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Biomedical subjects

A Kaplan

Publications and source records attributed to A Kaplan.

At least 145 records · Page 8Linked to original sources

Is HCO(3) Transport in Anabaena a Na Symport?

Na(+) strongly promoted HCO(3) (-) transport in Anabaena variabilis. The effect was highly specific to this cation. Kinetic analysis indicated a progressive decrease in the K(m) (HCO(3) (-)) of the transport system with increasing Na(+) concentration. V(max) was also affected. We raise the possibility that the transport is a Na(+)-HCO(3) (-) symport; alternatively, that a Na(+)-H(+) antiport (or Na(+)-OH(+) symport) system mediates the efflux of the OH(-) ions derived from the entering HCO(3) (-) ions, and that this antiport can rate-limit HCO(3) (-) influx.

Journal Article↗

Interaction of Dictyostelium discoideum alpha-mannosidase with beef liver phosphomannosyl receptor. Effect of alkaline phosphatase treatment.

Both intracellular and secreted alpha-mannosidase from D. discoideum bind quantitatively and specifically to immobilized phosphomannosyl receptor from beef liver. Almost all the intracellular enzyme molecules retain tight binding capacity subsequent to exhaustive alkaline phosphatase treatment. This supports the idea that uncovered phosphates are not essential for optimal recognition by the phosphomannosyl receptor. However, approximately 50% of the extracellular enzyme was converted to a weak binding form by the same treatment.

Alkaline Phosphatase↗

Linked pools of processed alpha-mannosidase in Dictyostelium discoideum.

We are studying the fate of alpha-mannosidase, a lysosomal enzyme, in Dictyostelium discoideum. alpha-Mannosidase is synthesized as a 150,000-dalton precursor which becomes proteolytically cleaved to mature (56,000-62,000 dalton) forms. When cells are shifted into starvation buffer (5 mM phosphate, pH 6.5), the enzyme is secreted. We compared the kinetics of secretion of newly processed alpha-mannosidase with that of bulk forms. After 2 h in phosphate buffer less than 20% of the newly processed forms but as much as 50% of the bulk enzyme activity was secreted. During the course of the experiments, the total alpha-mannosidase activity remains constant, cells remain viable, and there is no evidence of degradation of enzyme. Furthermore, a 4-h chase period prior to starvation is required before the newly processed forms are secreted to the same extent as the bulk forms. On the basis of these results we propose that the enzyme is present in at least two pools and that it is transferred from a newly processed to an efficiently secreted pool.

Dictyostelium↗

IgA polymorphism in mice: NZB and BALB/c mice produce two forms of IgA.

There are two different forms of mouse IgA immunoglobulins, one in which light chains are disulfide-linked to each other (IgAL-L) and the second where light chains are linked to heavy chains (IgAH-L). IgA myeloma proteins from BALB/c mice are IgAL-L and those from NZB are IgAH-L. To determine whether these two forms of IgA represent allotypic or isotypic variants, we purified serum IgA and prepared IgA-secreting somatic cell hybrids from mitogen-stimulated BALB/c and NZB mice and determined the pattern of light chain linkage. It was found that each strain produces both forms of IgA and that both forms share the allotypic determinants characteristic of the mouse strain.

Animals↗

Adaptation of the Cyanobacterium Anabaena variabilis to Low CO(2) Concentration in Their Environment.

The rate of adaptation of high CO(2) (5% v/v CO(2) in air)-grown Anabaena to a low level of CO(2) (0.05% v/v in air) was determined as a function of O(2) concentration. Exposure of cells to low (2.6%) O(2) concentration resulted in an extended lag in the adaptation to low CO(2) concentration. The rate of adaptation following the lag was not affected by the concentration of O(2). The length of the lag period is markedly affected by the O(2)/CO(2) concentration ratio, indicating that the signal for adaptation to low CO(2) may be related to the relative rate of ribulose-1,5-bisphosphate carboxylase/oxygenase activities, rather than to CO(2) concentration proper. This suggestion is supported by the observed accumulation of phosphoglycolate following transfer of cells from high to low CO(2) concentration.

Journal Article↗

Nature of the rate-limiting step in the supply of inorganic carbon for photosynthesis in isolated asparagus mesophyll cells.

