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An alternative hypothesis of cellular transport of lysosomal enzymes in fibroblasts. Effect of inhibitors of lysosomal enzyme endocytosis on intra- and extra-cellular lysosomal enzyme activities.

Recapture of lysosomal enzymes secreted by fibroblasts was inhibited by growing the cells in the presence of either free or immobilized antibodies against lysosomal enzymes or in the presence of phosphorylated carbohydrates known to interact with the cell-surface receptors for lysosomal enzymes. The following results were obtained. 1. Conditions that prevent recapture of released lysosomal enzymes increase the rate of extracellular accumulation of these enzymes up to twice that of controls. 2. Growing cells for 12 days in the presence of 0.5mm-mannose 6-phosphate, which decreases beta-N-acetylglucosaminidase endocytosis to less than 10% of that of controls, has no effect on the intracellular activity of this and four other lysosomal enzymes. 3. Growing cells for 4 days in the presence of 50mm-mannose 6-phosphate, which is a 1000-fold higher concentration than that required for 50% inhibition of lysosomal enzyme endocytosis, leads to a 4-fold increase in extracellular beta-N-acetylglucosaminidase accumulation and a decrease in intracellular enzyme. These results give evidence that, in fibroblasts, transfer of lysosomal enzymes into lysosomes does not require secretion before a receptor-mediated recapture [Hickman & Neufeld (1972) Biochem. Biophys. Res. Commun.49, 992-999]. We propose that (a) lysosomal enzymes are present in a receptor-bound form in those vesicles that fuse with the cell membrane, (b) the major part of the lysosomal enzyme cycles via the cell surface in a receptor-bound form and (c) only a minor part of the lysosomal enzyme is released into the extracellular space during its life cycle.

Acetylglucosaminidase

Drug-induced lysosomal disorders in laboratory animals: new substances acting on lysosomes.

Several substances with lysosomotropic activity were investigated in toxicological studies. AR-L 115 BS (sulmazol, a cardiotonic agent) was tested on beagle dogs; HX-CH 44 BS (a beta-blocker) and SX-AB 1316 SE (an antithrombotic agent) were tested on rats, and AF-CX 1325 XX (an antiepileptic agent) was tested on both rats and beagle dogs. All organ systems were examined morphologically by light and/or electron microscopy. When an increase in the number of lysosomes occurred this was confirmed by the pigment scheme according to Krutsay (1971) as well as by the detection of acid phosphatase and compared with earlier histochemical results. At higher dosages, all substances caused very marked proliferation of lysosomes in the liver and/or kidneys. HX-CH 44 BS also caused such proliferation in striated muscles and in the lungs. A brown discolouration of the kidneys was found with sulmazol and AF-CX 1325 XX. This finding corresponded to the microscopically detectable occurrence of numerous lipofuscin granules. The reticulum cells in the lymph nodes of dogs were also affected by AF-CX 1325 XX. It is concluded that the proliferation of lysosomes in various organs after administration of the above-mentioned substances is due to an excess of substance. The increased substance in the body is then stored in the lysosomes. With HX-CH 44 BS, lysosomal autodigestion of mitochondria in the skeletal musculature and in the alveolar macrophages of the lungs was found. The selective lysosomal incorporation of mitochondria has not been described up to now and in our opinion, this constitutes a special feature. The results otherwise largely correspond to those already described in the literature. Systemic phospholipidosis such as occurs with some other substances was not detectable. The incorporation of the substance causes several types of lysosomal inclusion. Uptake of the substance in lysosomes either leads to overt autodigestion of organelles such as mitochondria (HX-CH 44 BS) or peroxisomes or to residual lysosomes of dense structure which histochemically resemble lipofuscin. SX-AB 1316 SE serves as an example of a substance which is stored directly by lysosomes in crystalline form. Above all, in the liver the substance is taken up not only by the sinusoidal stellate cells but also by hepatocytes.

Adrenergic beta-Antagonists

Physicochemical characteristics of the glycosaminoglycan-lysosomal enzyme interaction in vitro. A model of control of leucocytic lysosomal activity.

