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Biomedical subjects

I Dunia

Publications and source records attributed to I Dunia.

At least 19 recordsLinked to original sources

Functional and structural damage in Leishmania mexicana exposed to the cationic peptide dermaseptin.

The effect of dermaseptin (DS), a 34 amino acid residue cationic peptide isolated from Phyllomedusa sauvagii skin, has been studied on promastigotes of Leishmania mexicana growing in vitro. Within 5 min of incubation in the presence of DS, the flagellated parasites lost their motility. DS inhibited promastigote growth by 50% at a concentration of 3 microM and by 100% at 10 microM. Immunocytochemical, freeze fracture, label fracture and electron microscopic observations have shown that the amphipathic peptide generates perturbations of the lipid bilayer leading to altered permeability of the surface membrane and death of the parasite.

Amphibian Proteins

Fatty acid acylation of lens fiber plasma membrane proteins. MP26 and alpha-crystallin are palmitoylated.

We describe in this report the fatty acylation of some of the main polypeptides from the eye lens fibers. MP26, the major lens fiber plasma membrane protein, and probably MP22, its natural degradation product, are palmitoylated in a post-translational process. This is also the case for alpha-crystallin, a major cytoplasmic structural protein shown to interact directly with the plasma membrane. Furthermore, a 65 kDa non-identified polypeptide and a high molecular weight component are also modified in the same way.

Acylation

Plasma membrane-cytoskeleton damage in eye lenses of transgenic mice expressing desmin.

Immunocytochemistry of eye lens cells from transgenic mice coexpressing desmin and vimentin reveals that the transgenic desmin expression is not uniform. In the same lens, some epithelial and fiber cells overexpress desmin, while in others the desmin gene seems to be silent. Conversely, the endogenous vimentin is always expressed. The concomitant expression of vimentin and desmin results in the assembly of hybrid intermediate filaments (IFs). Moreover, the overexpression of the transgene generates pleomorphic IF assembly and leads to intermingled filamentous whorls and to accumulation of amorphous desmin. The abnormalities of IF assembly induced by the genetic manipulation are correlated with perturbation of the enucleation process in the lens fibers, changes in cell shape, fiber fusion and extensive internalization of the general plasma membrane and junctional domains. The alterations of lens cells described in this study were observed in all transgenic mice examined. The level of expression of the transgene was paralleled by the degree of damage. Our results indicate that proper expression, assembly and membrane interaction of IFs play an important role in the terminal differentiation of the lenticular epithelium into fiber cells. We anticipate that alterations during these processes may initiate cataract formation.

Animals

Internalization of beta-adrenergic receptor in A431 cells involves non-coated vesicles.

To characterize the mechanism of internalization of beta-adrenergic catecholamine receptors on human epidermoid A431 carcinoma cells, their distribution was analyzed by immunocytochemistry using the monoclonal anti-receptor antibody BRK2. In preconfluent cultures, the receptors appeared to be randomly distributed on the cell surface. Exposure to the agonist isoproterenol induced an overall decrease in the number of cell surface receptors as determined by binding experiments and visualized by immunofluorescence. When cells were incubated at 4 degrees C with BRK2 and anti-mouse IgG-gold and then transferred at 37 degrees C, non-coated invaginations and vesicles were labeled. The addition of isoproterenol resulted in an increased rate of internalization of the receptor-BRK2-anti-IgG-gold complex. When incubation with the two antibody reagents was prolonged (with or without isoproterenol), non-coated vesicles fused in the endosomal compartment, and receptors were transferred to multivesicular bodies and lysosomes. At no stage in this process was there any indication that clathrin-coated pits or vesicles participated. Furthermore, we found that an intracellular potassium depletion treatment known to inhibit endocytosis, did not affect the normal pattern of desensitization of beta-adrenergic receptors.

Antibodies, Monoclonal

High-performance liquid chromatography of the main polypeptide (MP26) of lens fiber plasma membranes solubilized with n-octyl beta-D-glucopyranoside.

The main polypeptide isolated from lens fiber membrane has been solubilized in octyl glucoside and studied by gel filtration in high-performance liquid chromatography (HPLC). The combination of S20,w value obtained from analytical ultracentrifugation and Stokes radius determined by HPLC of the soluble fraction indicates that more than 90% of the protein is monomeric. The solubilization of the protein seems to be dependent upon the presence of the NH2 and COOH terminal sequences, since proteolytic degradation of MP26 which removes these terminal sequences is less soluble than the uncleaved polypeptide. Moreover, there is a higher amount of oligomer after proteolysis. Fatty acid analysis by gas chromatography shows that the insoluble membrane fraction from both cortical and nuclear fibers comprises a special class of long (C22) saturated fatty acids (behenic acid).

