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Breaking the connection: displacement of the desmosomal plaque protein desmoplakin from cell-cell interfaces disrupts anchorage of intermediate filament bundles and alters intercellular junction assembly.

The desmosomal plaque protein desmoplakin (DP), located at the juncture between the intermediate filament (IF) network and the cytoplasmic tails of the transmembrane desmosomal cadherins, has been proposed to link IF to the desmosomal plaque. Consistent with this hypothesis, previous studies of individual DP domains indicated that the DP COOH terminus associates with IF networks whereas NH2-terminal sequences govern the association of DP with the desmosomal plaque. Nevertheless, it had not yet been demonstrated that DP is required for attaching IF to the desmosome. To test this proposal directly, we generated A431 cell lines stably expressing DP NH2-terminal polypeptides, which were expected to compete with endogenous DP during desmosome assembly. As these polypeptides lacked the COOH-terminal IF-binding domain, this competition should result in the loss of IF anchorage if DP is required for linking IF to the desmosomal plaque. In such cells, a 70-kD DP NH2-terminal polypeptide (DP-NTP) colocalized at cell-cell interfaces with desmosomal proteins. As predicted, the distribution of endogenous DP was severely perturbed. At cell-cell borders where endogenous DP was undetectable by immunofluorescence, there was a striking absence of attached tonofibrils (IF bundles). Furthermore, DP-NTP assembled into ultrastructurally identifiable junctional structures lacking associated IF bundles. Surprisingly, immunofluorescence and immunogold electron microscopy indicated that adherens junction components were coassembled into these structures along with desmosomal components and DP-NTP. These results indicate that DP is required for anchoring IF networks to desmosomes and furthermore suggest that the DP-IF complex is important for governing the normal spatial segregation of adhesive junction components during their assembly into distinct structures.

Cadherins↗

Changes in microtubules, microtubule-associated proteins, and intermediate filaments during the differentiation of HL-60 leukemia cells.

The cytoskeleton is composed mainly of microtubules (MT), microfilaments, and intermediate filaments (IF) that form a structural network which connects cellular membranes, cytoplasmic organelles, and the nucleus. Since the cytoskeleton may be involved in modulating signal transduction and in the morphological and structural changes that occur during cellular proliferation and differentiation, cytoskeletal changes were measured by immunofluorescence microscopy and fluorescence-activated cell sorter analysis during the differentiation of HL-60 leukemia cells induced by retinoic acid (RA). Differentiated HL-60 cells exhibited increased staining intensity and altered organization of MT and IF, as visualized by immunofluorescence microscopy with anti-tubulin monoclonal antibody and anti-vimentin antibody, respectively. A new procedure was developed and used to measure the content of the cytoskeletal components of HL-60 cells during the process of maturation. HL-60 cells were fixed with formaldehyde in an MT-stabilizing buffer, permeabilized using L-lysophosphatidylcholine, stained for immunofluorescent measurement with antibodies specific for particular cytoskeletal components, and analyzed by flow cytometry. Terminally differentiated cells produced by exposure to RA contained larger amounts of MT and the IF vimentin. During the course of the maturation process, a transient increase in the amounts of the microtubule-associated proteins, (MAPs) MAP2 and tau, occurred. An RA-supersensitive clone, designated HL-60/S4, and an RA-resistant clone, designated HL-60/R3, were developed by mutagenization and selection. Use of these clones supported the concept that the observed changes in MT, MAPs, and vimentin were associated with the differentiation process rather than being due to other effects produced by the retinoid. Thus, the findings suggest that changes in MT, MAPs, and IF are important to the terminal maturation of leukemia cells.

Cell Differentiation↗

Expression of intermediate filaments in normal ovaries and ovarian epithelial, sex cord-stromal, and germinal tumors.