Accumulation of acid-stable and acid-labile C has been studied in cells isolated from cladophylls of Asparagus sprengeri regel, as a function of the concentrations of the various inorganic C (C(i)) species in the external medium.The rate of CO(2) fixation was higher when C(i) was supplied as CO(2) as opposed to HCO(3) (-), at the same concentration. Participation of HCO(3) (-) was indicated when the external CO(2) and HCO(3) (-) concentrations were chosen such that, owing to interconversion between C(i) species, the same CO(2) concentrations would be reached at a certain point in time, regardless of which species was supplied initially; at this point, a higher fixation rate was observed in the case of HCO(3) (-) supply.In the presence of carbonic anhydrase, the apparent affinity for C(i) was raised. This enzyme raised fixation rate even under steady-state conditions, but only at limiting external C(i) concentrations. The decrease in external CO(2) concentration was correlated with a decreasing internal C(i) level when CO(2) was the species supplied.When 10 mum CO(2) was supplied initially fixation rate was almost independent of pH. However, when HCO(3) (-) was supplied at concentrations calculated to yield 10 mum CO(2) at equilibrium, fixation rate rose with pH. Carbonic anhydrase raised the fixation rate over the entire pH range when HCO(3) (-) was the species supplied.It is concluded that CO(2) was the major C(i) species permeating from the medium to the carboxylating site. Further, our results bring clear evidence that formation of CO(2) from HCO(3) (-) in the unstirred layer, and the diffusion of both species in this layer, rate limit CO(2) fixation by these isolated cells.

Journal Article↗

Processing and secretion of alpha-mannosidase forms by Dictyostelium discoideum.

We are studying the biosynthesis and processing of acid hydrolases from Dictyostelium discoideum. We prepared antibody to highly purified alpha-mannosidase from the spent medium of stationary phase cultures. It precipitated alpha-mannosidase but not beta-hexosaminidase, alpha-glucosidase, beta-glucosidase, or any of the major proteins in cell lysates or secretions. The antibody precipitated a 150,000- and an 80,000-dalton protein in addition to mature forms (56,000-62,000 daltons) of alpha-mannosidase subunits. The possibility that the 150,000 and 80,000 dalton bands were precursors of mature forms was evaluated by pulse-chase experiments. Following a 20-min pulse labeling period, only the 150,000-dalton protein was detected in the immunoprecipitate. Apparent conversion of this form into 80,000- and 60,000-dalton forms was observed following a 30-min chase. During the next 90 min continued accumulation of 60,000-dalton and appearance of 62,000-dalton forms was observed while the 80,000-dalton form disappeared. The fate of the 150,000-dalton precursor depended on nutritional conditions. In cells conditioned with fresh growth medium intracellular processing predominated. Less than 10% of either the precursor or mature forms was secreted in 8 hr. However, when cells were shifted from growth medium to starvation buffer, secretion of precursor soon predominated. After a 1-hr lag period, cells began secreting 150,000-dalton precursor into the medium. After 4 hr in starvation buffer, the rate of secretion of 150,000-dalton form increased by at least an order of magnitude while processing was markedly diminished. This may be a case where nutritional conditions control the sorting of an acid hydrolase precursor.

Antibody Specificity↗

Involvement of a Primary Electrogenic Pump in the Mechanism for HCO(3) Uptake by the Cyanobacterium Anabaena variabilis.

The response of the membrane potential to HCO(3) (-) supply has been studied in the cyanobacterium Anabaena variabilis strain M-3 under various conditions. Changes in potential were followed with the aid of the lipophilic cation tetraphenyl phosphonium bromide.Addition of HCO(3) (-) to CO(2)-depleted cells resulted in rapid hyperpolarization. The rate and extent of hyperpolarization were greater in low-CO(2)-adapted than in high-CO(2)-adapted cells. Addition of the electron acceptor p-nitrosodimethylaniline which resulted in O(2) evolution in CO(2)-depleted cells did not cause hyperpolarization. The hyperpolarization was not attributable to a change in pH or in ionic strength of the medium. Pretreatment with 3-(3,4-dichlorophenyl)-1,1-dimethylurea prevented the hyperpolarization. KCN depolarized hyperpolarized cells. Addition of HCO(3) (-) also brought about immediate K(+) influx which was succeeded after about 2 minutes by K(+) efflux.TWO OF THE MODELS CONSIDERED WOULD BE CAPABLE OF EXPLAINING THESE AND PREVIOUS FINDINGS: (a) a primary electrogenic pump for transporting HCO(3) (-) ions; (b) proton-HCO(3) (-) contransport, the driving force for which is generated by a proton pump which is sensitive to the HCO(3) (-) concentration.

