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Biomedical subjects

T Ganz

Publications and source records attributed to T Ganz.

At least 19 recordsLinked to original sources

An antimicrobial activity of cytolytic T cells mediated by granulysin.

Cytolytic T lymphocytes (CTLs) kill intracellular pathogens by a granule-dependent mechanism. Granulysin, a protein found in granules of CTLs, reduced the viability of a broad spectrum of pathogenic bacteria, fungi, and parasites in vitro. Granulysin directly killed extracellular Mycobacterium tuberculosis, altering the membrane integrity of the bacillus, and, in combination with perforin, decreased the viability of intracellular M. tuberculosis. The ability of CTLs to kill intracellular M. tuberculosis was dependent on the presence of granulysin in cytotoxic granules, defining a mechanism by which T cells directly contribute to immunity against intracellular pathogens.

Antigens, Differentiation, T-Lymphocyte

Isolation of human intestinal defensins from ileal neobladder urine.

We describe the isolation of naturally occurring human intestinal defensins HD-5 and HD-6 from ileal neobladder urine and ileal mucosa. Using an antibody-based detection assay, we found multiple N-terminally processed forms of HD-5. The predominant HD-5 forms in tissue were longer than those in neobladder urine (amino acid (aa) 23-94 and 29-94 versus aa 36-94, 56-94 and 63-94) suggesting that Paneth cells store prodefensin that is processed to mature defensin during or after degranulation. Search for mature HD-6 yielded aa 69-100 as the predominant form in both sources. The ileal neobladder is a promising model to study human Paneth cell secretion.

Amino Acid Sequence

Human beta-defensin-1: an antimicrobial peptide of urogenital tissues.

Antimicrobial peptides are widely distributed mediators of innate host defense in animals and plants. A 36 amino acid antimicrobial peptide belonging to the defensin family, and named human beta-defensin-1 (HBD-1), was purified recently from hemodialysate fluid, but its tissue sources were not identified. By Northern blotting, we found the highest concentrations of HBD-1 mRNA in the kidney and the female reproductive tract. In situ hybridization localized the HBD-1 mRNA in the epithelial layers of the loops of Henle, distal tubules, and the collecting ducts of the kidney and the epithelial layers of the vagina, ectocervix, endocervix, uterus, and fallopian tubes in the female reproductive tract. Using a novel technique designed to detect cationic peptides in urine, we recovered several forms of HBD-1 ranging in length from 36 to 47 amino acid (aa) residues and differing from each other by amino terminal truncation. The total concentration of HBD-1 forms in voided urine was estimated at 10-100 microg/liter, with individual variations in the total amount of HBD-1 peptides and the relative proportion of HBD-1 forms. Multiple forms of HBD-1 (size 36-47 aa) were also found in the blood plasma, bound to carrier macromolecules that released the peptide under acid conditions, and in vaginal mucosal secretions (39, 40, and 44 aa). By immunostaining, HBD-1 was located in the kidney within the lumen of the loops of Henle, but no intracellular storage sites were identified in renal or female reproductive tissues. Recombinant HBD-1 forms (36, 39, and 42 aa) and natural HBD-1 forms were antimicrobial to laboratory and clinical strains of Escherichia coli at micromolar concentrations. HBD-1 activity was not changed appreciably by low pH, but was inhibited by high salt conditions. Some of the HBD-1 peptides retained their activity against E. coli in unconcentrated (low conductance) urine, and the 36 aa form was microbicidal even in normal (high conductance) urine. Production of HBD-1 in the urogenital tract could contribute to local antimicrobial defense.

Adult

Molecular cloning and tissue expression of porcine beta-defensin-1.

