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Network antibodies identify nuclear lamin B as a physiological attachment site for peripherin intermediate filaments.

We studied the molecular associations between peripherin (a neuronal, type III intermediate filament subunit) and nuclear lamins. We show here that isolated peripherin binds selectively to mammalian lamin B under in vitro conditions. We further demonstrate that a synthetic peptide, representing the proximal part of peripherin's tail domain (P1), also associates with mammalian lamin B in a saturable, cooperative, and specific fashion. Laboratory animals immunized with P1 spontaneously develop idiotypic and anti-idiotypic antibodies recognizing peripherin and lamin B, respectively. These data provide essentially in vivo evidence that lamin B represents a constitutive nuclear "receptor" site for the tail domains of peripherin intermediate filaments.

Amino Acid Sequence↗

Antibodies to intermediate filament proteins in the diagnosis and classification of human tumors.

Immunohistochemistry of intermediate filaments (IF) is a new and important way to evaluate the epithelial, mesenchymal, muscular, glial, or neural differentiation in tumors. This is based on the stable cell-type-specific expression of IF proteins in normal and neoplastic tissues. Immunohistochemical studies with antibodies to intermediate filaments have also given new perspectives in the histogenesis and biologic nature of many tumors. This article reviews both the recent findings and the authors' experience in the use of intermediate filament antibodies in tumor diagnosis and classification.

Adenocarcinoma↗

Biosynthesis of glycosphingolipids is reduced in the absence of a vimentin intermediate filament network.

Our previous observations on the immunocytochemical colocalization of intermediate filaments and glycosphingolipids led us to analyze the role of filaments in the biosynthesis and intracellular transport of glycosphingolipids. Cells with (vim+) and without (vim-) vimentin intermediate filaments were cloned from the adrenal carcinoma cell line SW13. There was no difference between vim+ and vim- cells in the proportion of newly synthesized C6-NBD-glucosylceramide transported to the plasma membrane. The vim+ cells synthesized glycosphingolipids, especially lactosylceramide and globotriosylceramide, and to a lesser extent GM3 ganglioside, more rapidly than vim- cells. The altered rate of biosynthesis did not result from differences in the levels of the glycosyltransferases that synthesize those compounds. To determine whether the presence of a vimentin network was responsible for the differences in biosynthesis, mouse vimentin cDNA was transfected into vim- cells. Transfected cells that expressed a mouse vimentin network demonstrated a twofold or greater increase in the rate of biosynthesis of neutral glycosphingolipids and gangliosides. There was no difference between vim+ and vim- cells in the synthesis of ceramide or sphingomyelin, or in their content of phospholipids or cholesterol. The nature of the biochemical defect(s) underlying the diminished incorporation of radiolabeled sugars into glycosphingolipids is unclear. Possibilities include alterations in the ultrastructure of the Golgi and/or abnormalities in a portion of the endocytic pathway.

Adrenal Cortex Neoplasms↗

Proteins of intermediate filaments. An immunohistochemical and biochemical approach to the classification of soft tissue tumors.

The intermediate filament cytoskeleton of various types of human soft tissue tumors was analyzed by immunofluorescence microscopy with the use of specific antibodies against cytokeratins, vimentin, and desmin, as well as by one- and two-dimensional gel electrophoresis of high-salt buffer- and detergent-resistant cytoskeletal preparations. All leiomyomas as well as a leiomyosarcoma contained desmin. Leiomyomas of both gastrointestinal and uterine derivation and the retroperitoneal leiomyosarcoma showed strong reaction for desmin in the smooth muscle cells, but the latter two exhibited also vimentin staining. In embryonal rhabdomyosarcomas, desmin prevailed in the large, apparently well-differentiated rhabdomyoblasts; whereas the smaller, less differentiated tumor cells preferentially contained vimentin. Cells of malignant fibrous histiocytomas were characterized by their content of vimentin as the only intermediate filament protein present. In alveolar soft part sarcoma, a rare tumor of hitherto unknown histogenesis, vimentin and desmin co-existed within the same tumor cells, indicating, together with chemical determinations, the myogenic derivation of this neoplasm. The results show that immunologic and biochemical analysis of proteins associated with the intermediate filament cytoskeleton is a useful adjunct in the diagnosis of diverse neoplasms, particularly those with equivocal histologic features, and thus aids in the histogenetic classification of soft tissue tumors.