The presence of different types of intermediate filaments (IMF) was studied in normal ovarial tissue and in ovarian tumors. The coelomic epithelium contained both prekeratin and vimentin, but the graafian follicle cells and stromal cells contained only vimentin. In normal ovaries, desmin positivity was confined to the arterial walls. Tumors derived from surface epithelium, including Brenner tumors, expressed prekeratin in the epithelial cells, whereas sex cord-stromal tumors showed only vimentin-type IMF. Germinal tumors also showed only vimentin-type IMF, whereas differentiated teratomas expressed the IMF of the corresponding differentiation line, as recognized by light microscopy. Thus, the skin, skin appendages, and other epithelial components of dermoid cysts showed prekeratin; mesenchymal components showed vimentin (but smooth muscle cells, desmin), and glial-like areas showed glial fibrillary acidic protein. The results suggest that expression of IMF in ovarian tumors corresponds to the filament expression of the parental tissues and that the typing of IMF can be used in the differential diagnosis between ovarian tumors of different histogenesis.

Antibodies↗

Two-hybrid analysis reveals fundamental differences in direct interactions between desmoplakin and cell type-specific intermediate filaments.

Desmosomes are cell junctions that act as sites of strong intercellular adhesion and also serve to anchor the intermediate filament (IF) cytoskeleton to the plasma membrane of a variety of cell types. Previous studies demonstrated that the COOH terminus of the desmosomal plaque protein, desmoplakin (DP), is required for the association of DP with IF networks in cultured cells and that this domain interacts directly with type II epidermal keratin polypeptides in vitro. However, these studies left open the question of how desmosomes might anchor other IF types known to associate with these junctions. In this report we used yeast two-hybrid and in vitro dot blot assays to further examine the requirements for direct interactions between desmoplakin and various IF types. Our results confirm the ability of the DP COOH terminus (DPCT) to interact with at least two regions of the head domain of the type II epidermal keratin K1 and also demonstrate that DPCT can interact with the type III IF family members, vimentin and desmin, as well as simple epithelial keratins. Unlike the situation for type II epidermal keratins, the interaction between DPCT and simple epithelial keratins appears to depend on heterodimerization of the type I and II keratin polypeptides, since both are required to detect an interaction. Furthermore, although the interaction between DPCT and K1 requires the keratin head domain, deletion of this domain from the simple epithelial keratins does not compromise interaction with DPCT. The interaction between DPCT and type III or simple epithelial keratins also appeared to be less robust than that between DPCT and K1. In the case of K8/K18, however, the interaction as assessed by yeast two-hybrid assays increased 9-fold when a serine located in a protein kinase A consensus phosphorylation site 23 residues from the end of DP was altered to a glycine. Taken together, these data indicate that DP interacts directly with different IF types in specific ways.

Amino Acid Sequence↗

Xefiltin, a new low molecular weight neuronal intermediate filament protein of Xenopus laevis, shares sequence features with goldfish gefiltin and mammalian alpha-internexin and differs in expression from XNIF and NF-L.

The nervous system of the postmetamorphic frog Xenopus laevis, like that of other amphibians, shows continued growth and a high capacity for regeneration, especially in its visual system. This characteristic has been attributed, in part, to the retention in adults of traits that in mammals are limited to embryos. In mammals, the progressive maturation of neurons is marked by successive changes in neuronal intermediate filament (nIF) subunit composition. For example, in mammalian forebrain, newly differentiating neurons first express the low molecular weight nIF protein alpha-internexin. As neurons mature, alpha-internexin expression declines, and expression of the low molecular weight neurofilament triplet protein (NF-L) increases. Thus, a systematic examination of the expression of low molecular weight nIF proteins in the postmetamorphic frog might reveal whether the nIF subunit composition of its neurons more closely resembles that of embryonic as opposed to adult mammals. Previously, X. laevis has been shown to express both NF-L and XNIF, a novel low molecular weight nIF protein that most closely resembles mammalian alpha-internexin. We have now discovered a new, low molecular weight nIF protein with even higher homology to alpha-internexin. We named this protein xefiltin, because it shared highest sequence identity with gefiltin, an alpha-internexin-like nIF protein from the goldfish visual system. In situ hybridization with probes to xefiltin, XNIF and NF-L showed that transcripts of all three were expressed widely throughout the post-metamorphic frog nervous system, but with distinctly different patterns of expression. For example, xefiltin was the most abundantly expressed of the three in retinal ganglion cells and in neurons of the habenular nucleus and telencephalon, whereas XNIF and NF-L were found at higher levels than xefiltin in peripheral sensory ganglia and in structures caudal to the mesencephalon. In general, the combined distributions of xefiltin and XNIF paralleled the distribution of alpha-internexin in mammalian embryos. Thus, we speculate that the persistence of alpha-internexin-like nIF proteins in the amphibian nervous system may be important for its continued potential for growth and plasticity.