Journal Article↗

Induction of HCO(3) Transporting Capability and High Photosynthetic Affinity to Inorganic Carbon by Low Concentration of CO(2) in Anabaena variabilis.

The apparent affinity of photosynthesis for inorganic carbon in Anabaena variabilis strain M-3 increased during the course of adaptation from high to low CO(2) concentration (5% and 0.03% v/v CO(2) in air, respectively). This was attributed to an increased ability of the cells to accumulate inorganic carbon during the course of adaptation to low CO(2) conditions. The release of phycobiliproteins was used to evaluate the sensitivity of the cells to lysozyme treatment followed by osmotic shock. High CO(2)-grown cells were more sensitive to this treatment than were low CO(2) ones. The efflux of inorganic carbon from cells preloaded with radioactive bicarbonate is faster in high than it is in low CO(2)-adapted cells. It is postulated that the cell wall or membrane components undergo changes during the course of adaptation to low CO(2) conditions. This is supported by electron micrographs showing differences in the cell wall appearance between high and low CO(2)-grown cells. The increasing ability to accumulate HCO(3) (-) and the lessened sensitivity to lysozyme during adaptation to low CO(2) conditions depends on protein synthesis. The increase in affinity for inorganic carbon during the adaptation to low CO(2) conditions is severely inhibited by the presence of spectinomycin. Incubation in the light significantly lessens the time required for the adaptation to low CO(2) conditions.

Journal Article↗

Development of clear cell adenocarcinoma in DES-exposed offspring under observation.

Two cases of clear cell adenocarcinoma of the vagina detected at follow-up in young women exposed in utero to diethylstilbestrol are reported. One patient, aged 23, had been followed for 2 years before carcinoma was diagnosed; the second patient, aged 22, had been seen on a regular basis for 5 years, 8 months. In both instances, suspicion of the presence of carcinoma was aroused by the palpation of a small nodule in the vaginal fornix. Hysterosalpingography was performed on both patients and, in 1 instance, an abnormal x-ray film was reflected by the gross appearance of the uterine cavity found in the surgical specimen.

Adenocarcinoma↗

Photosynthetic Response to Alkaline pH in Anabaena variabilis.

The rate of O(2) evolution and alkalization of the medium in low CO(2(-) ) grown Anabaena variabilis was observed as affected by the pH in the medium. Both rates are severely inhibited by pH values higher than 9.5, but the latter is more sensitive to this treatment. This finding, as well as the lag observed in alkalization of the medium, but not in O(2) evolution, following the addition of HCO(3) (-) indicates that the transport of HCO(3) and OH(-) (or H(+)) are not compulsorily coupled. The inhibition of photosynthesis by strongly alkaline pH is attributed to an alteration of the internal pH and, hence, the rate of carboxylation. This conclusion is supported by data showing that the rate of O(2) evolution is affected by pH more strongly at saturating [HCO(3) (-)] than at limiting [HCO(3) (-)]. Also, the rate of O(2) evolution at saturating light intensity is affected by pH more strongly than is the initial slope of the curve against light intensity or the rate of dark respiration.

Journal Article↗

Glycolate Excretion and the Oxygen to Carbon Dioxide Net Exchange Ratio during Photosynthesis in Chlamydomonas reinhardtii.