Desmin↗

Intermediate filaments in Sertoli cells.

Using immunohistochemical techniques both at light and electron microscopic levels, the arrangement and distribution of intermediate filaments in Sertoli cells of normal testis (in rat and human), during pre- and postnatal development (in rabbit, rat, and mouse) and under experimental and pathological conditions (human, rat), have been studied and related to the pertinent literature. Intermediate filaments are centered around the nucleus, where they apparently terminate in the nuclear envelope providing a perinuclear stable core area. From this area they radiate to the plasma membranes; apically often a close association with microtubules is seen. Basally, direct contacts of the filaments with focal adhesions occur, while the relationship to the different junctions of Sertoli cells is only incompletely elucidated. In the rat (not in human) a group of filaments is closely associated with the ectoplasmic specializations surrounding the head of elongating spermatids. Both in rat and human, changes in cell shape during the spermatogenic cycle are associated with a redistribution of intermediate filaments. As inferred from in vitro studies reported in the literature, these changes are at least partly hormone-dependent (vimentin phosphorylation subsequent to FSH stimulation) and influenced by local factors (basal lamina, germ cells). Intermediate filaments, therefore, are suggested to be involved in the hormone-dependent mechanical integration of exogenous and endogenous cell shaping forces. They permit a cycle-dependent compartmentation of the Sertoli cell into a perinuclear stable zone and a peripheral trafficking zone with fluctuating shape. The latter is important with respect to the germ cell-supporting surface of the cell which seems to limit the spermatogenetic potential of the male gonad.

Animals↗

Desmosomes: intercellular adhesive junctions specialized for attachment of intermediate filaments.

Cell-cell adhesion is thought to play important roles in development, in tissue morphogenesis, and in the regulation of cell migration and proliferation. Desmosomes are adhesive intercellular junctions that anchor the intermediate filament network to the plasma membrane. By functioning both as an adhesive complex and as a cell-surface attachment site for intermediate filaments, desmosomes integrate the intermediate filament cytoskeleton between cells and play an important role in maintaining tissue integrity. Recent observations indicate that tissue integrity is severely compromised in autoimmune and genetic diseases in which the function of desmosomal molecules is impaired. In addition, the structure and function of many of the desmosomal molecules have been determined, and a number of the molecular interactions between desmosomal proteins have now been elucidated. Finally, the molecular constituents of desmosomes and other adhesive complexes are now known to function not only in cell adhesion, but also in the transduction of intracellular signals that regulate cell behavior.

Animals↗

The organization and solubility properties of intermediate filaments and microtubules of cortical astrocytes in culture.