Amino Acid Sequence↗

The interaction in vitro of the intermediate filament protein vimentin with synthetic polyribo- and polydeoxyribonucleotides.

In a continuation of our studies on the association of the intermediate filament protein vimentin with unfolded ribosomal subunits, rRNA and various naturally occurring RNAs and DNAs, we have investigated the binding of vimentin to a variety of synthetic polyribo- and polydeoxyribonucleotides. The vimentin-binding potentials of the different nucleic acids were determined in competition with 28S rRNA from Ehrlich ascites tumor cells. The reaction products were analysed by sucrose gradient centrifugation at low ionic strength and in the presence of EDTA. Among the homopolynucleotides tested, poly(rG), poly(rX), poly(rI), poly(rs4U) and poly(dG) were very good competitors, whereas poly(dC) was moderately so. Poly(rA), poly(rU), poly(rC), poly(dA), poly(dU), poly(dT) and poly(dI) were very weak competitors. Annealing of the active homopolymers to their complementary homopolymer strands resulted in a reduction of the vimentin-binding potential; however, the resulting duplexes still had substantial vimentin-binding capacity. A similar reduction was observed when the mononucleotides of the active homopolymers were randomly copolymerized with their complementary nucleotides or incorporated into strictly alternating, double-stranded DNAs. DNA-type copolymers, duplexes and alternating copolymers containing the nuclear bases adenine, thymine and uracil were moderate competitors, but, in general, they were significantly more active than the corresponding homopolymers. This result, together with those of the analysis of a series of random heteropolyribonucleotides, indicates that there is some influence of the base sequence and/or secondary structure of the nucleic acids on their vimentin-binding capacities. Whereas the minimum length of oligo(dG) for efficient vimentin binding was between 11 and 18 nucleotides, (dT)18 was still incapable of interacting with vimentin. In order to obtain information on the salt stability of vimentin-nucleic acid adducts, we have also performed affinity chromatographies on single-stranded calf thymus DNA-cellulose and on rRNA and homopolyribonucleotides covalently coupled to agarose. Although because of unspecific secondary interaction of vimentin with the matrix, these nucleic acid-substituted absorbents could not be used for this purpose under non-denaturing conditions, in the presence of 6M urea a relationship between the nucleic acid substitution and the salt stability of vimentin binding was observed. Finally, the nucleic acid-binding properties of vimentin are compared with those of cytosolic steroid hormone receptors, particularly with those of the androgen receptor.

Animals↗

[The relationship between vaccinia virus DNA replication and intermediate filaments].

Various DNA components which were extracted with gentle cell fractionation from the HeLa cells after 4 h vaccinia virus infection were detected by dot hybridization technique. The virus DNA mainly exist in intermediate filament-lamina-nuclear matrix complex. With DGD embedment free technique and electron microscopic autoradiography, the newly synthesized virus DNA is found to be associated with intermediate filaments. The results of southwestern hybridization demonstrate that vaccinia virus DNA has specific affinity to intermediate filaments and some nuclear matrix proteins.

Blotting, Southern↗

Developmental regulation of intermediate filament and actin mRNAs during myogenesis is disrupted by oncogenic ras genes.