Chlamydomonas reinhardtii cells were grown in high (5% v/v) or low (0.03% v/v) CO(2) concentration in air. O(2) evolution, HCO(3) (-) assimilation, and glycolate excretion were measured in response to O(2) and CO(2) concentration. Both low- and high-CO(2)-grown cells excrete glycolate. In low-CO(2)-grown cells, however, glycolate excretion is observed only at much lower CO(2) concentrations in the medium, as compared with high-CO(2)-adapted cells. It is postulated that the activity of the CO(2)-concentrating mechanism in low-CO(2)-grown cells is responsible for the different dependence of glycolate excretion on external CO(2) concentration in low- versus high-CO(2)-adapted cells.The O(2)/CO(2) net exchange ratio is dependent on the CO(2) concentration in the medium and is linearly dependent on the fraction of glycolate excreted per CO(2) taken up. Glycolate excretion, however, is too low to account for the deviation of the O(2)/CO(2) net exchange ratio from unity.

Journal Article↗

Evidence for Mediated HCO(3) Transport in Isolated Pea Mesophyll Protoplasts.

The kinetics of (14)C fixation, and inorganic C (C(inorg)) accumulation, have been followed in isolated pea mesophyll protoplasts. NaH(14)CO(3) was supplied to the protoplasts in media the pH of which was varied between 7 and 8.When (14)CO(2) fixation was plotted against the calculated concentration of free CO(2) in the media, the apparent K(m) for CO(2) was observed to rise as external pH increased. The V(max) did not alter significantly. Similarly, when C(inorg) uptake, either in the light or in the dark, was plotted against external CO(2) concentration the slope of the curves was steeper at higher external pH.Investigation of the time course of uptake showed that internal C(inorg) concentration rose throughout the experimental period, and that in the light it surpassed the external C(inorg) concentration after about 3 minutes. Irradiation of protoplasts previously taking up (14)C(inorg) in the dark brought about a sharp increase in the rate of (14)C(inorg) accumulation which was sustained for at least 20 minutes.Estimates of internal pH based on the distribution of labeled 5,5-dimethyloxazoladine-2,4-dione (DMO) between protoplast and medium suggested that internal pH altered relatively little with change in external pH. The values for internal pH as calculated from C(inorg) distribution were always higher than those calculated from DMO distribution, i.e. the internal C(inorg) concentration was higher than would be predicted on the assumption of passive distribution in accordance with pH.Addition of carbonic anhydrase to the external solution was without effect either on rate of (14)CO(2) fixation or C(inorg) accumulation.Various possible interpretations of the results are considered. It is concluded that the most reasonable explanation, consistent with all the data, is that HCO(3) (-) ions can cross the protoplast membranes, and that their passage is mediated by a transfer mechanism.

Journal Article↗

Light-Induced Proton Gradient Formation in Intact Cells of Dunaliella salina.

A light-induced proton gradient (DeltapH) increase as exhibited by an increase of 9-aminoacridine fluorescence quenching is demonstrated between the external medium and the interior of the halophytic green alga Dunaliella salina. The formation and maintenance of the DeltapH is sensitive to electron transport inhibitors and to uncouplers. It is inhibited by p-chloromercuribenzenesulfonic acid (50% inhibition at 3 micromolar), which does not affect photosynthetic O(2) evolution. It is concluded that the observed DeltapH is located across the plasmalemma or the chloroplast envelope. The formation and maintenance of the light-induced proton gradient requires the presence of Na(+). Substitution of NaCl by KCl or glycerol results in inhibition of the DeltapH formation. The proton gradient is also sensitive to ATPase and energy transfer inhibitors. It is suggested that a Na(+)/H(+) pump mechanism may be involved in the formation of the proton gradient in intact Dunaliella cells.

Journal Article↗

Polypsychopharmacy revisited.

In this paper, polypsychopharmacy is defined, noting variations of definition in the medical literature. We show that the high incidence rates are bot dependent only on the physician's behaviour. Much of the medical literature is hostile to the use in psychiatry of two-drug combinations, and this hostility is based on three assumptions about drug use. We find little evidence to support these assumptions. Attempts to reduce the incidence of polypsychopharmacy may be simply irrelevant. We list several two-drug combinations which are of value in psychiatry, and then return to two questions: 1) Why is there so little research into two-drug combinations, considering their high incidence of use? 2) Why does this high incidence persist in the absence of good supportive evidence of its value? We offer tentative responses to these questions, and conclude that since multiple drug use is as likely to be of value in psychiatry as in any other branch of medicine, research into specific drug-combinations is overdue.

Attitude of Health Personnel↗