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Presence of the intermediate filaments cytokeratins and vimentin in the rat corpus luteum during luteal life-span.

The presence of the intermediate filament (IF) proteins cytokeratins and vimentin in corpus luteum (CL) and other parts of the ovary from adult pseudopregnant rats was investigated using immunohistochemistry and immunoblot analysis. To induce pseudopregnancy, female rats were mated with sterile male rats. The mating procedure induces a prolonged luteal life-span of 13 +/- 1 days. Positive staining for cytokeratin could be seen in CL, in the theca layer of follicles, and the ovarian surface epithelium with the broad-spectrum monoclonal antibody cocktail AE1/AE3. Weak staining was also seen in CL with antibodies against cytokeratins 8 and 18. A similar distribution was also seen for vimentin, which furthermore was detected in blood vessels. No changes in staining intensity was seen in CL of different luteal age. The strong staining for vimentin in CL was confirmed by immunoblot analysis, where one main band of 57 kDa was observed from day 1 to day 19 of pseudopregnancy. Expression of the IF proteins investigated seems to start in the newly formed CL and the continuous expression indicates that they are not directly regulated by luteal steroids.

Animals↗

Nuclear granules recognized by some monoclonal antibodies against intermediate filament protein locate on chromosomes during mitosis.

AC54 monoclonal antibody (MAb), an anti-desmin MAb, recognizes both intermediate filaments (IFs) and nuclear granules in BHK21/C13 cells. To investigate nuclear granules, similar MAbs were obtained by using desmin fraction as an antigen. Among them, DSB389 MAb recognized mainly nuclear granules in HeLa and rat liver cells. The nuclear granules in HeLa cells were aligned in arrays, sometimes connected by, or part of, a rope-like structure, and stable against treatment with 0.5% Triton X-100 and 2 M NaCl. They located on or around the chromosomes during mitosis. Essentially the same results were obtained with DSB860 and AC54 MAbs. The distribution of the granules in liver nuclei recognized by DSB389 MAb was similar to that of DNA and was different from that of the nuclear pore complexes. The biological significance of the nuclear granules is discussed.

Animals↗

Expression of the intermediate filament vimentin in proliferating duct cells as a marker of pancreatic precursor cells.

OBJECTIVES: The expression of the intermediate filament (IF) vimentin, usually considered a marker of mesenchymal cells, has been observed in the epithelial cells during embryogenesis, carcinogenesis, and dedifferentiation, suggesting that it might be useful as a marker of proliferating precursor cells in the pancreas. METHODS: Rat pancreata at E18 and at different time points after partial pancreatectomy (Px) and human and neonatal pig pancreatic tissue sections and monolayer cultured pancreatic duct cells were observed. All tissues were simultaneously immunostained with pancytokeratin and vimentin antibodies. In costained duct cells, PDX-1 or PCNA expression was also analyzed using confocal microscope images. RESULTS: In the rat embryonic pancreas at E18, all epithelial cells that formed ductlike structures expressed both cytokeratin and vimentin IF, whereas no duct cells costained for IF in the adult rat or neonatal pig pancreas. Such costaining reappeared in the following order: common pancreatic duct, main ducts, foci of regeneration and then disappeared completely at 30 days after Px. In humans, costaining was found in only 1 diabetic patient's pancreatic section, which was accompanied by massive duct cell proliferation. In monolayer culture, most of the duct cells of human and neonatal pigs coexpressed both IF proteins. Only a few costained duct cells also expressed PDX-1, and most of those cells were also stained with PCNA in rat embryonic pancreas and regenerating foci after partial Px. CONCLUSIONS: Vimentin IF expression might be a useful marker for pancreatic precursor cells and could be used to investigate the concept of the dedifferentiation of fully matured duct cells during the process of the beta-cell neogenesis.

Animals↗

Antigenic mimicry of mammalian intermediate filaments by mycoplasmas.

A murine monoclonal antibody raised against Mycoplasma hyorhinis specifically reacted by indirect immunofluorescence with mammalian intermediate filaments. The antibody recognized a related epitope on a 74,000-molecular-weight protein of M. hyorhinis and on components of similar size from other pathogenic mycoplasmas. This defines a shared antigenic structure of interest in autoantibody development during mycoplasmal diseases.

Animals↗

Intermediate filament reconstitution in vitro. The role of phosphorylation on the assembly-disassembly of desmin.

Desmin, the myogenic intermediate filament protein, is a phosphoprotein containing phosphoserine, in vivo. The role of phosphorylation on assembly-disassembly and organization of the desmin filament has remained obscure. We report here on a stable and purified system which enables a biochemical examination of desmin filament assembly and disassembly. Using this in vitro system, we carried out stoichiometrical phosphorylations by purified protein kinases. The extent of polymerization-depolymerization was estimated using procedures related to centrifugation and electron microscopy. The evidence we obtained suggests that disassembly of the desmin filament and inhibition of the NaCl-dependent polymerization of the soluble desmin can reversibly occur with either cAMP-dependent or Ca2+-activated, phospholipid-dependent desmin phosphorylation.