Terminal differentiation of skeletal myoblasts is accompanied by down-regulation of vimentin and beta-, gamma-actins and up-regulation of desmin and sarcomeric alpha-actin(s). To investigate whether the normal decline in expression of vimentin and beta-, gamma-actins was coupled to withdrawal of proliferating myoblasts from the cell cycle or was a direct consequence of terminal differentiation, expression of the mRNAs encoding the actin microfilaments and intermediate filaments was examined in differentiation-defective C2 myoblasts bearing oncogenic ras genes. When transferred to mitogen-deficient medium, myoblasts transfected with the valine-12 allele of the human Harvey (H)-ras gene ceased dividing but failed to appropriately down-regulate vimentin and beta-, gamma-actin mRNAs. On the contrary, the level of vimentin mRNA expression was increased about 2.5-fold. Conversely, alpha-sarcomeric actin and desmin mRNAs continued to be expressed at basal levels in ras-transfected myoblasts that had withdrawn from the cell cycle. The ability of the ras oncogene to interfere with developmental regulation of actin and intermediate filament mRNAs was dependent upon mutational activation and was not observed in myoblasts transfected with proto-oncogenic ras alleles. These results demonstrate that, in addition to preventing up-regulation of muscle-specific gene products during myogenesis, the oncogenic forms of ras interfere with the mechanism(s) responsible for down-regulation of genes whose expression declines during myoblast fusion.

Actins↗

The distribution of keratin type intermediate filaments in human breast cancer. An immunohistological study.

Antibodies to different intermediate filament proteins can be used to distinguish cells of epithelial, mesenchymal, muscle, glial and neuronal origin. Antibodies to prekeratin which characterize cells of epithelial origin, and antibodies to vimentin which recognize cells of mesenchymal origin have been used to study twenty cases of breast carcinoma (sixteen infiltrating ductal carcinomas and four infiltrating intraductal carcinomas), two cases of cystic breast disease, two fibroadenomas and one case of benign cystosarcoma phylloides. The prekeratin and vimentin were detected using specific antibodies to these proteins by immunofluorescence microscopy using alcohol fixed paraffin-embedded tissues. In eighteen out of the twenty carcinomas the tumor cells were strongly and specifically stained by antibodies to prekeratin. DIfferent tumors gave different patterns of prekeratin staining. In contrast, when the same specimens were tested with the vimentin antibody, the tumor cells were unstained, and instead only the usual strong staining to fibroblasts and blood vessels in the stroma was observed. In cystic breast disease, fibroadenomas, and benign cystosarcoma phylloides, cells of epithelial origin were strongly stained by the prekeratin but not by the vimentin antibody.

Adenofibroma↗

Clustered arrangement of keratin intermediate filament genes.

We report here that component members of the keratin intermediate filament (IF) type I and type II gene families of sheep are closely linked but apparently the two families are not. Nine genes, accounting for up to half of the keratin IF gene repertoire, were mapped in four cosmid clones and the linkage between the genes ranged from several kilobases to 20 kilobases. In one cosmid, three tandem type I genes had the same transcriptional arrangement and were regularly spaced. In another cosmid, tandem genes encoding type II keratins were identified and, surprisingly, a solitary exon was discovered in the intergene region between the two type II genes. In a normal gene this exon encodes one of the most conserved amino acid regions of IF proteins, the C-terminal end of the alpha-helical core. Homologous C-terminal protein subdomains were encoded by two wool keratin type II genes and we suggest that this arrangement may also exist in the other wool keratin type II genes.

Animals↗

Improved method for cloning DNA complementary to minor mRNAs: preparation of a hybridization probe from purified mRNAs encoding intermediate filament proteins.

A procedure for the rapid fractionation of mRNA has been used to enrich mRNAs encoding a set of intermediate filament proteins in trophoblastoma cells. The procedure involves sucrose-gradient fractionation followed by high-resolution preparative gel electrophoresis. Part of the enriched mRNA preparation has been used to prepare a hybridization probe to screen a trophoblastoma cDNA library in Escherichia coli. A small proportion of the clones hybridized to the probe, and among these a specific clone was identified.