1. The activities of 30 different lysosomal enzymes were determined in vitro in the presence of the sulphated glycosaminoglycans, heparin and chondroitin sulphate, all the enzymes being measured on a density-gradient-purified lysosomal fraction. 2. Each enzyme was studied as a function of the pH of the incubation medium. In general the presence of sulphated glycosaminoglycans induced a strong pH-dependent inhibition of lysosomal enzymes at pH values lower than 5.0, with full activity at higher pH values. However, in the particular case of lysozyme and phospholipase A2 the heparin-induced inhibition was maintained in the pH range 4.0-7.0. 3. For certain enzymes, such as acid beta-glycerophosphatase, alpha-galactosidase, acid lipase, lysozyme and phospholipase A2, the pH-dependent behaviour obtained in the presence of heparin was quite different to that obtained with chondroitin sulphate, suggesting the existence of physicochemical characteristic factors playing a role in the intermolecular interaction for each of the sulphated glycosaminoglycans studied. 4. Except in the particular case of peroxidase activity, in all other lysosomal enzymes measured the glycosaminoglycan-enzyme complex formation was a temperature-and time-independent phenomenon. 5. The effects of the ionic strength and pH on this intermolecular interaction reinforce the concept of an electrostatic reversible interaction between anionic groups of the glycosaminoglycans and cationic groups on the enzyme molecule. 6. As leucocytic primary lysosomes have a very acid intragranular pH and large amounts of chondroitin sulphate, we propose that this glycosaminoglycan might act as molecular regulator of leucocytic activity, by inhibiting lysosomal enzymes when the intragranular pH is below the pI of lysosomal enzymes. This fact, plus the intravacuolar pH changes described during the phagocytic process, might explain the unresponsiveness of lysosomal enzymes against each other existing in primary lysosomes as well as its full activation at pH values occurring in secondary lysosomes during the phagocytic process.

Acid Phosphatase

Studies with human leukocyte lysosomes. Evidence for antilysosome antibodies in lupus erythematosus and for the presence of lysosomal antigen in inflammatory diseases.

Human lysosomes were isolated from normal peripheral blood leukoyctes and characterized by electron microscopy, enzyme analysis, and assays for DNA and RNA. Stored sera from 37 unselected patients with systemic lupus erythematosus (SLE), including active and inactive, treated and untreated cases, were tested in complement fixation (CF) reactions with these lysosome preparations. 23 SLE sera exhibited positive CR reactions, as did sera from two patients with "lupoid" hepatitis. The seven SLE sera with strongest CF reactivity also demonstrated gel precipitin reactions with lysosomes. Neither CF nor precipitin reactions with lysosomes were observed with normal sera or with sera of patients with drug-induced lupus syndrome, rheumatoid arthritis (RA), polymyositis, or autoimmune hemolytic anemia. By several criteria the antilysosome CF and precipitin reactions of SLE sera cound not be attributed to antibody to DNA, RNA, or other intracellular organelles. The lysosomal component reactive with SLE sera in CF assays was sedimentable at high speed and is presumably membrane associated. The CF activity of two representative SLE sera was associated with IgG globulins by Sephadex filtration. A search for lysosomal antigen in SLE and related disorders was also made. By employing rabbit antiserum to human lysosomes in immunodiffusion, a soluble lysosomal component, apparently distinct from the sedimentable (membrane-associated) antigen described above, was identified in serum, synovial fluid, or pleural fluid from patients with SLE, RA, ankylosing spondylitis, and leukemoid reaction. An antigenically identical soluble component reactive with the rabbit antiserum could be released in vitro from intact lysosomes by repeated freeze-thaw cycles..

Anemia, Hemolytic, Autoimmune

Lysosomal acid phosphatase is not involved in the dephosphorylation of mannose 6-phosphate containing lysosomal proteins.

The mannose 6-phosphate (Man6P) residues that are necessary for the targeting of newly synthesized lysosomal proteins are dephosphorylated after delivery of lysosomal proteins to lysosomes. To examine the role of lysosomal acid phosphatase (LAP) for the dephosphorylation of Man6P residues in lysosomal proteins, the phosphorylation of endogenous lysosomal proteins and of internalized arylsulfatase A was analyzed in mouse L-cells that overexpress human LAP. Non-transfected L-cells dephosphorylate endogenous lysosomal proteins slowly (half time approximately 13 h) as well as internalized arylsulfatase A. A more than 100-fold overexpression of LAP in these cells did not affect the dephosphorylation rate. Control experiments showed that the internalized arylsulfatase A and overexpressed LAP partially colocalize and that under in vitro conditions purified LAP does not dephosphorylate arylsulfatase A. Taken together, these results indicate that LAP is not the mannose 6-phosphatase that dephosphorylates lysosomal proteins after their delivery to lysosomes.

Acid Phosphatase

[Pathobiochemical aspects of lysosomal enzymes with special reference to lysosomal storage diseases (author's transl)].