Beta-defensins constitute an emerging family of cysteine-rich antimicrobial peptides, which are particularly prominent at mucosal epithelial sites in mammals. Here we report the identification of a novel beta-defensin from porcine tissues, porcine beta-defensin-1 (pBD-1). The cDNA sequence of pBD-1 encoded a 64 amino acid prepro-peptide, which contained the beta-defensin consensus sequence of six invariantly spaced cysteine residues. Northern blot analysis showed that pBD-1 was expressed abundantly in tongue epithelia and that the expression was regulated developmentally. Using RT-PCR, pBD-1 mRNA was detected throughout the respiratory and digestive tracts and also in thymus, spleen, lymph node, brain, liver, kidney, urinary bladder, testis, skin, heart, muscle, bone marrow, peripheral blood neutrophils, alveolar macrophages, and umbilical cord. The wide expression of pBD-1 suggests that this endogenous peptide antibiotic may contribute to both mucosal and systemic host defenses in pigs, which may have implications for the use of porcine tissues and organs in xenotransplantation.

Amino Acid Sequence

Antimicrobial peptides of vertebrates.

The past year brought several discoveries that focused attention on antimicrobial peptides on epithelial surfaces. The malfunction of these substances was implicated as a cause of airway infections in cystic fibrosis. Other highlights included new insights into the relative selectivity of antimicrobial peptides for microbial membranes, their primary site of action.

Animals

The role of protegrins and other elastase-activated polypeptides in the bactericidal properties of porcine inflammatory fluids.

The mammalian host response to infection includes the production and secretion of antimicrobial peptides from phagocytes and epithelial cells. Protegrins, a group of broadly microbicidal peptides isolated originally from porcine neutrophil lysates, were found to be stored as inactive proforms in porcine neutrophil granules but could be activated extracellularly by neutrophil elastase. We assessed the biological role of protegrins and other elastase-activated polypeptides in the microbicidal activity of neutrophil secretions and inflammatory fluids. When stimulated with phorbol myristate acetate (PMA), neutrophils generated stable microbicidal activity against both Escherichia coli and Listeria monocytogenes under normal-salt conditions and in the presence of 0 to 10% serum. The generation of these antimicrobial substances was dependent on neutrophil elastase, since it was inhibited by 1 mM N-methoxysuccinyl-Ala-Ala-Pro-Val chloromethyl ketone when it was present during activation, but not when this inhibitor was added afterwards. However, elastase-dependent activation of proprotegrins to protegrins in PMA-stimulated neutrophils was not inhibited by the presence of 1 to 2% serum. Porcine neutrophils also released antibacterial activity during phagocytosis of latex beads, and this too was dependent in large part on elastase-activated polypeptides, including protegrins. Moreover, protegrins were found at bactericidal concentrations in cell-free abscess fluid from naturally infected pigs. Taken together, these studies show that protegrins and other elastase-activated polypeptides are important stable antibacterial factors in porcine neutrophil secretions. The potential host defense role of elastase as an activating enzyme for the precursors of microbicidal peptides must be taken into account when therapeutic inhibitors of neutrophil elastase are evaluated for clinical use as anti-inflammatory agents.

Abdominal Abscess

The human beta-defensin-1 and alpha-defensins are encoded by adjacent genes: two peptide families with differing disulfide topology share a common ancestry.

We cloned a novel human beta-defensin gene and determined its full-length cDNA sequence. The entire gene spanned more than 7 kb and included a large 6962-bp intron. The 362-bp cDNA encoded a prepropeptide that corresponded precisely to the recently identified human beta-defensin HBD-1, an antimicrobial peptide implicated in the resistance of epithelial surfaces to microbial colonization. By two-color fluorescence in situ hybridization on both metaphase chromosome and released chromatin fiber, HBD-1 gene (DEFB1 in HUGO/GDB nomenclature) mapped to chromosomal region 8p23.1-p23.2 in close proximity (within 100-150 kb) to the gene for the human neutrophil alpha-defensin HNP-1 (DEFA1). Thus, despite a complete lack of DNA sequence similarity and despite differences in their disulfide-pairing pattern, the alpha- and beta-families appear to have evolved from a common premammalian defensin gene.

Algorithms

Defensin stimulates the binding of lipoprotein (a) to human vascular endothelial and smooth muscle cells.