Animals↗

Human monoclonal antibody derived from an autoimmune thrombocytopenic purpura patient, recognizing an intermediate filament's determinant common to vimentin and desmin.

Human monoclonal antibody (mAb) technology has been helpful in identifying autoantibodies that are involved in various autoimmune disorders. We report here the results of such an attempt to immortalize antibody-forming cells from spleen of an autoimmune thrombocytopenic purpura (ATP) patient and characterize the resulting mAb. The human mAb we derived, denoted (4G9), binds to the cytoskeletal network. Using immunofluorescence analyses of permeabilized and fixed cell lines and tissues, the 4G9 mAb was shown to be anti-vimentin specific by virtue of its intracellular staining pattern, decoration of cell lines of mesenchymal (but not epithelial) origin, and by the fact that polyclonal anti-vimentin (and not anti-actin, prekeratin, tubulin or vinculin) antibodies inhibited its binding to intermediate filaments of a fibroblastoid cell line. The presence of vimentin in platelets was also confirmed in the present study by immunoblotting of platelet extract using murine anti-vimentin mAb. Interestingly, in addition to vimentin the 4G9 mAb decorated intermediate filaments in desmin-expressing muscular cells, suggesting that the 4G9 epitope is most likely located within the homologous sequences that are known to be shared between vimentin and desmin.

Animals↗

Identification of a 100 kD protein associated with microtubules, intermediate filaments and coated vesicles in cultured cells.

We have obtained several hybridoma clones producing antibodies to microtubule-associated proteins (MAPs) from bovine brain. Interaction of one of these antibodies, named RN 17, with cultured cells was studied by indirect immunofluorescence and immunoelectron microscopy. RN 17 antibody recognized both high molecular weight (HMW) MAPs, MAP 1 and MAP 2, in immunoblotting reaction with brain microtubules. In lysates of cultured cells, it bound to a protein doublet with a molecular weight of 100 kD. By immunofluorescence microscopy we showed that RN 17 antibody stained cytoplasmic fibrils, mitotic spindles and small particles in the cytoplasm of various cultured cells. The cytoplasmic fibrils were identified as both microtubules and intermediate filaments by double fluorescence microscopy and by their response to colcemid and 0.6 M KCl. This identification was confirmed by immunoelectron microscopy which also showed that the particles stained by RN 17 antibody are coated vesicles. Thus, cultured non-neural cells may contain a novel protein that binds to microtubules, intermediate filaments, and coated vesicles.

Animals↗

Modulation of cardiac intermediate filament proteins in the chick heart by fibric acid derivatives.

The effects of different fibrates (bezafibrate, fenofibrate and gemfibrozil) on intermediate filaments were studied in cultured chick embryo heart cells after treatment for 6 or 24 h. Treatment led to alterations in total protein levels, as well as changes in protein levels, in the cytoplasmic and cytoskeletal fractions of cultured cells. Desmin was increased in the cytoskeletal fraction of all cultures after 6 h of treatment regardless of the drug tested, whereas vimentin was decreased in the cytoskeletal fraction only in cells treated with fenofibrate. These findings suggest that the alterations caused by fibrates in desmin and vimentin protein content may be related with the secondary effects that these drugs have on the cardiovascular system in patients treated with fibrates.

Animals↗

Prompt heat-shock and heat-shifted proteins associated with the nuclear matrix-intermediate filament scaffold in Drosophila melanogaster cells.