Lysosomal hydrolases participate substantially in the degradation of all classes of biological macromolecules. They act physiologically within the lysosome. The enzymes are either primarily included within primary lysosomes or are transported to these cell organelles after secretion and subsequent adsorptive pinocytosis. The involvement of these enzymes in a variety of pathological conditions can be understood on the basis of the known functions of lysosomal hydrolases. Inactivity of one or several of the enzymes causes lysosomal storage disorders. Similar metabolic consequences are found when the enzymes are unable to be concentrated within the lysosome. Lysosomal hydrolases participate, furthermore, in the pathogenesis of numerous diseases. A distinction can be made between lysosomal overload, pathologically-increased enzyme secretion into the extracellular space, and a release of lysosomal enzymes into the cytosol.

Acid Phosphatase

Localization of d-tubocurarine in rat liver lysosomes. Lysosomal uptake, biliary excretion and displacement by quinacrine in vivo.

In the rat d-tubocurarine is taken up by the liver and excreted in bile. A fraction of the drug is taken up very rapidly by lysosomes. This lysosomal localization of the drug was demonstrated by purification of Triton WR 1339 loaded lysosomes ('tritosomes') on a sucrose density gradient by flotation; 3H-labeled d-tubocurarine was accumulated in the same fractions as acid phosphatase activity. Lysosome-bound d-tubocurarine is not available for biliary excretion and remains in the lysosomes even when the cytosolic concentration decreases to very low levels. The biliary excretion rate was linearly related to the amount of d-tubocurarine present in the cytosol. Lysosomal uptake of d-tubocurarine was decreased or prevented by the basic drug quinacrine in vivo. The lysosomal storage of d-tubocurarine is discussed in relation to its relevance for the clinical use of this and related drugs.

Animals

Metabolic turnover of methotrexate polyglutamates in lysosomes derived from S180 cells. Definition of a two-step process limited by mediated lysosomal permeation of polyglutamates and activating reduced sulfhydryl compounds.

Transport and metabolic turnover of methotrexate (MTX) polyglutamates were examined in lysosomes derived from S180 cells. These studies extend prior work from this laboratory (Barrueco, J. R., and Sirotnak, F. M. (1991) J. Biol. Chem 266, 11732-11737) which described basic properties of a facilitative transport system in lysosomes capable of mediating intralysosomal accumulation of MTX polyglutamates. In the present report, we show that the rate of turnover of MTX polyglutamates in lysosomes, which releases MTX in the extralysosomal space, is limited by the extent of mediated intralysosomal accumulation of the polyglutamate and reduced sulfhydryls that activate the enzyme folylpolyglutamate hydrolase. Evidence is presented that cysteine functions as the naturally occurring reduced sulfhydryl compound in lysosomes being equipotent to 2-mercaptoethanol as an activator of folylpolyglutamate hydrolase. Folylpolyglutamate hydrolase in permeabilized lysosomes from S180 cells exhibited a low pH optimum characteristic of a lysosomal enzyme, was activated at concentrations of reduced sulfhydryl at 0.1 mM and above, and exhibited Km values in the range of 0.2-3 microM that decreased with increase in polyglutamate chain length. Values for Km for MTX polyglutamates of folylpolyglutamate hydrolase activity were 100-200-fold lower than values for Km or Ki for facilitated intralysosomal transport, whereas capacities for both processes were similar. This relationship between the kinetic properties of each process ensures efficient hydrolysis of MTX polyglutamates within the lysosome.

Animals

Effects of acute pancreatitis on hepatic secretion of lysosomal enzymes into bile and hepatic lysosomal fragility: protective effects of a new synthetic protease inhibitor, ONO 3307.

To evaluate the effects of acute pancreatitis on hepatic function and hepatic cellular and subcellular organellar fragility, we studied 1) the hepatic secretion of lysosomal enzymes (beta-glucuronidase, beta-galactosidase, and N-acetyl-beta-glucosaminidase) into bile in the isolated perfused rat liver model; 2) the aspartate aminotransferase (ASAT), alanine aminotransferase (ALAT), and lysosomal enzyme levels in the effluent in an isolated liver model; 3) hepatic lysosomal fragility in an in vitro incubation study; and 4) protective effects of a new low molecular weight synthetic protease inhibitor, ONO 3307, against hepatic injury in doses of 2 and 5 mg/kg.h in acute pancreatitis induced by a supramaximal dose of cerulein in rats. Decreased hepatic secretion of lysosomal enzymes into bile and accelerated hepatic lysosomal fragility were observed in acute pancreatitis induced by cerulein. ONO 3307 showed a significant protective effect against this hepatic injury in acute pancreatitis, the dose of 5 mg/kg.h showing a more potent effect than the dose of 2 mg/kg.h. These results suggest that the impaired hepatic function, including depressed hepatic secretion of lysosomal enzymes, seems to be closely related to accelerated hepatic fragility and that some unknown protease, which is present in pancreatitis and is susceptible to inhibition by ONO 3307, plays a crucial pathologic role in the development of this liver injury during acute pancreatitis.

