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Membrane potential and conductance during pinocytosis induced in Amoeba proteus with alkali metal ions.

An investigation of the relationship between the polarized state of the membrane and the onset and the intensity of pinocytosis was made in Amoeba proteus. Membrane potential and input resistance was in all instances found to decrease in approximate proportion to the number of channels when pinocytosis was induced by a variety of alkali metal ions at varying pH. Channels began to appear when the membrane was depolarized to -30 mV by the inducer of pinocytosis. With all inducers the maximum pinocytosis was encountered at membrane potentials close to zero. No positive potentials were recorded when the chloride salts of the inducing cations were used. At high concentrations of alkali ions a transient increase of the chloride permeability caused short-lasting hyperolarizations of the membrane. Inhibition of pinocytosis by Ca++ was accompanied by an increase of input resistance and membrane potential. The selectivity of the membrane to different alkali metal ions observed as changes in pinocytosis intensity, membrane potential and input resistance was found to vary with the concentration of the inducer and with the Ca++ concentration of the extracellular solution. Displacement of membrane bound Ca++ appeared to decrease the field strength of charged groups in the membrane altering its selectivity among alkali cations. The formation of pinocytotic channels is suggested to require translocation of Ca++ from the membrane into the cell and would therefore be closely related to the electrical properties of the amoeba.

Alkalies↗

Lysolecithin as a modifier of induced pinocytosis in Amoeba proteus.

Lysolecithin was found to modify cation-induced pinocytosis in Amoeba proteus. It is shown here that lysolecithin (LPC) in the concentration range of 10(-15) to 10(-10) g/ml has the same effect on Na+ -induced pinocytosis as cAMP and a pinocytosis regulating factor (PRF) which is secreted by the amoeba. Thus, LPC activated Na+-induced pinocytosis in starved amoebae and decreased the sensitivity to the inducer in normal cells. Pinocytosis depressed by treatment with EGTA or dibucaine became normal upon addition of LPC to the inducer. These effects were also obtained with lysolecithin isolated from the amoeba. It is suggested that PRF and amoeba LPC may be closely related and that phospholipase activity of the amoeba may regulate its capacity for pinocytosis.

Amoeba↗

Flow cytometric assay of pinocytosis: correlation with membrane ruffling and metastatic potential in the Dunning R-3327 rat prostatic adenocarcinoma model.

Membrane ruffling has been associated with neoplastic transformation, Harvey ras expression, and metastatic capability. In the Dunning R-3327 rat prostatic adenocarcinoma model, membrane ruffling graded visually upon live cultured cells filmed by time-lapse video-microscopy has distinguished sublines of high and low metastatic potential. Fluid-phase pinocytosis is a constitutive, noninducible internalization of medium by cell membrane. Fluid phase pinocytosis may be measured flow cytometrically by cellular uptake of fluorescein-labelled medium constituents. The optimum conditions for a flow cytometric assay of pinocytosis were determined using AT-2 subline that has an intermediate degree of membrane ruffling. The optimum dextran concentration was selected from the midpoint of the linear portion of the dose-response (0.01-10.00 mg/ml) curve, whereas the optimum incubation time was determined from a time-course (1-405 min.) curve study. Cultured cells from 6 Dunning sublines incubated with 1.0 mg/ml of fluorescein-labelled dextran for 90 min were washed, fixed, and the fluorescence of 10,000 cells studied by flow cytometry. For each subline, dextran fluorescence was measured in four independent experiments. Pinocytosis failed to distinguish sublines of high (AT-3 63.5 +/- standard error 4.1 mean channel number, MAT-LyLu 63.2 +/- 6.3, MAT-Lu 64.3 +/- 5.6) and low (G 33.5 +/- 1.2, AT-1 63.5 +/- 4.1, AT-2 58.4 +/- 3.6) (rank p = 0.38) metastatic potential but correlated strongly with visually graded membrane ruffling (r = 0.95, p = 0.003). Pinocytosis assayed by flow cytometry reflects membrane ruffling observed visually and thus flow cytometric assays may facilitate study of membrane activity.

Adenocarcinoma↗

Comparative kinetics of phosphomannosyl receptor-mediated pinocytosis of fibroblast secretion acid hydrolases and glycopeptides prepared from them.