Elevated temperatures induced the synthesis of several new proteins in Drosophila melanogaster cells. Besides the conventional heat shock (HS) proteins, another set of temperature-induced proteins has been found. These latter resemble the prompt HS proteins of mammalian cells. The prompt HS proteins of Drosophila differ from the well-known conventional HS proteins in the following properties: (1) synthesis of the prompt HS proteins is insensitive to the transcription inhibitor actinomycin D, which blocks the appearance of conventional HS proteins; (2) induction of the prompt HS proteins requires a significantly higher temperature than conventional HS proteins; (3) prompt HS proteins associate strictly with the nuclear matrix-intermediate filament complex (NM-IF), while the conventional HS proteins are found in all subcellular fractions; (4) prompt HS proteins of Drosophila are induced by high temperature alone while the conventional HS proteins are also produced by a variety of stress conditions. Resinless-section electron micrographs show an altered nuclear matrix morphology in heat-shocked cells. The nuclear matrix fibers are altered in spatial distribution and have much additional electron-dense material. This added material probably reflects the soluble proteins shifted into the nuclear matrix at high temperature. The prompt HS proteins can be distinguished clearly from heat-shifted proteins by several criteria. Also, the prompt HS proteins are distinct from the heat-insensitive viral proteins of a persistent virus (HPS-1).

Animals↗

Arrangement of desmin intermediate filaments in smooth muscle cells as shown by high-resolution immunocytochemistry.

To gain additional information about the arrangement of intermediate filaments (IF) in normal smooth muscle, fresh avian gizzard was processed for immunoelectron microscopy. The protein A-gold immunocytochemical technique was applied for the localization of desmin antigenic sites. Desmin-containing IFs were located in an axial bundle that partially surrounds the nucleus and were associated with numerous mitochondria near the poles of the nucleus. The bundle probably extends the length of the cell. Antibody labeling also showed concentrations of IF around and between cytoplasmic dense bodies (CDB) and also between CDB and membrane-associated dense bodies (MADB). The relationship between the axial bundle and the nucleus and associated mitochondria suggests that the bundle may support and define the position of these organelles in the cell. A fraying or branching of the bundle may integrate the bundle into the remaining cytoskeletal network of the cell.

Animals↗

The function of intermediate filaments in cell shape and cytoskeletal integrity.

This study describes the development and use of a specific method for disassembling intermediate filament (IF) networks in living cells. It takes advantage of the disruptive effects of mimetic peptides derived from the amino acid sequence of the helix initiation 1A domain of IF protein chains. The results demonstrate that at 1:1 molar ratios, these peptides disassemble vimentin IF into small oligomeric complexes and monomers within 30 min at room temperature in vitro. Upon microinjection into cultured fibroblasts, these same peptides induce the rapid disassembly of IF networks. The disassembly process is accompanied by a dramatic alteration in cell shape and the destabilization of microtubule and actin-stress fiber networks. These changes in cell shape and IF assembly states are reversible. The results are discussed with respect to the roles of IF in cell shape and the maintenance of the integrity and mechanical properties of the cytoplasm, as well as the stability of the other major cytoskeletal systems.

3T3 Cells↗

The regulation of intermediate filament reorganization in mitosis. p34cdc2 phosphorylates vimentin at a unique N-terminal site.

The disassembly of vimentin-containing intermediate filament (IF) networks during mitosis in BHK-21 cells is accompanied by increased phosphorylation of vimentin (Chou, Y.-H., Rosevear, E., and Goldman, R. D. (1989) Proc. Natl. Acad. Sci. U. S. A. 86, 1885-1889). We have recently identified p34cdc2 as the catalytic subunit of one of the two endogenous vimentin kinases in mitotic baby hamster kidney cells (Chou, Y.-H., Bischoff, J. R., Beach, D., and Goldman, R. D. (1990) Cell 62, 1063-1071). To begin to characterize the biochemical basis of the p34cdc2-mediated IF disassembly process, we have purified and sequenced the 32P-labeled tryptic peptides derived from in vitro-phosphorylated vimentin. The results demonstrate that Ser-55, in the N-terminal non-alpha-helical domain of vimentin, is the most favored phosphorylation site. This finding supports the idea that the N-terminal domain of type III IF protein plays a crucial role in regulating IF structure and supramolecular organization.

Amino Acid Sequence↗