The organization of intermediate filaments (IF) and microtubules (MT) and the solubility of intermediate filament proteins and tubulin in astrocytes which develop from cerebral hemispheres of neonatal rats in culture were examined using immunocytochemical and immunochemical approaches. Results of immunocytochemical studies demonstrated that in flat astrocytes which develop after 3 weeks of culturing in serum-supplemented medium, the IF containing vimentin and glial fibrillary acidic protein (GFAP) are concentrated around the nucleus and dispersed in an irregular fashion throughout the cytoplasm. Astrocytes which develop in serum-free hormonally-defined medium irrespective of whether they are bipolar, multipolar or flattened, have IF organized as a fibrous network of filaments distributed from the nuclear regions to the cell periphery. Under both culture conditions, vimentin and GFAP are resistant to extraction with low salt buffer containing nonionic detergent, indicating that the different cytoplasmic distribution of IF is unrelated to the solubility properties of vimentin and GFAP. Double immunolabelling experiments with polyclonal antibody to GFAP and monoclonal antibody to each alpha-tubulin or beta-tubulin reveal an extensive codistribution and parallel organization of IF and MT in all morphological types of astrocytes studied. Stabilization of MT with taxol, or depolymerization of MT with colchicine, cause dramatic changes in the distribution of IF and inhibit the extension of astrocyte processes in response to dibutyryl cyclic AMP (dBcAMP). In early stages of treatment with dBcAMP, renewal of culture medium without dBcAMP produces a rapid and permanent retraction of astrocyte processes, whereas in later stages the processes only retract partially and are then restored and maintained for several days in the absence of dBcAMP. The retraction of processes is accompanied by changes of immunocytochemical staining of IF with antibody to GFAP, which appears more intense and diffuse. However, electrophoretic and immunoblot analyses of detergent-extracted proteins from parallel cultures demonstrate that neither the amount nor the solubility of GFAP and vimentin are changed. Detergent extraction in MT stabilizing conditions shows that a substantial proportion of tubulin in astrocytes cultured in serum-containing and serum-free media is assembled into MT, most of which depolymerize on treatment with low temperature and Ca2+. Following long exposure to dBcAMP the proportion of cold/Ca2+-stable MT increases. The results suggest that the IF of astrocytes in culture are dependent on MT with respect to their cytoplasmic distribution.(ABSTRACT TRUNCATED AT 400 WORDS)

Alkaloids↗

Lamin B shares a number of distinct epitopes with lamins A and C and with intermediate filament proteins.

Four monoclonal antibodies raised against rat liver nuclear lamins and an anti-intermediate filament antibody [Pruss, R. M., Mirsky, R., & Raff, M. C. (1981) Cell (Cambridge, Mass.) 27, 419-428] have been used to identify epitopes shared by lamin B with lamins A and C, and with intermediate filament proteins. The antibodies defined two major antigenic regions on the three lamins which were both homologous with mouse epidermal keratins as well as hamster vimentin and desmin. Three distinguishable epitopes shared by lamin B with lamins A and C were identified by competition studies between pairs of antibodies and by reaction against N-chlorosuccinimide and cyanogen bromide cleavage fragments. These results support the hypothesis that lamin B, despite important biochemical differences with lamins A and C, shares with them some of the structural characteristics typical of intermediate filament proteins.

Animals↗

Molecular mimicry in virus infection: crossreaction of measles virus phosphoprotein or of herpes simplex virus protein with human intermediate filaments.

Using monoclonal antibodies, we demonstrate that the phosphoprotein of measles virus and a protein of herpes simplex virus type 1 crossreact with an intermediate filament protein of human cells. This intermediate filament protein, probably vimentin, has a molecular weight of 52,000, whereas the molecular weights of the measles viral phosphoprotein and the herpes virus protein are 70,000 and 146,000, respectively. Crossreactivity was shown by immunofluorescent staining of infected and uninfected cells and by immunoblotting. The monoclonal antibody against measles virus phosphoprotein did not react with herpes simplex virus protein and vice versa, indicating that these monoclonal antibodies recognize different antigenic determinants on the intermediate filament molecule. The significance of these results in explaining the appearance of autoantibodies during virus infections in humans is discussed.

Antibodies, Monoclonal↗

Intermediate filament networks: in vitro and in vivo assembly models.

We propose two systems of ordinary differential equations modeling the assembly of intermediate filament networks. The first one describes the in vitro intermediate filament assembly dynamics. The second one deals with the in vivo evolution of cytokeratin, which is the intermediate filament protein expressed by epithelial cells. The in vitro model is then briefly analyzed in a simplified case.

Animals↗

Attachment of mitochondria to intermediate filaments in adrenal cells: relevance to the regulation of steroid synthesis.