In a previous report we demonstrated that phosphorylated oligosaccharides isolated from acid hydrolases were subject to pinocytosis by phosphomannosyl receptors present on the cell surface of human fibroblasts [9]. However, limiting quantities of oligosaccharides precluded detailed comparison of the kinetics of pinocytosis of these phosphorylated oligosaccharides to those of the acid hydrolases from which they were derived. In this report we present studies comparing the kinetics of pinocytosis of acid hydrolases from NH4Cl-induced fibroblast secretions with those of concanavalin A-binding glycopeptides prepared from them by pronase digestion. The uptake of both secretion acid hydrolases and 125I-labeled glycopeptides was linear for at least 3 hr, saturable, inhibited competitively by mannose 6-phosphate, and destroyed by prior treatment of the ligand with alkaline phosphatase. The inhibition constants of excess unlabeled glycopeptide for the uptake of 125I-labeled glycopeptides (Ki of 1.5 X 10(-6) M) and for the uptake of secretion acid hydrolases (Ki of 2.2 X 10(-6) M) were remarkably similar. Furthermore, the Ki for mannose 6-phosphate inhibition of pinocytosis of glycopeptide uptake (3 X 10(-5) M) compares closely to that previously determined for the pinocytosis of intact "high-uptake" acid hydrolases (3-6 X 10(-5) M). "High-uptake" fractions of both ligands were prepared and quantified by affinity chromatography on immobilized phosphomannosyl receptors purified from bovine liver. Only 10% of the concanavalin A-binding glycopeptides bound to the immobilized phosphomannosyl receptors, while 80% of the acid hydrolases from which they were prepared bound and were eluted with 10 mM mannose 6-phosphate. However, the fraction of each type of ligand that binds to the immobilized phosphomannosyl receptors accounts for all the uptake activity of that ligand.

Ammonium Chloride↗

Effect of alterations in the size of the vacuolar compartment on pinocytosis in J774.2 macrophages.

J774.2 macrophages cultured in medium containing 10 mg/ml sucrose accumulate the sugar by pinocytosis and become highly vacuolated, due to the sugar's osmotic effect within the vacuolar compartment. When such cells are incubated in medium containing 0.5 mg/ml invertase, the enzyme reaches the sucrose vacuoles by pinocytosis, then cleaves the sugar to more permeant monosaccharides. Within 4 hours, the vacuoles shrink to smaller, phase-dense organelles (Cohn and Ehrenreich, 1969, J. Exp. Med., 129:201). We have used this reversible expansion of the lysosomal compartment to address two questions: (1) Does the increased size of the lysosomal compartment affect pinocytic accumulation of solute, and (2) what is the fate of the vacuolar membrane and its soluble content during invertase-induced vacuole shrinkage? Using lucifer yellow (LY) as a probe for pinocytic fluid influx and efflux, we found that vacuolated cells accumulated 30-50% less LY than controls and returned to higher rates of pinocytosis after invertase-induced vacuole shrinkage. A similar reduction in LY accumulation was achieved after feeding cells latex beads to increase the size of the lysosomal compartment. Thus, treatments that increased the size of the lysosomal compartment reduced solute accumulation via pinocytosis. A dramatic shrinkage of LY-containing sucrose vacuoles followed pinocytosis of invertase. Despite this reduction in size of the LY-containing vacuoles, the overall rate of LY efflux did not increase significantly during invertase-induced vacuole collapse. Electron microscopy revealed that during shrinkage, the excess vacuolar membrane was compressed into whorled membranous organelles (residual bodies), with fluid markers (colloidal gold and, by inference, LY) trapped inside. The trapping of LY inside lysosomes as J774.2 macrophages returned to their normal dimensions indicates that nearly all of the surplus membrane contents were removed from circulation as well.

Cells, Cultured↗

In vitro studies on the effect of yolk sac antisera on functions of the visceral yolk sac: I. Pinocytosis and transport of small molecules.

The production of congenital malformations by the administration of teratogenic antisera to pregnant animals has been reported from many laboratories. This work has focused our attention on the importance of the yolk sac placenta in supporting the rat embryo during early organogenesis and the significance of yolk sac dysfunction in rodent teratogenesis. The studies reported in this article deal with the effect of teratogenic antisera on the process of yolk sac transport; specifically pinocytosis (as measured by 14C-sucrose uptake) and small-molecule transport utilizing 14C-alpha-aminoisobutyric acid (AIB) and 3H-2-deoxyglucose (DOG). We sought to determine whether several different yolk sac localizing antibodies interfere with these transport processes, and, if so, which transport processes were most affected. The results of the experiments indicated that teratogenic antisera interfered with the process of pinocytosis in the yolk sac and that pinocytosis can be reduced as much as 40%. Nonteratogenic antisera, even when they localized in the yolk sac, did not interfere with the process of pinocytosis. Furthermore, the teratogenic antisera did not interfere with the transport of small molecules (either AIB or DOG) in the yolk sac. These results indicated that while fluorescent localization of an antiserum in the yolk sac did not invariably indicate the potential for teratogenicity, it is likely that the reduction in pinocytosis may directly correlate with the teratologic and embryopathic events. This work reaffirms the view that the yolk sac in important during rodent organogenesis and that yolk sac dysfunction can play an important role in the development of congenital malformations.(ABSTRACT TRUNCATED AT 250 WORDS)