There is evidence to suggest that elevated plasma levels of lipoprotein (a) [Lp(a)] represent a risk factor for the development of atherosclerotic vascular disease, but the mechanism by which this lipoprotein localizes to involved vessels is only partially understood. In view of studies suggesting a link between inflammation and atherosclerosis and our previous finding that leukocyte defensin modulates the interaction of plasminogen and tissue-type plasminogen activator with cultured human endothelial cells, we examined the effect of this peptide on the binding of Lp(a) to cultured vascular endothelium and vascular smooth muscle cells. Defensin increased the binding of Lp(a) to endothelial cells approximately fourfold and to smooth muscle cells approximately sixfold. Defensin caused a comparable increase in the amount of Lp(a) internalized by each cell type, but Lp(a) internalized as a consequence of defensin being present was not degraded, resulting in a marked increase in the total amount of cell-associated lipoprotein. Abundant defensin was found in endothelium and in intimal smooth muscle cells of atherosclerotic human cerebral arteries, regions also invested with Lp(a). These studies suggest that defensin released from activated or senescent neutrophils may contribute to the localization and persistence of Lp(a) in human vessels and thereby predispose to the development of atherosclerosis.

Adult

Differential scanning microcalorimetry indicates that human defensin, HNP-2, interacts specifically with biomembrane mimetic systems.

alpha-Defensins are antimicrobial peptides with 29-35 amino acid residues and cysteine-stabilized amphiphilic, triple-stranded beta-sheet structures. We used high-precision differential scanning microcalorimetry to investigate the effects of a human neutrophil alpha-defensin, HNP-2, on the phase behavior of model membranes mimicking bacterial and erythrocyte cell membranes. In the presence of this positively charged peptide, the phase behavior of liposomes containing negatively charged phosphatidylglycerol was markedly altered even at a high lipid-to-peptide molar ratio of 500:1. Addition of HNP-2 to liposomes mimicking bacterial membranes (mixtures of dipalmitoylphosphatidylglycerol and -ethanolamine) resulted in phase separation owing to some domains being peptide-poor and others peptide-rich. The latter are characterized by an increase of the main transition temperature, most likely arising from electric shielding of the phospholipid headgroups by the peptide. On the other hand, HNP-2 did not affect the phase behavior of membranes mimicking erythrocyte membranes (equimolar mixtures of dipalmitoylphosphatidylcholine and sphingomyelin) as well as the pure single components. This is in contrast to melittin, which significantly affected the phase behavior of choline phospholipids in accordance with its unspecific lytic activity. These results support the hypothesis of preferential interaction of defensins with negatively charged membrane cell surfaces, a common feature of bacterial cell membranes, and demonstrate that HNP-2 discriminates between model membrane systems mimicking prokaryotic and eukaryotic cell membranes.

Blood Proteins

Purification and characterization of defensins from cystic fibrosis sputum.

OBJECTIVE AND DESIGN: Cystic fibrosis (CF) sputum contains large numbers of neutrophils whose most abundant granule proteins are defensins. Within phagolysosomes, defensins kill microbes; however, extracellular defensins can be toxic to human cells. To begin to explore the possibility that defensins damage CF airways, this study examines the concentration and properties of defensins in CF sputum. MATERIALS: As a source of biological material in which to assay levels of defensins, purulent sputum was collected from persons with CF hospitalized with exacerbations of bronchitis. Purulent CF sputum was also a source of material for purification of defensins. METHODS: Defensin concentration in the cell-free component of CF sputum was measured by immunoassay. Defensins acid-extracted from sputum were purified by Sephacryl S-200 gel filtration chromatography and reverse phase-high pressure liquid chromatography (HPLC). Toxicity of CF defensins was tested by incubating the purified defensins with a line of CF tracheal cells cultured in serum five medium. RESULTS: In 5 patients with CF, sputum defensin levels ranged from 300 to > 1600 micrograms/ml, higher than levels previously reported in any human secretion or fluid and greatly exceeding concentrations toxic to mammalian cells in vitro. HPCL-purified CF sputum defensins were pure as judged by acid urea-PAGE and N-terminal sequencing, which revealed a mixture of defensins-1, -2 and -3 at ratios of approximately 4:2:1. At > 10 micrograms/ml the purified mixture was toxic for a line of CF tracheal cells cultured in serum-free medium, as judged by reductions in cell numbers and increased permeability to trypan blue. CONCLUSIONS: This study suggests that defensins in CF sputum are intact and sufficiently abundant that they may damage airway epithelium.

