Animals↗

Signal presequences increase mitochondrial permeability and open the multiple conductance channel.

We have reported that the signal presequence of cytochrome oxidase subunit IV from Neurospora crassa increases the permeability of isolated rat liver mitochondria [P. M. Sokolove and K. W. Kinnally (1996) Arch. Biochem. Biophys. 336, 69] and regulates the behavior of the mutiple conductance channel (MCC) of yeast inner mitochondrial membrane [T. A. Lohret and K. W. Kinnally (1995) J. Biol. Chem. 270, 15950]. Here we examine in greater detail the action of a number of mitochondrial presequences from various sources and of several control peptides on the permeability of isolated rat liver mitochondria and on MCC activity monitored via patch-clamp techniques in both mammalian mitoplasts and a reconstituted yeast system. The data indicate that the ability to alter mitochondrial permeability is a property of most, but not all, signal peptides. Furthermore, it is clear that, although signal peptides are characterized by positive charge and the ability to form amphiphilic alpha helices, these two characteristics are not sufficient to guarantee mitochondrial effects. Finally, the results reveal a strong correlation between peptide effects on the permeability of isolated mitochondria and on MCC activity: peptides that induced swelling of mouse and rat mitochondria also activated the quiescent MCC of mouse mitoplasts and induced flickering of active MCC reconstituted from yeast mitochondrial membranes. Moreover, relative peptide efficacies were very similar for mitochondrial swelling and both types of patch-clamp experiments. We propose that patch-clamp recordings of MCC activity and the high-amplitude swelling induced by signal peptides reflect the opening of a single channel. Based on the selective responsiveness of that channel to signal peptides and the dependence of its opening in isolated mitochondria on membrane potential, we further suggest that the channel is involved in the mitochondrial protein import process.

Amino Acid Sequence↗

[Results of 10 years of a randomized trial of neoadjuvant chemotherapy in breast cancers larger than 3 cm].

AIM OF THE STUDY: The aim of this randomised trial was to determine advantages and drawbacks of neo-adjuvant chemotherapy in patients with operable breast cancers > 3 cm. MATERIAL AND METHODS: Two hundred and seventy-two women (age 70) with operable breast cancers larger than 3 cm (T2-3/N0-1/M0) were included in a randomised trial from January 1, 1985 to April 30, 1989. Patients in group A (n = 138) were treated by mastectomy and axillary node dissection. Adjuvant chemotherapy was indicated for 104 patients with axillary node involvement (n = 82) or negative oestrogen and progesterone receptors (EPR-) (n = 22). Patients in group B (n = 134) were treated by initial chemotherapy (identical as in group A) followed by locoregional treatment according to the response. Before treatment, the average of clinical tumoural diameter was 43 mm. RESULTS: The median follow-up was 124 months. In group B, 49 patients (36.5%) were resistant to chemotherapy; a conservative breast surgical treatment was performed in the other 84 patients sensitive to chemotherapy (62.6%). In this last subgroup, 19 (22.6%) needed a secondary mastectomy because of locoregional recurrence. Survival rates were not different in groups A and B, but loco-regional recurrences were frequent in group B. At 10 years, the overall survival rate was 60% and half of living patients in group B were free of cancer and with their breast. CONCLUSION: Neoadjuvant chemotherapy permitted in two-thirds of cases breast conservation treatment, initially considered to be impossible. Locoregional recurrences are more frequent than after mastectomy and adjuvant chemotherapy.

Aged↗

Effects of carbonyl cyanide phenylhydrazones on two mitochondrial ion channel activities.

The respiratory uncouplers carbonyl cyanide p-trifluoromethoxyphenylhydrazone (FCCP) and carbonyl cyanide m-chlorophenylhydrazone (CCCP) affect the activities of two mitochondrial ion channels from mouse liver. At micromolar concentrations, the phenylhydrazones block the voltage-dependent 100-pS channel, mCS, and induce the multiple-conductance-level channel, MCC. The binding site(s) involved in perturbation of channel activities are probably distinct from the sites involved in uncoupling of oxidative phosphorylation which occurs at nanomolar concentrations of the phenylhydrazones. The effects of FCCP and CCCP on the mitochondrial ion channels could be partially reversed by washing with fresh media and were always reversed by perfusion with dithiothreitol. These results indicate that the effects of the phenylhydrazones on mitochondrial ion channels may be related to the ability of these compounds to act as sulfhydryl reagents and not to their protonophoric and uncoupling activity.