Aminoisobutyric Acids↗

Differential effect of zinc on teratogen-induced inhibition of pinocytosis by cultured rat yolk sac.

Pinocytosis as measured by the uptake of 125I labelled PVP by the isolated cultured day 12 rat yolk sac was observed to be linear over a 4 h incubation period and to proceed at a rate of approximately 2.5 microliters/mg protein/h. Cadmium, anti-visceral yolk sac antibody (AVYS) and trypan blue all inhibited pinocytosis in a concentration-dependent fashion when added to the culture medium, although at low concentrations trypan blue was slightly stimulatory. The effect of zinc on the inhibition of pinocytosis by these three teratogens was studied. It was observed that zinc ameliorated the inhibitory effects of cadmium and AVYS, but had no effect on inhibition by trypan blue. These results indicate that the previously demonstrated protective action of zinc against cadmium-induced yolk sac dysfunction is not specific to that agent but extends to inhibition of pinocytosis by AVYS, and further suggest that, because of its refractoriness to zinc, trypan blue-induced inhibition of pinocytosis by yolk sac occurs by a mechanism different from that effected by cadmium and AVYS.

Animals↗

Insulin-stimulated fluid-phase pinocytosis and internalization of the insulin receptor: differences between the U-937 monocyte and rat adipocyte.

U-937 monocytes, a human cell line, respond acutely to insulin by internalization of the insulin receptor and acceleration of fluid-phase pinocytosis. In the present studies, both processes were shown to require energy and both were dependent on the number of insulin receptors. Monocytes with a reduced number of insulin receptors, ie, down-regulated by a 16-hour insulin treatment, had a markedly reduced response to insulin-stimulation of pinocytosis and a decrease in the amount of insulin receptors internalized. This latter feature resulted, however, from the reduction in the cellular content of insulin receptors. The proportion of receptor internalized during a 30-minute acute treatment with insulin (eg, 59% of the cell surface receptors) was slightly greater than the proportion internalized in control cells. Therefore, down-regulation does not selectively destroy receptors that cycle, leaving only a subpopulation of receptors anchored in the membrane. Apparently, there is only one population of insulin receptors, all of which are equally competent with respect to internalization. Although these results suggest a close relationship between pinocytosis and receptor internalization, it was possible to separate the two systems. The addition of poly-L-lysine produced a marked stimulation of fluid-phase pinocytosis in the absence of any increase in insulin receptor internalization. Thus, movement of the receptor into the internal pool requires more than an increase in the rate of pinocytosis. Rat adipocytes were also studied, and the results differed in several aspects from those of U-937 monocytes.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine Triphosphate↗

Pinocytosis and phagocytosis: the effect of size of a particulate substrate on its mode of capture by rat peritoneal macrophages cultured in vitro.

Both phagocytosis (of particles) and pinocytosis (of solutes) occur in macrophages. It is not known, however, whether particles, if they are small enough, can enter by pinocytosis, nor whether there is a minimum size of particle capable of triggering phagocytic uptake. These questions have been investigated by studying, in vitro, the uptake by rat peritoneal macrophages of particles ranging in diameter from 30 nm to 1100 nm. Percoll (30 nm diameter) and polystyrene beads (100, 300, 600, 800 or 1100 nm diameter) were 125I-iodinated and their uptake by macrophages was measured in the absence or presence of metabolic and cytoskeletal inhibitors. Since uptake, expressed as an Endocytic Index (microliter/10(6) cells per h), increased steadily with the duration of incubation and was inhibited by low temperature or metabolic inhibitors, it was concluded that true endocytosis, and not a superficial cell-association, was being measured. Rates of clearance increased with increasing particle diameter. The rate of uptake of Percoll was 10-times, and of 100 nm polystyrene beads 100-times, the rate of fluid-phase pinocytosis, as measured by the uptake of 125I-labelled polyvinylpyrrolidone. Polystyrene beads of 1100 nm diameter were captured at 700-times this rate. The differential effects of colchicine and cytochalasin B on the uptake of 125I-labelled polyvinylpyrrolidone and of 1100 nm polystyrene beads were taken as indicators of their effects on pinocytosis and phagocytosis respectively. It is concluded that Percoll, although particulate, is captured by pinocytosis. The pattern of inhibition of uptake of polystyrene particles suggests that there is no radical discontinuity between pinocytic and phagocytic uptake, but that the contribution of phagocytosis steadily increases with increasing particle diameter. The results are discussed.