Animals↗

Alpha B-crystallin is associated with intermediate filaments in astrocytoma cells.

Alpha B-crystallin, a major protein of the vertebrate lens and a member of the small heat shock protein family, is expressed in non-lenticular tissues, including the central nervous system, where it is found mainly in glia. In Rosenthal fibers (RF), astrocytic inclusions that accumulate in Alexander's Disease, alpha B-crystallin is found with hsp27 and skeins of intermediate filaments (IF) of the GFAP and vimentin types. We have investigated the association between IF and alpha B-crystallin in a human astrocytoma cell line, U-373MG, which expresses alpha B-crystallin. Cytoskeletal preparations contained alpha B-crystallin, and a filamentous pattern in which alpha B-crystallin co-localized with GFAP and vimentin by double label immunofluorescence. Immuno-electronmicroscopy confirmed the localization to IF. GFAP isolated from bovine brain and re-assembled, was associated with alpha B-crystallin. Thus, a proportion of alpha B-crystallin in astroglia is associated with IF, and this association may be critical in the formation of RF.

Animals↗

Parietal and visceral endoderm differ in their expression of intermediate filaments.

Two layers of extra-embryonic endoderm, viz. the parietal endoderm (PE) and the visceral endoderm (VE), arise in the mouse embryo shortly after implantation. Both cell populations apparently originate from the primitive endoderm of the blastocyst. While the endoderm differentiation has been studied both in the embryo and in the embryonal carcinoma model system, the investigation has been hampered by the paucity of unequivocal markers of differentiation, especially in the case of the PE. Here we show that the PE and VE of mouse conceptuses differ in their expression of intermediate filaments: while both cell types contain cytokeratin, expression of vimentin was only revealed in the cells of the PE. The association between the differentiation of PE and the appearance of vimentin filaments is discussed.

Animals↗

The neurotoxins 2,5-hexanedione and acrylamide promote aggregation of intermediate filaments in cultured fibroblasts.

Axonal swellings associated with large aggregates of neurofilaments are characteristic of neuropathies caused by chemical neurotoxins (n-hexane, methyl n-butyl ketone, and acrylamide) or giant axonal neuropathy (GAN--an autosomal recessive genetic disease). In GAN, filamentous aggregates have been shown also to occur in other cell types including cultured skin fibroblasts. Therefore, we studied the effects of 2,5-hexanedione (the neurotoxic metabolite of n-hexane and methyl n-butyl ketone) and acrylamide on normal human skin fibroblasts in tissue culture. We show that both neurotoxins induce aggregation of intermediate filaments of the vimentin type in the cultured fibroblasts without disrupting microtubules.

Acrylamide↗

A protein expressed in the growth cones of embryonic vertebrate neurons defines a new class of intermediate filament protein.

We have isolated and characterized cDNAs that encode a protein expressed in the axons and growth cones of a subset of Xenopus embryonic neurons. The protein is also expressed in a subset of cells of the brain, including cells in even-numbered rhombomeres, the eye, and the heart. The sequence of the cDNA suggests that the protein belongs to a new class of neural-specific intermediate filaments. Both the RNA and the protein are expressed in the neurula and persist during embryogenesis in the brain, cranial nerves, and spinal cord. Because of the predicted structure of the protein, we have named it tanabin (from the Persian word for rope).

Amino Acid Sequence↗

Truncation of recombinant vimentin by ompT. Identification of a short motif in the head domain necessary for assembly of type III intermediate filament proteins.

Recombinant vimentin expressed in E. coli JM 101 cells is cleaved after cell lysis between arginines 11 and 12. The truncated vimentin is assembly incompetent. Expression of the same cDNA construct in BL21 cells, which lack the protease ompT, provides intact and polymerization-competent vimentin. The ompT cleavage site is contained in a short sequence motif (YRRMF) shared by the head domains of type III and IV intermediate filament (IF) proteins. We propose that a related motif present in the N-terminal 32 residues of lambda CII accounts for the known IF formation of a fusion protein formed with a truncated GFAP.

Amino Acid Sequence↗

Intermediate filament proteins as tissue specific markers in normal and malignant urological tissues.

Immunocytochemical techniques have become valuable tools in many fields of clinical pathology and medical research. Especially the development of highly specific (monoclonal) antibodies to a large variety of tissue antigens has in recent years led to the establishment of sensitive tissue markers. One of the most promising types of tissue specific markers so far is represented by the intermediate filament proteins. Since the findings of this rapidly expanding field are also being applied in urology, we have reviewed the current data in order to describe the new insights in tumor biology and histogenesis, as well as their application in diagnostic pathology.