Animals↗

Perspectives on the mitochondrial multiple conductance channel.

A multiple conductance channel (MCC) with a peak conductance of over 1 nS is recorded from mitoplasts (mitochondria with the inner membrane exposed) using patch-clamp techniques. MCC shares many general characteristics with other intracellular megachannels, many of which are weakly selective, voltage-dependent, and calcium sensitive. A role in protein import is suggested by the transient blockade of MCC by peptides responsible for targeting mitochondrial precursor proteins. MCC is compared with the peptide-sensitive channel of the outer membrane because of similarities in targeting peptide blockade. The pharmacology and regulation of MCC by physiological effectors are reviewed and compared with the properties of the pore hypothesized to be responsible for the mitochondrial inner membrane permeability transition.

Animals↗

Determination of arginase activity in macrophages: a micromethod.

We propose a modification of Schimke's method for urea determination as a valuable micromethod for measuring arginase in activated macrophages. The method exhibits the following advantages: (a) it uses small amounts of samples (approximately 25,000 macrophages per assay); (b) it does not interfere with other related metabolites that are also present in the activated macrophage such as citrulline or arginine; (c) saturating concentrations of the substrate arginine can be used; and (d) it is much more sensitive than Schimke's method and can detect small amounts of urea, in the order of 0.02 mumol.

Animals↗

Kinetics of manganese reconstitution and thiol group exposition in dialyzed rat mammary gland arginase.

1. Rat mammary gland arginase is a metallo-enzyme dependent on Mn2+, which can be only partially substituted by Cd2+. 2. Reconstitution of the activity of dialyzed arginase by manganese is a two-phase process; the second phase is independent of the cation concentration, with a half-time recovery (t1/2) of 10.77 min. 3. The apparent Km for Mn2+ is 280 microM and 10.5 microM for enzyme dialyzed for 24 and 72 hr, respectively. 4. Treatment with 5 mM EDTA at pH 6 totally inhibits enzyme activity, which is reconstituted by Mn2+. 5. Results obtained with iodoacetamide treatment suggest the existence of sulphydryl groups accessible only when the enzyme is dialyzed.

Animals↗

Immunological identity of the two different molecular mass constitutive subunits of liver arginase.

A detailed understanding of the regulatory mechanisms of arginase in the cell will depend on the clarification of the origin of the two different molecular mass subunits and on the arrangements of them to constitute the native enzyme. Here, we show the immunological recognition of the 39.5 and 37.0 kDa subunits of arginase by antibodies against both subunits. We also find that the subunit stoichiometry (39.5 kDa: 37.0 kDa) present in purified arginase preparations as well as in fresh isolated microsomes and cytoplasm corresponds to 3:1, indicating high prevalence of a constant arrangement of the constitutive subunits of arginase. These findings represent evidence for a limited posttranscriptional or posttranslational modification of only a fraction of the synthesized arginase in liver.

Animals↗

Parallel induction of nitric oxide and glucose-6-phosphate dehydrogenase in activated bone marrow derived macrophages.

The production of nitric oxide (NO.) and the induction of glucose-6-phosphate dehydrogenase by lipopolysaccharides (LPS) from different sources was studied in bone marrow derived macrophages (BMM phi). NO. production was found to be linked to the induction of glucose-6-phosphate dehydrogenase, suggesting the possible involvement of this enzyme in the cytotoxic mechanism resulting from the release of NO. by activated macrophages.

Animals↗

The effect of antimycin A on mouse liver inner mitochondrial membrane channel activity.

In a patch-clamp study, we found antimycin A in low (1-2) microM concentrations decreased the open probability of the multiple conductance channel activity and the approximately 110 picosiemens channel of the inner mitochondrial membrane (for a review of mitochondrial channels see Kinnally, K. W., Antonenko, Yu. N., and Zorov, D. B. (1992) J. Bioenerg. Biomembr. 24, 99-110). Higher antimycin A concentrations (e.g. 10 microM) facilitated multiple conductance channel opening. These effects were reversible, and the binding site(s) are probably distinct from those responsible for the inhibition of the electron transport chain, since the latter are virtually irreversible. A model with two closed and two open states is presented for the approximately 110-picosiemens activity.

Animals↗

Trypsin digestion of arginase: evidence for a stable conformation manganese directed.