2,4-Dinitrophenol↗

Rapid stimulation of pinocytosis in human carcinoma cells A-431 by epidermal growth factor.

Horseradish peroxidase (HRP) uptake was used to measure fluid-phase pinocytosis in monolayers of human epithelioid carcinoma cells (A-431). Histochemistry confirmed that cell-associated HRP was restricted to intracellular vesicles. Biochemical methods showed that HRP uptake in control cultures was directly proportional to the duration of exposure. The addition of low concentrations of epidermal growth factor (EGF) to the incubation media produced a 10-fold increase in the initial rate of pinocytosis. The EGF effect was rapid (within 30 s) but transient; the rate of pinocytosis returned to control levels within 15 min. Metabolic inhibitors reduced the EGF-stimulated rate of pinocytosis by greater than 90%. A conjugate of EGF and ferritin (F:EGF) was used to simultaneously compare the intracellular locations of EGF and HRP. Much of F:EGF was internalized in approximately 100-nm vesicles, while most of the HRP was located in much larger vesicles (range 0.1--1.2 micrometer) which also contained F:EGF. The tumor-promoter 12-0-tetradecanoyl-phorbol-13-acetate, which shares several biological activities with EGF, was also effective in stimulating an increase in the rate of pinocytosis.

Animals↗

The regulation of pinocytosis in mouse macrophages. II. Factors inducing vesicle formation.

The pinocytosis-inducing effect of a number of molecular species was studied in cultures of mouse macrophages. Agents were added to a basal medium containing 1% NBCS-No. 199 and allowed to interact with cells for 150 min. Vesicle counts were then performed and compared to control cells in the basal medium. Certain proteins, i.e. albumin and fetuin, with isoelectric points of five and below were found to be potent stimulators of vesicle formation. Basic proteins including lysozyme, histone, and protamine had little influence at sublethal concentrations. The pinocytosis-stimulating activity of bovine plasma albumin could be markedly depressed by removal of bound fatty acids. The addition of either oleic or linoleic acid to de-fatted albumin restored its inducing properties to initial levels. The activity of fetuin could be abolished by either mild acid hydrolysis or neuraminidase digestion. Both procedures removed the majority of the sialic acid content of fetuin. The D and L isomers of polyglutamic acid were found to produce a marked increase in pinosome production. In contrast, poly-DL-lysine was not effective. Neutral and basic amino acids were without significant effect on pinocytosis, whereas aspartic and glutamic acids were stimulatory. The amides of glutamic and aspartic acid did not induce pinocytosis. The unnatural D isomers of glutamic, aspartic, leucine, and phenylalanine inhibited pinocytosis. The inhibition by D-glutamic acid could be reversed with the L isomer. A number of acid mucopolysaccharides, including heparin, hyaluronic acid, and chondroitin sulfate, were excellent inducers. High molecular weight dextran was without significant stimulatory effect whereas dextran sulfate was very active. Both desoxyribonucleic acid and ribonucleic acid enhanced pinosome formation. A number of low molecular weight anions including N-acetylneuraminic acid were found to enhance vesicle formation. In general, anionic molecules were better inducers than either neutral or cationic species. The minimum effective dose of macroanions was a function of molecular weight and their activity appeared unrelated to specific chemical groupings.

Amino Acids↗

Oxidized LDL promotes vascular endothelial cell pinocytosis via a prooxidation mechanism.