Animals↗

The antitumor drug fostriecin induces vimentin hyperphosphorylation and intermediate filament reorganization.

Fostriecin is an antitumor drug in phase I clinical trials. We have recently shown that it is a potent inhibitor of protein phosphatases 1 and 2A in vitro, a property not previously described for an antitumor drug. We have investigated its effects on protein phosphorylation in baby hamster kidney cells. Fostriecin strongly stimulated the phosphorylation of a single protein, which we identified as the intermediate filament vimentin. Fostriecin also caused rounding of the cells and a reorganization of the vimentin filaments. These effects are similar to those of the known protein phosphatase 1 and 2A inhibitors okadaic acid and calyculin A, which are also tumor promoters. Fostriecin induced vimentin hyperphosphorylation mostly at two sites, which were sensitive to staurosporine and could be phosphorylated by protein kinase C in vitro. Fostriecin-induced vimentin hyperphosphorylation also occurred in cells that lack p34cdc2 kinase activity. These results suggest that protein kinase C plays a direct or indirect role in vimentin hyperphosphorylation during exposure to fostriecin. The results also provide strong evidence that fostriecin inhibits protein phosphatases 1 and 2A in vivo and raise the possibility that it may have tumor-promoting activity.

Alkaloids↗

Ubiquitin-related proteins regulate interaction of vimentin intermediate filaments with the plasma membrane.

Integrin-associated protein (IAP, CD47) is a plasma membrane receptor for thrombospondins and signal regulatory proteins (SIRPs) that has an essential role in host defense through its association with integrins. The IAP gene encodes alternatively spliced carboxyterminal cytoplasmic tails that have no previously described function. IAP cytoplasmic tails can bind two related proteins that mediate interaction between IAP and vimentin-containing intermediate filaments, named proteins linking IAP with cytoskeleton (PLICs). Integrins interact with PLICs indirectly, through IAP. Transfection of PLICs induces redistribution of vimentin and cell spreading in IAP-expressing cells. This novel connection between plasma membrane and cytoskeleton is likely to be significant in many adhesion-dependent cell functions.

3T3 Cells↗

The structure of a human neurofilament gene (NF-L): a unique exon-intron organization in the intermediate filament gene family.

We have cloned and determined the nucleotide sequence of the human gene for the neurofilament subunit NF-L. The cloned DNA contains the entire transcriptional unit and generates two mRNAs of approx. 2.6 and 4.3 kb after transfection into mouse L-cells. The NF-L gene has an unexpected intron-exon organization in that it entirely lacks introns at positions found in other members of the intermediate filament gene family. It contains only three introns that do not define protein domains. We discuss possible evolutionary schemes that could explain these results.

Amino Acid Sequence↗

Type III intermediate filament proteins interact with four-way junction DNA and facilitate its cleavage by the junction-resolving enzyme T7 endonuclease I.

The isolation from proliferating mouse and human embryo fibroblasts of SDS-stable crosslinkage products of vimentin with DNA fragments containing inverted repeats capable of cruciform formation under superhelical stress and the competitive effect of a synthetic Holliday junction on the binding of cytoplasmic intermediate filament (cIF) proteins to supercoiled DNA prompted a detailed investigation of the proteins' capacity to associate with four-way junction DNA and to influence its processing by junction-resolving endonucleases. Electrophoretic mobility shift analysis of reaction products obtained from vimentin and Holliday junctions under varying ionic conditions revealed efficient complex formation of the filament protein not only with the unstacked, square-planar configuration of the junctions but also with their coaxially stacked X-conformation. Glial fibrillary acidic protein (GFAP) was less efficient and desmin virtually inactive in complex formation. Electron microscopy showed binding of vimentin tetramers or octamers almost exclusively to the branchpoint of the Holliday junctions under physiological ionic conditions. Even at several hundredfold molar excess, sequence-related single- and double-stranded DNAs were unable to chase Holliday junctions from their complexes with vimentin. Vimentin also stimulated bacteriophage T7 endonuclease I in introducing single-strand cuts diametrically across the branchpoint and thus in the resolution of the Holliday junctions. This effect is very likely due to vimentin-induced structural distortion of the branchpoint, as suggested by the results of hydroxyl radical footprinting of Holliday junctions in the absence and the presence of vimentin. Moreover, vimentin, and to a lesser extent GFAP and desmin, interacted with the cruciform structures of inverted repeats inserted into a supercoiled vector plasmid, thereby changing their configuration via branch migration and sensibilizing them to processing by T7 endonuclease I. This refers to both plasmid relaxation caused by unilateral scission and, particularly, linearization via bilateral scission at primary and cIF protein-induced secondary cruciform branchpoints that were identified by T7 endonuclease I footprinting. cIF proteins share these activities with a variety of other architectural proteins interacting with and structurally modulating four-way DNA junctions. In view of the known and hypothetical functions of four-way DNA junctions and associated protein factors in DNA metabolism, cIF proteins as complementary nuclear matrix proteins may play important roles in such nuclear matrix-associated processes as DNA replication, recombination, repair, and transcription, with special emphasis on both the preservation and evolution of the genome.