The rate of steroid synthesis is regulated by the rate of transport of cholesterol from lipid droplets to mitochondria. We have previously demonstrated that lipid droplets in adrenal cells are tightly attached to intermediate filaments. Here we now show that mitochondria colocalize with intermediate filaments in modified double indirect immunofluorescence and by electron microscopy of extracted adrenal cells. Direct contact between mitochondria and intermediate filaments was established by examination of stereo pairs of electron micrographs from extracted cells. The attachment of both droplets and mitochondria to intermediate filaments suggests possible mechanisms for this form of intracellular transport of cholesterol to mitochondria and hence for the regulation of steroid synthesis.

Adrenal Glands↗

Evidence for a calcium activated protease specific for lens intermediate filaments.

The calcium mediated loss of intermediate filament protein from lens cytoskeletal preparations was examined by soft laser scanning densitometry of polyacrylamide gels. The time course of proteolysis by the lens Ca++ activated proteinase and inhibition by EGTA or PMSF and leupeptin were also determined. Proteolytic breakdown products were identified on electroblots with specific antiserum to vimentin.

Animals↗

Developmentally regulated stabilization of neuronal intermediate filaments in rat cerebral cortex.

The expression and Triton X-100 (Triton) solubility of neuronal intermediate filament proteins were determined in the developing rat cerebral cortex. The level of expression of alpha-internexin was unchanged from embryonic day 15 (E15) to postnatal day 15 (P15), whereas expression of the mid-sized neurofilament subunit increased continually during this interval concomitant with a reduction in Triton solubility of the two proteins. The low molecular weight neurofilament subunit, first barely detected at P2, was largely insoluble in Triton from the initial time point that its solubility could be assayed, at P5, to P15. Similar expression patterns and Triton solubility profiles were obtained for neuronal intermediate filament proteins in cultured neurons from E15 cerebral cortex. These results suggest that alpha-internexin is expressed earlier than neurofilament proteins to provide a more plastic network in the early developing brain. The incorporation of neurofilament proteins apparently results in the formation of the more stable intermediate filament network found in mature neurons.

Age Factors↗

The importance of intramolecular ion pairing in intermediate filaments.

Nuclear and cytoskeletal networks of 10-nm intermediate filaments (IFs) are probably ubiquitous in multicellular eukaryotes. They likely play a role in maintaining the mechanical integrity of a cell. With the exception of the nuclear lamins, IF proteins can form IFs in vitro in the absence of cofactors or associated proteins. Below we present data suggesting that the large alpha-helical "rod" domains of IF proteins are stabilized by large numbers (up to 50) of intra-helical ion pairs formed by residues of opposite charge situated four residues apart. These many ion pairs, sometimes involving up to 30% of the residues within a coiled-coil IF segment, can potentially contribute as much as 10-25 kcal/mol (1 kcal = 4.18 kJ) to the stability of a single alpha-helical rod. Such stabilization is likely to play a major role in the chemical and physical stability of IF networks in vitro and in vivo. An investigation of other coiled-coil proteins shows that selection for intrahelical ion pairing is not simply a property intrinsic to coiled-coil proteins. Rather, there is a correlation between the degree to which there is selection for intrahelical ion pairs and the extent to which a coiled-coil protein participates in highly ordered multimolecular interactions--e.g., as in IFs and myosin thick filaments. The propensity of putative ion pairs in some IF proteins--e.g., epidermal keratins--suggests that an underlying structural stability at the level of the monomer may play an important role in the extraordinary stability of dimers and higher ordered structures in cytoplasmic IFs.

Amino Acid Sequence↗

High molecular weight polypeptides (270,000-340,000) from cultured cells are related to hog brain microtubule-associated proteins but copurify with intermediate filaments.