1. Controlled tryptic digestion of native arginase from rat liver suggests that Mn2+ promotes a stable conformation as shown by the following features. 2. An 18-fold increase in the half-life of arginase activity in the presence of Mn2+ is produced. 3. The stability of subunit B of arginase is increased in the presence of Mn2+ as revealed by SDS-PAGE during the time-course of trypsin cleavage. 4. The different digestion products of arginase with and without Mn2+ appearing during the time-course of tryptic treatment. 5. Different activity/bands protein ratio at any time of the tryptic digestion in the incubation mixtures, with and without Mn2+, are apparent.

Animals↗

Physico-chemical properties of hepatocyte plasma-membrane-bound arginase.

Rat liver plasma-membrane-bound arginase was investigated in order to obtain data regarding its physico-chemical properties. Arginase bound to plasma membrane presented a specific activity of 0.74 +/- 0.09 IU/mg for the fully-activated enzyme, the pH of maximum activity being 9.8. Maximum stability was recorded at two pH values, 7 and 10.5 respectively. Mn2+ activated the enzyme, while Cu2+ and Zn2+, and to a lesser extend Co2+, showed a strong inhibitory effect. Ca2+ and Mg2+ had no effect at the concentrations assayed. The influence of temperature was studied in the presence and in the absence of Mn2+. The enzyme was stable up to 65 degrees C in both cases. Membrane- bound arginase showed an activation energy of 11.5 +/- 1.4 Kcal/mol between 20 and 40 degrees C, and 13.3 +/- 2.5 Kcal/mol between 40 and 60 degrees C. The Q10 for the same temperature ranges were 1.78 and 1.9 respectively. The membrane-bound enzyme presented two different Michaelis constants, one with high affinity (2.05 +/- 0.73 mM) and the other with low affinity for arginine (130 +/- 27.2 mM). Solubilized arginase showed very similar values. Among all the structural analogous assayed, only L-canavanine proved to be substrate for arginase, with and L-arginine/L-canavanine hydrolysis ratio of 5.8 +/- 0.28. No reactivity was found between plasma-membrane-bound arginase and anti-rat liver arginase antibodies raised in rabbits.

Animals↗

[First evaluation of three years of assessment of medical activity within the framework of PMSI in cancer prevention centers].

In June 1982, the Direction of the French Hospitals introduced the project for the medicalisation of the system of information (PMSI) derived from the American Fetter system. The aim of this project was the collection of basic data necessary to the establishment of a national minimum data set base (MDS). Since 1985, a french regional cancer center, the Foundation Bergonié, has collected MDS by computer. Now, we give the results of the analysis concerning 28,379 MDS collected from 1986 to 1988. However, 11,127 (39%) MDS have not yet been analyzed by PMSI as they are connected with external activity or ambulatory care. It is possible to form a diagnosis related group (DRG) from the MDS to analyze the management of hospitals and utilization of means. 279 DRG were formed from 12,252 MDS, in our Institute. In fact, only 30 DRG with a sufficient number of MDS (over 100) were studied. This descriptive study shows that a few DRG maintain homogeneity in terms of length of hospitalisation especially in the surgical sector. It seems necessary to incorporate new criteria for MDS in order to improve the study of DRG; however groups sufficiently large for statistical analysis must be maintained.

Diagnosis, Computer-Assisted↗

Properties of arginase immobilized in a fibrin clot.

Rat liver arginase was covalently trapped in a fibrin clot. Among the physicochemical properties of the enzyme studied were Mn2+ requirement, pH behavior, temperature and time stability, effect of denaturing agents, and kinetic properties. The immobilized arginase showed the same substrate affinity as soluble arginase, but had higher stability at room temperature, was more resistant to denaturation, and had a higher catalytic activity at physiological pH. The properties so far examined may enhance the use of immobilized arginase in cancer therapy.

Animals↗

Nucleotide effects on kinetic properties of mitochondrial ATPase.

The hydrolytic activity of mitochondrial ATPase, both in its soluble form as F1-ATPase, or as membrane bound in whole mitochondria, was affected by the presence of free nucleoside di- or triphosphates; these effects were largely depending not only on their concentration but also on the substrate concentration. The existence of a regulatory site or sites is proposed; these sites would have a higher affinity for the free nucleoside triphosphates than for the diphosphates, and the interaction of any of these nucleotides with the proposed regulatory site or sites would lead to an activation. The nucleotide regulatory site or sites seem to be different from the anion binding sites since neither free ATP nor free GTP compete with activating or inhibitory anions.

2,4-Dinitrophenol↗