Human low density lipoprotein (LDL) is prepared in the presence of antioxidants and is oxidized to different levels (measured by thiobarbituric acid reactive substance) with copper ion. The effects of unoxidized LDL and oxidized LDL (ox-LDL) on stress fiber formation, cell membrane ruffling, and pinocytosis (measured by [14C]sucrose uptake) in cultured human umbilical cord vein endothelial cells (EC) are compared. We show that at a concentration range of 100 to 200 microg cholesterol/ml, both unoxidized LDL and ox-LDL promote EC elongation and stress fiber formation, but the effect by the latter is more prominent when compared at the same dose range. In addition, ox-LDL also induces EC membrane ruffling and promotes pinocytosis. These effects are positively correlated with the extent of LDL oxidation and depend on the dose of ox-LDL. Ox-LDL-promoted membrane ruffling and pinocytosis are effectively blocked by brief preexposure of the cells to antioxidants. In contrast, stress fiber formation is not affected by antioxidant pretreatment. Although unoxidized LDL also promotes [14C]sucrose uptake, it is less potent than ox-LDL and significantly higher concentrations are required to produce a detectable effect. Unlike ox-LDL, unoxidized LDL-enhanced pinocytosis is not accompanied by the appearance of membrane ruffling; therefore, they may act via different mechanisms. Elevated pinocytosis may increase transcytotic activity of the endothelium, leading to an increased influx of plasma components such as LDL into the subendothelial space.

Endothelium, Vascular↗

Effect of lanthanum on pinocytosis induced by cations in Amoeba proteus.

Lanthanum chloride (greater than or equal to 10(-5) M) induced pinocytosis in normal and at greater than or equal to 10(-4) M in Ca++-deficient amoeba. With respect to the Ca++-requirement of the pinocytotic response low and high concentrations of La+++ had effects like Na+ and K+, respectively. The concentration of La+++ stimulated or inhibited other types of pinocytosis. Thus all concentrations of La+++ inhibited sodium induced pinocytosis while high concentrations (greater than 10(-3) M) stimulated and low concentrations diminished potassium induced pinocytosis. Only the latter effect required the presence of Ca++. In the presence of La+++ other inducers acted either like K+ or Na+. Inducers may cause channel formation by opening a pore for Ca++ in the plasma membrane, Na+ like inducers being less effective than K+-like inducers, and by releasing Ca++ into the cytoplasm from the glycocalyx (Na+-like inducers) or from the entire cell membrane (K+-like inducers). La+++ may diminish the effect of Na+-like inducers and vice versa by direct competition for sites in the glycocalyx and the effect of a K+-like inducer by redistribution of Ca++ in the cell surface. At high concentrations or in the presence of a K+-like inducer La+++ may enter the Ca++ pore, release Ca++ from the interior of the membrane and so induce or stimulate pinocytosis.

Amoeba↗

Reversal by concanavalin A of the inhibitory effects of extracellular Ca2+ on pinocytosis in Amoeba proteus.

When Concanavalin A, 1-20 micrograms ml-1 binds to the surface of Amoeba proteus the cell's response to Ca2+ and to cationic inducers of pinocytosis is strikingly altered. Separately, Concanavalin A and Ca2+ are weak inducers but their combined effects are intense pinocytosis and suppression of the normal inhibitory effect of Ca2+ on cation-induced pinocytosis. At high concentrations (greater than 25 micrograms ml-1) the lectin increases cellular uptake and binding of 45Ca in the cell surface but the ionic permeability and the potential of the cell membrane are little changed by treatment with Concanavalin A. Subsequent addition of Ca2+ starts the pinocytic cycle and causes a fivefold increase of the membrane resistance without depolarizing the cell. Neither a rise of free intracellular calcium nor an influx of 45Ca precedes formation of pinocytotic channels when Con A is applied to cells in the presence of calcium. All effects of Concanavalin A are blocked by alpha-methylmannoside while succinyl-Concanavalin A is without effects on pinocytosis. These findings suggest that crosslinking of cell surface carbohydrates reverses calcium inhibition of pinocytosis and increases the cell's pinocytotic response to cations without modifying either the bioelectrical effects or the intracellular free concentration of calcium.

Amoeba↗

The inflammatory cytokine response of cholesterol-enriched macrophages is dampened by stimulated pinocytosis.

Two features of advanced atherosclerotic lesions are large numbers of macrophages and a heightened state of inflammation. Some of the macrophages appear to be enriched with free cholesterol (FCMphis), and we have shown that this process induces the synthesis and secretion of inflammatory cytokines, including TNF-alpha and IL-6. However, lesions contain many other macrophages that are not FC-enriched (non-FCMphis). Therefore, we sought to understand how the interaction of these two populations of macrophages would influence the inflammatory response. We show here that non-FCMphis possess a robust ability to deplete TNF-alpha and IL-6 secreted by FCMphis. The mechanism involves enhanced pinocytic uptake and lysosomal degradation of the FCMphi-secreted cytokines by the non-FCMphis. The FCMphis contribute directly to this process by secreting pinocytosis-stimulatory factors that act on non-FCMphis but not on the FCMphis themselves. One of these pinocytosis-stimulatory factors is M-CSF, which is induced by a process involving cholesterol trafficking to the endoplasmic reticulum and signaling through PI-3K and ERK MAPK pathways. However, one or more other FCMphi-secreted factors are also required for stimulating pinocytosis in non-FCMphis. Thus, FCMphis secrete inflammatory cytokines as well as factors that promote the eventual pinocytosis and degradation of these cytokines by neighboring macrophages. This process may normally serve to prevent prolonged or disseminated effects of inflammatory cytokines during inflammation. Moreover, possible perturbation of stimulated pinocytosis during the progression of advanced atherosclerosis may contribute to the heightened inflammatory state of these lesions.