Bacteriophage T7↗

Intermediate filament proteins in asbestos-induced mesotheliomas of the rat.

Abdominal diffuse malignant mesotheliomas develop in rats administered asbestos by the intraperitoneal route. A latency period of 6 to 24 months precedes tumor development; the biological and morphological features of these tumors resemble mesotheliomas in humans. Using one- and two-dimensional gel electrophoresis and immunoblotting, rat mesotheliomas (n = 24) were shown to express two classes of intermediate filament (IF) proteins. The tumors contained both vimentin and at least one of six keratins (p40, Mr 40,000; Dm, Mr 50,000; p53, Mr 53,000; Bm, Mr 53,000; Cm, Mr 54,000; Am, Mr 54,000). Vimentin predominated in 15 of 16 tumors exhibiting either sarcomatous or mixed (epithelial and mesenchymal) appearance. One of eight mixed lesions and six of eight epithelial tumors had a complement of IF proteins in which cytokeratins predominated. A similar pattern has been reported in mesotheliomas in humans (Blobel et al., Am. J. Pathol. 121: 235, 1985). Epithelial tumors often contain comparable amounts of vimentin and low molecular weight cytokeratins, while vimentin is the most actively expressed IF protein in sarcomatous tumors. Thus, tumors induced by asbestos in the rat peritoneum express IF proteins in a manner that resembles human mesotheliomas, supporting the notion that these lesions are appropriate models of human mesothelioma.

Animals↗

Identification of a developmentally modulated, intermediate filament associated protein in the chick embryo.

We report here the detection of a high molecular weight (greater than 400,000) cytoskeletal protein in the myogenic and neural tube derived structures of the chick embryo using a monoclonal antibody, F51H2. Immunohistological analysis reveals that this protein is concentrated in the myotome part of the somites, in the heart primordium, and in the neural tube at the end of the 2nd day of incubation. In cultured fibroblasts, the antibody appeared to decorate a filamentous network, although immunoreactivity was not detected on mesenchymal cells in situ. This network was also observed in cultured myoblasts where it has been demonstrated to be coincident to that of desmin. In colchicine-treated cells the immunoreactivity coincided with the perinuclear cap formed by the collapse of intermediate filaments (IFs). Immunoblot experiments confirmed the early distribution of F51H2 antigen in muscle and nerve tissues and its concentration in a salt-resistant IF-rich fraction of muscle tissues. In addition, there is a progressive loss of immunoreactivity during development. The immunoreactive band on sodium dodecyl sulfate gels was faint in tissues from newly hatched chickens and absent in adult tissues. It is suggested that the monoclonal antibody observed herein reacts with an embryo specific high molecular weight protein that is associated with IFs.

Animals↗

Pathogenic effects of a novel heterozygous R350P desmin mutation on the assembly of desmin intermediate filaments in vivo and in vitro.

Mutations of the human desmin gene on chromosome 2q35 cause a familial or sporadic form of skeletal myopathy frequently associated with cardiac abnormalities. Here, we report the pathogenic effects of a novel heterozygous R350P desmin missense mutation, which resides in the evolutionary highly conserved coil 2B domain of the alpha-helical coiled-coil desmin rod domain, on the assembly of desmin intermediate filaments (IF) in cultured cells and in vitro. By transfection experiments, we show that R350P desmin is incapable of de novo formation of a desmin IF network in vimentin-free BMGE+H, MCF7 and SW13 cells and that it disrupts the endogenous vimentin cytoskeleton in 3T3 fibroblast cells. Hence, transfected cells displayed abnormal cytoplasmic protein aggregates reminiscent of desmin-positive protein deposits seen in the immunohistochemical and ultrastructural analysis of skeletal muscle derived from the index patient of the affected family. To study the functional effects of the R350P desmin mutation at the protein level, we performed in vitro assembly studies with wild-type (WT) and mutant desmin protein. Our analysis revealed that the in vitro assembly process of R350P desmin is already disturbed at the unit length filament level and that further association reactions generate huge, tightly packed protein aggregates. On assessing the pathogenic effects of R350P desmin in various mixtures with WT desmin, we show that a ratio of 1 : 3 (R350P desmin/WT desmin) is sufficient to effectively block the normal polymerization process of desmin IFs. Our findings indicate that the heterozygous R350P desmin mutation exerts a dominant negative effect on the ordered lateral arrangement of desmin subunits. This disturbance of the lateral packing taking place in the first phase of assembly is ultimately leading to abnormal protein aggregation.

3T3 Cells↗