Blood Proteins

Antimicrobial peptides of leukocytes.

Leukocytes use an array of antimicrobial peptides and proteins to help them destroy invading microorganisms. These endogenous antibiotic molecules are remarkable for their structural variety, rapid evolutionary divergence, intraspecies variation, and complex yet subtle interactions with their targets. This arsenal has been studied most extensively in neutrophils, where its members include lactoferrin, secretory phospholipase A2, lysozyme, and the cathelicidins in the secretory granule compartment; defensins, bactericidal permeability inducing protein, serprocidins, and (again) lysozyme in the azurophil granule compartment; and calprotectin in the cytosolic compartment. That antimicrobial peptides and proteins are not limited to neutrophils and other phagocytes was made clear by the recent discovery of a microbicidal protein, NK lysin, in porcine natural killer cells and cytotoxic T lymphocytes. The structural homology of NK-lysin to amebapore, an antimicrobial cytolytic peptide of the parasitic protozoan Entamoeba histolytica, provides remarkable support for a long-suspected evolutionary connection between the leukocytes of higher animals and their unicellular, protozoan ancestors.

Animals

Porcine polymorphonuclear leukocytes generate extracellular microbicidal activity by elastase-mediated activation of secreted proprotegrins.

Antimicrobial peptides of several structural classes have been found in phagocytes and epithelial cells of many animals. The broadly microbicidal protegrins (PG1, -2, and -3) were originally isolated as 16 to 18-amino-acid peptides from pig neutrophil lysates, but the corresponding cDNA sequences encoded much larger precursors that belonged to the cathelicidin family of antimicrobial peptides. We explored the storage, secretion, and microbicidal activation of protegrins in porcine neutrophils and in a model system consisting of recombinant proprotegrin 3 (pPG3) and various serine proteases and their inhibitors. Protegrins were stored in neutrophils as inactive proforms that were cleaved by neutrophil elastase to mature protegrins during the preparation of granule lysate and during phorbol myristate acetate-stimulated granule secretion from intact neutrophils. Recombinant pPG3 was efficiently cleaved by trace amounts of human neutrophil elastase or equivalent amounts of elastase activity from porcine neutrophils, but pPG3 was relatively resistant to porcine pancreatic elastase or human neutrophil cathepsin G. The recombinant pPG3 and neutrophil proprotegrins lacked microbicidal activity, but the mature protegrins generated in the elastase-mediated cleavage reaction were as active against Listeria monocytogenes as the chemically synthesized protegrin. The secretion and elastase-mediated activation of proprotegrins accounted for much of the stable microbicidal activity of porcine neutrophil secretions against L. monocytogenes. Secreted proprotegrins and trace amounts of elastase constitute a binary microbicidal system that is likely to contribute to the antimicrobial activity of porcine inflammatory fluids.

Amino Acid Sequence

Localization of human intestinal defensin 5 in Paneth cell granules.

Antibiotic peptides of higher animals include the defensins, first discovered in phagocytic cells but recently also found to be produced by epithelial cells. We biosynthesized recombinant human intestinal defensin 5 (rHD-5) using the baculovirus-insect cell expression system. Since insect cells process defensin incompletely and secrete the precursor proHD-5, we substituted a methionine for an alanine at a likely processing site to allow selective chemical cleavage with cyanogen bromide, and rHD-5 was used to elicit polyclonal antibodies. By the immunoperoxidase-staining technique, the antibodies selectively stained Paneth cells of the normal adult small intestine. Immunogold electron microscopy further localized HD-5 to the Paneth cell secretory granules. Since some defensins exert activity cytotoxic to mammalian cells, we assayed the effect of rHD-5 on the human intestinal cell lines Caco2 and Int407. proHD-5 did not exert cytotoxic activity, and rHD-5 showed only minimal activity against Int407 and was inert against Caco2. Since Paneth cells release their granules adjacent to the mitotic cells of the intestinal crypts, HD could protect this cell population against invasion and parasitization by microbes.