Acute Disease

Transport of radiolabelled glycoprotein to cell surface and lysosome-like bodies of absorptive cells in clutured small-intestinal tissue from normal subjects and patients with a lysosomal storage disease.

The transport of 3H-fucose- and 3H-glucosamine-labelled glycoproteins in the absorptive cells of cultured human small-intestinal tissue was investigated with light- and electron-microscopical autoradiography. The findings showed that these glycoproteins were completed in the Golgi apparatus and transported in small vesicular structures to the apical cytoplasm of these cells. Since this material arrived in the cell coat on the microvilli and in the lysosome-like bodies simultaneously, a crinophagic function of these organelles in the regulation of the transport or secretion of cell-coat material was supported. In the absorptive cells of patients with fucosidosis or Hunter's type of lysosomal storage disease, a smiliar transport of cell-coat material to the lysosome-like bodies and a congenital defect of a lysosomal hydrolase normally involved in the degradation of cell-coat material, can explain the accumulation of this material in the dense bodies.

Adolescent

Studies on the involvement of lysosomes in estrogen action, I. Isolation and enzymatic properties of pig endometrial lysosomes.

Pig endometrium cells, collected by curettage and homogenized in an all-glass Potter Elvehjem homogenizer, gave a considerably higher yield of intact mitochondria and lysosomes than homogenates of whole uterus obtained with the Ultraturrax or the Parr bomb. After homogenization of the cells and subfractionation in the presence of Mg2, mitochondria and lysosomes equilibrated at the same modal density in isopycnic centrifugation. Homogenization and subfractionation in buffers devoid of divalent cations and containing EDTA resulted in a decrease in the buoyant density of mitochondria, allowing for a separation from lysosomes. The pH optima and the specific activities of two mitochondrial enzymes and eight hydrolyases used as marker enzymes were determined. The morphological characteristics of fractions were established by electron microscopy. Preliminary results indicate an involvement of lysosomes in steroid metabolism rather than in steroid and receptor translocation into the nucleus.

Animals

Lysosomal acid hydrolases in established lymphoblastoid cell lines, transformed by Epstein-Barr virus, from patients with genetic lysosomal storage diseases.

Lysosomal acid hydrolases were determined in established lymphoblastoid cell lines, transformed in vitro by Epstein-Barr virus (EBV) from lymphocyte-rich cell populations isolated from the peripheral blood of patients with genetic lysosomal storage diseases--Hurler syndrome, Scheie syndrome, GM1-gangliosidosis type 1 and type 2, Tay-Sachs disease, and I-cell disease--and from obligate heterozygotes for these diseases. The respective enzyme activity was undectectable in lymphoblastoid cells from the patients, but not from controls. Obligate heterozygotes could not always be distinguished from controls in lymphoblastoid cells as well as in leukocytes. These results suggest that established lymphoblastoid cell lines are useful material for the enzymatic study of genetic lysosomal storage diseases.

Cell Line

[Lysosomes and lysosomal enzymes in the wall of imbalanced arteries of rats (author's transl)].

The electron microscope demonstration of reaction products of the acid phosphatase within matrix vesicles (=extracellular membrane-bound corpuscles) of the wall of hemodynamic or metabolic imbalanced arteries stimulated experiments about the activities of lysosomal enzymes in the wall of wrongly loaded arteries. In our case arteries without any hemodynamic function (="null function") were investigated 4, 5, 7, 13 and 14 days after applying a ligature. In relation to the nonligated testicular arteries of the other side the wall of theligated vessels show an increase of lysosomal glycosidases (beta-N-Acetyl-glucosaminidase and beta-galactosidase) about 40-70%. The significance of the extracellular lysosomes for transformations of the vessel wall under physiological and pathological conditions is discussed.

Acetylglucosaminidase

Differential effects of vasopressin on the water, calcium and lysosomal enzyme contents of mitochondria-rich and lysosome-rich (granular) epithelial cells isolated from bullfrog urinary bladder.