Animals↗

Uncoupling of membrane ruffling and pinocytosis during Ras signal transduction.

Activation of Ras stimulates cell surface membrane ruffling and pinocytosis. Although seen as coupled events, our study demonstrates that membrane ruffling and pinocytosis are regulated by distinct Ras signal transduction pathways. Ras controls membrane ruffling via the small GTPase Rac. In BHK-21 cells, expression of the constitutively active Rac1(G12V) mutant, via a Sindbis virus vector, resulted in a dramatic stimulation of membrane ruffling without affecting the uptake of horseradish peroxidase. Expression of Ha-Ras(G12V), an activated Ras mutant, stimulated both membrane ruffling and horseradish peroxidase uptake. The Ha-Ras(G12V)-stimulated pinocytosis but not membrane ruffling was abolished by either wortmannin or co-expression with a dominant negative mutant of Rab5, Rab5(S34N). Expression of the activated Rab5(Q79L) mutant mimics the stimulatory effect of Ha-Ras(G12V) on pinocytosis but not membrane ruffling. Our data indicate that Ha-Ras(G12V) separately activates Rab5-dependent pinocytosis and Rac1-dependent membrane ruffling.

Androstadienes↗

Characterization of f-Met-Leu-Phe-stimulated fluid pinocytosis in human polymorphonuclear leukocytes by flow cytometry.

N-formylated chemotactic peptide stimulation of human neutrophils initiates a number of cellular processes, such as lysosomal enzyme release and superoxide anion production, that are indicative of the events of neutrophil activation during the acute inflammatory response in disease. This study characterizes a newly recognized neutrophil activation event, N-formylated chemotactic peptide-stimulated fluid pinocytosis in human neutrophils, using a novel flow cytometric assay for this activity. Fluid pinocytosis was found to be inhibited by acidic pH and low temperature but could be enhanced by cytochalasin B treatment or surface adherence by neutrophils. The activity measured by this new assay of fluid pinocytosis appears to be separate and distinct from lysosomal enzyme release and receptor-mediated adsorptive endocytosis in neutrophils. The physiologic significance of N-formylated chemotactic peptide-stimulated fluid pinocytosis is not known, but a possible relationship to neutrophil locomotion is discussed.

Body Fluids↗

Selective responses (actin polymerization, shape changes, locomotion, pinocytosis) to the PKC inhibitor Ro 31-8220 suggest that PKC discriminately regulates functions of human blood lymphocytes.

The results suggest that protein kinase C (PKC) plays a pivotal role in the control of F-actin levels, locomotion, pinocytosis, and cell shape in lymphocytes. The PKC inhibitor Ro 31-8220 elicits a high proportion of polarized (ED50 = 1.5 x 10(-6) M) and locomoting cells and reduces the relative amount of F-actin (by 29% at 10(-5) M) in initially resting cells. Phorbol myristate acetate (PMA) counterbalances the polarizing effect of Ro 31-8220. This indicates that the spherical shape and the F-actin content of resting cells are maintained by constitutive PKC activity. PMA-induced increases in fluid pinocytosis, F-actin content, and formation of nonpolar cells with surface protrusion are suppressed by Ro 31-8220 (IC50 = 2-4 x 10(-7) M). Spherical cells and, at higher concentrations (ED50 = 3.3 x 10(-6) M), polarized cells are formed instead. As a result, lymphocyte function switches from fluid pinocytosis to cell polarity and locomotion. The data indicate that PKC is instrumental in selectively switching lymphocyte function between resting state, locomotor activity, and fluid pinocytosis. Ro 31-8220 is extremely potent in stimulating lymphocyte polarity and locomotion (B and T cells). It acts faster and/or produces a higher proportion of polarized lymphocytes than other available agonists. It may thus be used as a tool in further experiments requiring locomoting lymphocytes.

Actins↗