Aquaporins

Electron microscopic observations of reconstituted proteoliposomes with the purified major intrinsic membrane protein of eye lens fibers.

The purified major intrinsic protein of the lens fiber plasma membrane (MP26) reconstituted into liposomes favored membrane-to-membrane close contacts as visualized by freeze fracture and immunoelectron microscopy. Reconstituted apposed unilamellar vesicles formed pentalaminar profiles, and multilamellar liposomes showed regions of stacked bilayers. Immunogold labeling, using antibody directed against MP26, demonstrated that this polypeptide is present in regions of membrane-to-membrane close interaction. Fracture faces displayed both randomly distributed clusters of 8-nm polygonal intramembrane particles and membrane domains where a bidimensional lattice of repeating subunits was present. The structural pleomorphism which characterized the MP26-reconstituted proteoliposomes seems quite comparable to that visualized in natural fiber plasma membrane domains.

Animals

Redistribution of muscarinic acetylcholine receptors on human fibroblasts induced by regulatory ligands.

Distribution of the muscarinic acetylcholine receptor on human fibroblasts was determined by immunofluorescence and immunoperoxidase staining using the anti-muscarinic receptor antibody M-35b. The receptor appeared to be randomly distributed on the cell surface in 1- or 2-day nonconfluent cultures. Brief exposure to 0.1 mM carbamylcholine (15 min to 1 hr) induced receptor accumulation in several restricted domains of the cell surface. This process was associated with sequestration into uncoated vesicles. Random receptor distribution was restored by incubation in ligand-free medium for 4 hr after carbamylcholine treatment, and vesicular profiles were no longer detectable. When incubation with the agonist was prolonged (3 hr at 37 degrees C), endocytotic 'smooth vesicles' fused and formed multivesicular structures presumably implicated in receptor down-regulation. Conversely, when nonconfluent cells were exposed to the muscarinic antagonist atropine, receptor redistribution was revealed, leading to the formation of clusters where receptor accumulated. Muscarinic receptor redistribution induced by atropine therefore does not involve the sequestration process seen in carbamylcholine-treated cells.

Antibodies, Monoclonal

Sequence analysis of peptide fragments from the intrinsic membrane protein of calf lens fibers MP26 and its natural maturation product MP22.

Calf lens fiber plasma membranes, containing only the intrinsic membrane protein MP26 and its maturation product MP22 were treated with proteolytic enzymes such as trypsin, protease V8 from S. aureus or with chemical agents as CNBr in formic acid. The cleavage products, purified by electrophoresis, were analysed for their amino acid composition and N-terminal sequences. Proteolysis gave rise to peptides which were mainly shortened at the C-terminal end of the molecules. While the V8 protease produced a fragment with a similar N-terminal sequence as the maturation product MP22, trypsin yielded another cleavage product. Chemical hydrolysis yielded large fragments (11-15 kDa) with hydrophobic N-terminal sequences. Our results suggest that MP26 is characterised by an N-terminal signal sequence and possesses other hydrophobic domains which could function as untranslocated insertion sequences.

Amino Acid Sequence

MP26 in the bovine lens: a post-embedding immunocytochemical study.

Gold immunolabeling of bovine lens tissue embedded in Lowicryl K4M, using a polyclonal antibody specific for a major component of lens fiber plasma membrane of 26 K molecular weight, shows that this constituent is absent from the epithelial cell plasma membrane and associated only with the junctional and non-junctional domains of the lens fiber plasma membrane.

Animals

Ultrastructural changes in gap junctions associated with CO2 uncoupling in frog atrial fibres.

The correlation between gap junction morphology and the state of electrical coupling was investigated in the frog auricle, which presents an atypical gap-junction organization. Electrical uncoupling of the tissue was achieved by perfusion with CO2-saturated Ringer medium. The tissue was fixed with glutaraldehyde and freeze-fractured before and during the application of CO2-saturated Ringer medium and after returning to the initial medium. The electrical tissue coupling was assayed by microelectrode recording just before fixation. At least 97% uncoupling was induced by CO2-saturated Ringer medium, as estimated from double sucrose gap experiments on several single atrial trabeculae. Several modifications were induced by CO2-saturated Ringer medium. A decrease in the number of particles per junctional assembly and dispersion of these assemblies in the plane of the membrane, indicate a decrease in the organization of the gap junctions. In parallel, loose clusters of particles became evident on the P-fracture face of the membrane. The size of the particles in these clusters was larger than the size of the background particles, and of the gap junction particles. They never corresponded with complementary pits on the E-fracture face. On return to the initial Ringer perfusion medium the cell coupling was reversed and the gap junction dispersion was also reversed. However, the gap junctions remained small. The relationship between these morphological modifications and the conducting state of the tissue is discussed.