Adult

Broad-spectrum antimicrobial activity of human intestinal defensin 5.

Defensins are antibiotic peptides expressed in human and animal myeloid and epithelial cells. Due to the limited availability of natural peptides, the properties of human epithelial defensins have not been studied. We assayed the microbicidal activity of recombinant human intestinal defensin 5 (rHD-5) in the presence of salt (O to 150 mM NaCl) with varied pH (pH 5.5 to pH 8.5) and trypsin (25 and 250 microg/ml). rHD-5 exhibits microbicidal activity against Listeria monocytogenes, Escherichia coli, and Candida albicans. In contrast to cryptdins, the mouse intestinal defensins, rHD-5 is active against both mouse-virulent wild-type Salmonella typhimurium and its isogenic, mouse-avirulent phoP mutant. In the presence of salt, rHD-5 activity was reduced, and at 100 mM NaCl, activity against S. typhimurium was abolished. However, at all salt concentrations tested, rHD-5 remained bactericidal to L. monocytogenes. Activity against L. monocytogenes was not pH dependent but was diminished at pH 5.5 against wild-type S. typhimurium. This acid-induced resistance may have been mediated by the virulence gene regulator phoP, since the phoP mutant was equally sensitive at pH 5.5 and pH 7.4. In the presence of trypsin, rHD-5 was partially cleaved, but even then, rHD-5 at 100 microg/ml decreased the number of CFU of wild-type S. typhimurium by more than 99%. The persistence of microbicidal activity of rHD-5 under these conditions supports the notion that naturally occurring human intestinal defensin is an effective arm of mucosal host defense.

Animals

Immunohistochemical localization of defensin in human coronary vessels.

Neutrophil defensins comprise a family of cationic peptides that possess potent antimicrobial activity. Defensins are normally sequestered in cytoplasmic granules with their primary site of action in phagolysosomes, although some peptide is released into the circulation during the course of infection or inflammation. In view of the fact that neutrophils adhere to the endothelium and that defensins have been reported to bind to human endothelial cells in vitro, we used immunohistochemistry to study the distribution of these peptides in normal and in atherosclerotic human coronary arteries. Defensin was found primarily in the intima of normal and atherosclerotic vessels, most prominently in association with intimal smooth muscle cells. Both large- and small-vessel endothelium stained focally for defensin. Defensin was also found in the media near the external elastic lamina and in some periadventitial vessels. The same distribution was seen in vessels that had been perfusion fixed immediately upon procurement, excluding diffusion of defensin from PMNs ex vivo. These data indicate that neutrophil defensin is present in the walls of human coronary arteries. The deposition of defensin in vessels may contribute to the pathophysiological consequences of inflammation in addition to their role in host defense.

Anti-Infective Agents

Antimicrobial peptides of phagocytes and epithelia.

Human and other vertebrate leukocytes contain multiple distinct antimicrobial (poly)peptides. Of these, BPI is a LPB protein active against gram-negative bacteria, PLA2 specifically cleaves bacterial phospholipids, while defensins and cathelicidins are broad spectrum antimicrobials that preferentially permeabilize microbial membranes. These and other polypeptides function in both phagocytic and extracellular killing of microbes, attacking multiple molecular targets to cooperatively penetrate and disrupt the microbial surfaces and membrane barriers. Such antimicrobial substances are of interest not only for students of phagocytic and epithelial host defenses but may lead to the development of novel pharmaceuticals for the treatment of infections and their sequellae.

Animals

Endogenous vertebrate antibiotics. Defensins, protegrins, and other cysteine-rich antimicrobial peptides.

Although newly recognized, endogenous cystine-stabilized beta-sheet antimicrobial peptides have ancient origins. These peptides can arm circulating phagocytes and cells of the gastrointestinal, respiratory, and genitourinary tracts to resist invasion by bacteria, mycobacteria, fungi, and enveloped viruses. Defensins and protegrin-like peptides are likely to play a considerable role in innate immunity and may provide molecular templates that can be used to generate novel antibiotics for topical and systemic use.

Amino Acid Sequence