High molecular weight polypeptides (HMWPs) of 270,000 to 340,000 were found to be major components of intermediate filaments prepared by Triton X-100 extraction after spreading of rat glioma C6, HeLa, Chinese hamster ovary, and simian virus 40-transformed Chinese hamster lung cells. C6 HMWPs were shown to resemble high molecular weight microtubule-associated proteins from hog brain by four criteria: (i) comigration in electrophoresis on high-resolution sodium dodecyl sulfate/polyacrylamide gels, (ii) one-dimensional peptide mapping, (iii) phosphorylation in vitro with [gamma-32P]ATP, and (iv) ability to promote microtubule assembly in vitro. HMWPs were also found to be major components of one-time polymerized C6 microtubule preparations, which contained a sizable amount of intermediate filaments. The predominant part of HMWPs present in these microtubule preparations was found not to copurify with microtubules in cycles of temperature-dependent assembly/disassembly but to remain with the cold-insoluble intermediate filaments. These results provide an explanation for the low yields that have hampered attempts to purify microtubule-associated porteins, in particular HMWPs, from cultured cells in the past. Moreover, they suggest that HMWPs might have a dual role in the cell, serving not only as regulators of microtubule assembly but also as linker components between microtubules and intermediate filaments.

Animals↗

Interaction of intermediate filaments with ribosomes in vitro.

Cytoplasmic intermediate filaments (cIFs) should be capable of loosely interacting with negatively charged, macromolecular assemblies, given that the net positive charge of the N-terminal head domains exposed on the surface of the cIFs is not fully neutralized by the neighboring C-terminal tail domains and the filament body proper. In order to substantiate this notion, cIFs reconstituted in vitro from various type III IF proteins and obtained as constituents of whole cell mount preparations were allowed to react at physiological ionic strength with 40S and 60S ribosomal subunits as well as 80S run-off ribosomes of mammalian origin. Electron micrographs of the reaction products show colocalization of all kinds of ribosomal particles with both the reconstituted and the natural cIFs, including the cytokeratin filaments of whole cell mount preparations of epithelial cells. The ribosome-cIF complexes are sensitive to ionic strength higher than physiological as well as to mild treatment with pancreatic RNase A, suggesting the direct involvement of the RNA moieties of the ribosomal particles in the binding reaction via the engagement of ionic bonds. This weak, electrostatic interaction potential of the cIF complement of the cytoskeleton might be exploited by the eukaryotic cell for the storage and distribution in the cytoplasm of non-polyribosomal ribonucleoprotein particles of the protein-synthesizing machinery and possibly also of negatively charged membrane vesicles.

Animals↗

Immunohistochemical evaluation of intermediate filament expression in canine and feline neoplasms.

Specimens of neoplastic tissues from 19 dogs and 4 cats were examined immunohistochemically for intermediate filament expression, using commercially available antibodies. Staining was observed in a wide range of tumor tissues and in normal internal controls by use of antibodies to vimentin, desmin, glial fibrillary acidic protein, and low and high molecular weight cytokeratins. Intermediate filament expression was found to be consistent with light and/or electron microscopic findings, and hence believed to be an accurate indicator of tumor histogenesis in cats and dogs. Three fixatives were evaluated for their relative abilities to preserve antigenicity. Absolute alcohol was superior to B5 fixative and both were superior to formalin. Some tissues that clearly displayed intermediate filament antigens with alcohol and B5 fixative failed to stain when fixed in formalin.

Adenocarcinoma↗

Intermediate filaments in meningiomas.

The presence of intermediate filaments (IF) (diameter 10 nm) is a characteristic electron microscopic finding in the cytoplasm of meningioma cells. To identify these IF, immunohistochemical staining for cytokeratins and vimentin and two-dimensional (2-D) gel electrophoresis followed by immunoblot analysis were applied to a group of 16 meningiomas. Thirteen meningiomas were obtained directly from surgery and three came from an autopsy in which they were found in close proximity as discrete tumor masses. Except for the angioblastic type, all major histological variants were represented (nine transitional, four syncytial, and three fibroblastic). None of the meningiomas stained for epithelial or internal organ cytokeratins. With monoclonal antibodies, each of the meningiomas stained positively for vimentin. Two-D gels revealed vimentin and vimentin breakdown products as the only IF present; these findings were verified by immunoblots. The study concludes that vimentin is the IF present in fibroblastic, syncytial, and transitional meningiomas.

Cytoskeleton↗