Treatment of bullfrog urinary bladder with arginine vasopressin (AVP) elicited a dose-dependent increase in the basal movement of water and sodium across isolated tissues. Epithelial cells from the mucosal surface and incubated with 10 mU AVP/ml for 30 min retained a greater amount of intracellular water and calcium than cells not treated with hormone. The epithelial cells were further separated into two major fractions by density gradient centrifugation; cells damaged during these manipulations were separated from viable cells and discarded. Morphologcal examination of the two respective fractions indicated that they largely consisted of mitochondria-rich (MR) and granular (G) cell types which line the lumen of bullfrog bladder. The calcium content of MR cells averaged 25% greater than that of G-type cells. G cells had a markedly higher content of the characteristic lysosomal hydrolases, acid phsophatase and cathepsin B1, than that found in MR cells. Incubation of G cells with AVP elicited significant increments in water and calcium contents and extracellular release of lysosomal enzymes as compared to untreated cells. Among MR cells treated with AVP, cell calcium declines slightly but no significant increase in water content or extracellular hydrolase activity was detected in comparison with paired control cells. The physiological significance of acid proteinase release from G cells treated with AVP was evaluated in experiments with intact bladder. Proteinase inhibitors which suppress the activity of cathepsin B1 selectively antagonized the action of hormone on water permeation. The data suggest that alterations in the calcium and lysosomal hydrolase activity associated with G cells exposed to AVP may contribute to the hormone-induced water flow observed across the intact epithelium.

Acid Phosphatase

Properties of the membrane proteins of rat liver lysosomes. The majority of lysosomal membrane proteins are exposed to the cytoplasm.

Rat liver lysosomes were lysed and subfractionated by differential centrifugation through 0.2M-NaCl to yield a membranous pellet. This membrane fraction contains less than 20% of the lysosomal protein, adenosine triphosphatase activity of about 1.2mumol/min per mg of protein, 120nmol of thiol groups/mg of protein and at least 16 protein and glycoprotein bands on sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. The gel patterns of membranes isolated from lysosomes after treatment with (1) [125I]iodidehydrogen peroxide-lactoperoxidase, (2) toluene 2,4-di-isocyanate-activated bovine serum albumin, (3) trypsin and (4) subtilisin indicate that most of the membrane proteins are exposed to the cytoplasm. These exposed proteins are candidates for intracellular receptors which recognize either substances that are to be degraded or vesicles containing those substances.

Adenosine Triphosphatases

Changes in ionic movements across rabbit polymorphonuclear leukocyte membranes during lysosomal enzyme release. Possible ionic basis for lysosomal enzyme release.

Changes in the movements of Na+, K+, and Ca+2 across rabbit neutrophils under conditions of lysosomal enzyme release have been studied. We have found that in the presence of cytochalasin B, the chemotactic factor formyl methionyl leucyl phenylalanine (FMLP) induces within 30 s large enhancements in the influxes of both 22Na+ and 45Ca+2 and an increase in the cellular pool of exchangeable calcium. The magnitude of the changes induced by cytochalasin B and FMLP exceeds that induced by FMLP or cytochalasin B alone, and cannot be explained on the basis of an additive effect of the two agents. However, these compounds either separately or together produce much smaller enhancements in 45Ca efflux. The divalent cation ionophore A23187 also produces a rapid and large increase in the influxes of both 22Na and 45Ca+2 in the presence and absence of cytochalasin B. We have also found an excellent correlation between calcium influx and lysosomal enzyme release. 42K influx is not significantly affected by any of these compounds. On the other hand, a large and rapid increase of 42K efflux is observed under conditions which give rise to lysosomal enzyme release. A flow diagram of the events that are thought to accompany the stimulation of polymorphonuclear leukocytes (PMNs) by chemotactic or degranulating stimuli is presented.

Calcimycin

Studies on the involvement of lysosomes in estrogen action, II. Seasonal variation in the sedimentation patterns of endometrial lysosomes from prepuberal pigs.

The lysosomal population in endometrial cells of prepuberal pigs varies with the seasons. In summertime, lysosomes equilibrate in sucrose density gradients over a broad, domeshaped area from p = 1.21 g/cm3 to p = 1.15 g/cm3. The winter pattern is characterized by a major sharp peak of aggregated lysosomes at p = 1.20 g/cm3, visible as a "snowflurry"-like band. The two extremes are linked by transition patterns in spring and fall. The possible correlation of this phenomenon to the seasonal fluctuations in the level of soluble cytoplasmic estrogen receptor is discussed.

Animals