Action Potentials

Dilemmas of the structural and biochemical organization of lens membranes during differentiation and aging.

This review deals with the biogenesis of MP26 and with the problem of the structural pattern which may be formed by MP26 during differentiation and aging of the lens fibers and as a consequence of the extraction or degradation of other membrane components. The data reported here imply that the MP26 biosynthesis is one of the key steps of cell surface domain formation during terminal differentiation of lens fibers. One striking observation involves the bidimensional long and short range distribution of MP26 copies within the lipid matrix. The protein oligomers may form, in the plane of the membrane, either a geometrical lattice or randomly distributed particle arrays. However, the mechanism controlling the assembly of either one of these patterns and eventually the transition of one into the other, is still unknown. We speculate that the formation of various membrane domains can be depicted as a self-assembly of repeating identical or quasi equivalently related protein subunits, but this process appears to be dependent both on the lipid environment and on interaction of the transmembrane protein oligomers with other membrane or cytoskeletal components, in particular crystalline polypeptides and cytoskeleton constituents. Finally, during the aging process, the post translational modification of MP26 and eventually the variation of the spatial arrangement and composition of the lipids may implicate the predominant lattice arrangement of the lipid and protein phases.

Animals

Is the cytoskeleton-plasma membrane complex involved in lens protein biosynthesis?

Calf lens fiber cells contain a population of polyribosomes that direct, at least in vitro, the synthesis of a specific plasma membrane protein MP26. This protein may serve as a marker in terminal differentiation, since it is absent in the lens epithelium but appears in lens fiber plasma membranes. The MP26 manufacturing polyribosomes are found to be associated with a structural complex in which also the cytoskeleton and plasma membranes participate. They can be released from the complex by treatment with DNAse I. This result presumably reflects the involvement of actin in the linkage of the MP26 synthesizing polyribosomes to the cytoskeleton-membrane complex.

Animals

Junctional modulation in mouse embryonal carcinoma cells by Fab fragments of rabbit anti-embryonal carcinoma cell serum.

Mouse embryonal carcinoma PCC4 cells are connected by extensive gap and tight junctions. When the cells are incubated in a medium containing Fab fragments against embryonal carcinoma F9 cells, they round up and a process of junctional removal is initiated. In particular, gap junctions are internalized and after 30 hr of incubation with the anti-F9 Fab fragments both tight and gap junctions are no longer present at the cell surface; however, the cells are still in contact by means of small attachment sites.

Animals

Actin in mammalian lens.

In this paper evidence is provided that one of the protein components of the water-soluble fraction of the calf lens binds specifically to deoxyribonuclease I (DNAse I). On the basis of this property, the polypeptide could be purified by applying DNAse I affinity chromatography. Concomitantly a protein of Mr55000 and a rather large amount of alpha-crystallin copurify with this polypeptide, which has a molecular weight of 42000. Highly purified 42000-Mr protein was also obtained by extraction of the water-insoluble fraction of the calf lens with 2-([tris(hydroxymethyl)methyl]amino) ethanesulfonic acid followed by gel filtration. Amino acid analyses, peptide mapping and electron microscopy show that the protein obtained from both lens fractions is identical to non-muscle actin. Furthermore the amino acid composition of the 55000-Mr protein is identical to hog stomach skeletin and very similar to calf brain desmin.

Actins

Comparative ultrastructure of Mycobacterium leprae and Mycobacterium lepraemurium cell envelopes.

The structural properties of the cell envelopes of Mycobacterium leprae and Mycobacterium lepraemurium were investigated by freeze-fracture, freeze-etching, and negative-staining techniques. Freeze-fracture split the cell wall and exposed the internal features of the peptidoglycolipid mycosidic filamentous network. The cell membrane was also split into two asymmetric faces. The external fracture face was characterized by linear arrays of intramembranous particles, whereas the protoplasmic fracture face showed randomly distributed clusters of particulate entities. Comparative analysis of the ultrastructural features observed in M. leprae and M. lepraemurium indicated that the organization of the cell envelope in these two species differed particularly with respect to the amount and complexity of the superficial peptidoglycolipid and mycosidic integument, which is poorly developed in the mycobacterium responsible for human disease.

Animals