Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Intermediate Filaments”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 955 records · Page 53Linked to original sources

Heterogeneity of intermediate filament expression in vascular smooth muscle: a gradient in desmin positive cells from the rat aortic arch to the level of the arteria iliaca communis.

The display of the two distinct intermediate filament proteins, desmin and vimentin, in rat vascular smooth muscle tissue was studied by immunofluorescence microscopy on frozen sections of aorta and other blood vessels. Vascular smooth muscle cells present in these vessels always appeared rich in vimentin. However, staining of sections covering six distinct but contiguous parts of the aorta showed that the number of desmin containing cells was low distal to the truncus brachiocephalicus, but increases until in distal parts of the aorta and in the arteria iliaca communis almost all cells appear positive for desmin. Thus blood vessels show heterogeneity of intermediate filament expression not only in cross-section but can also display heterogeneity along their length. Muscular arteries such as the renal artery femoralis, as well as arterioles and veins including the vena jugularis and the vena cava also contain desmin. Thus it may be that low numbers of desmin-positive cells are typical of elastic arteries, while muscular arteries and other blood vessels are characterized by large numbers of desmin-positive cells. We discuss whether desmin-positive and desmin-negative vascular smooth muscle cells may perform functions and raise the possibility that desmin expression may coincide with the turn on of a specially regulated contractility program.

Animals↗

An unusual intermediate filament subunit from the cytoskeletal biopolymer released extracellularly into seawater by the primitive hagfish (Eptatretus stouti).

Each slime gland thread cell from the primitive Pacific hagfish (Eptatretus stouti) contains a massive, conical, intermediate filament (IF)-rich biopolymer ('thread,' approximately 60 cm length, approximately 3 microns width). In view of the unusual ultrastructure of the thread, its extracellular role in modulation of the viscoelastic properties of mucus, and the ancient lineage of this primitive vertebrate, we report the nucleotide and deduced amino acid sequences of one major thread IF subunit, alpha (pI 7.5), which is coexpressed with a second polypeptide, gamma (pI 5.3). These two polypeptides coassemble in vitro into approximately 10 nm filaments. The alpha-thread chain, a 66.6 kDa polypeptide, has an unusual central rod domain containing 318 residues flanked by N- and C-terminal domains of 192 and 133 residues, respectively. Each peripheral region exhibits some epidermal keratin-like features including peptide repeats and a high total content of glycine and serine residues. The terminal domains, however, lack the H1 and H2 subdomains characteristic of known keratins. Moreover, when the central rod is aligned either in relation to established homology profiles (J. F. Conway and D. A. D. Parry (1988) Int. J. Biol. Macromol. 10, 79-98) of other IF subunits (types I-V, nestin, non-neuronal invertebrate), or by computer-based homology searches of the GenBank/EMBL Data Bank, a low identity (< 30%) is evident, with no preferred identity to keratins or other known IF types. Although the central rod of 318 residues consists of the canonical apolar heptad repeats interspersed with three linker regions, a discontinuity in phasing of the heptad substructure in rod 2B, and conserved sequences at either end of the rod domain, other collective characteristics are atypical: overall high threonine content (13.2% vs 2.3-5.4% for other IFs), high threonine content in rod 1B (18.8% vs 1-6%), five Thr-Thr repeats in coiled coil segments, L12 of length greater than in keratins, substitution of phenylalanine for a highly conserved glutamate in the sixth position of L2, and a glycine-proline sequence in segment 2B. Possibly as a result of the high threonine content, the percentage of both acidic and basic residues in most helical subdomains is reduced relative to type I and II chains. Fast Fourier transform analyses show that only the acidic residues in segment 1B and basic residues in segment 2 have near typical IF periods.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Expression of intermediate filament in endometrial glands changes with the onset of pregnancy and in endometriosis.

Appropriate endometrial differentiation is believed to be a prerequisite for pregnancy success. This study investigates the expression of two intermediate filament proteins, cytokeratin and vimentin, in human endometrium and first trimester decidua and in ectopic endometrium from women with endometriosis. Stromal elements, including vascular endothelial cells, were consistently vimentin-positive and cytokeratin-negative. Surface and glandular epithelial cells of human endometrium co-expressed vimentin and cytokeratin during all stages of the menstrual cycle, but failed to express vimentin after the onset of pregnancy. This suggests that intermediate filaments, and especially vimentin, may have a role to play in the proliferation and/or differentiation of the endometrial glands during decidualization. Ectopic endometrium showed a staining pattern similar to normal endometrium.

Decidua↗

Alteration in the arrangement of the keratin-type intermediate filaments during mitosis in cultured human keratinocytes.

The behavior of the keratin-type intermediate filaments (KIFs) during mitosis was characterized in cultured human keratinocytes by immunofluorescence microscopy using polyclonal antibodies to keratin. The structural relationship of KIFs with microtubules (MTs) was also studied at the same time using a monoclonal antibody to alpha-tubulin. The KIFs and MTs showed similar but different cytoskeletal networks and underwent structural rearrangements independently during the cell cycle. KIFs in keratinocytes formed two different arrangements during meta- and anaphase: a global aggregation of filaments around the spindle and a fibrous array radiating from the central, global aggregation of filaments to the cell periphery where they were connected with those of the adjacent cells at desmosomal sites. These radiating fibrous portions of KIFs appeared to play a role in retaining the cell in its correct relationship to the surrounding cells during mitosis. This behavior of KIFs in normal keratinocytes was different from the KIF-alterations which had been previously described in SV40-transformed keratinocytes and other cells which expressed two different IFs (keratin and vimentin).

Cells, Cultured↗

Disorganisation of intermediate filament structure in alcoholic and other liver diseases.

The distribution of Mallory body antigens JMB1 and 2 was examined in 82 human fresh diagnostic needle liver biopsies and 28 necropsies by the indirect immunoperoxidase technique using 2 monoclonal antibodies (anti-JMB1 and 2) against Mallory bodies. The JMB1 antigen was detectable in bile duct epithelium and in hepatocytes of histologically normal livers. It was also found in all Mallory bodies in various hepatic disorders. This antigen was markedly increased in the cytoplasm of all liver cells in acute alcoholic hepatitis superimposed on alcoholic cirrhosis, in most cases of acute alcoholic hepatitis, and in severe fatty infiltration of the liver with or without Mallory body formation. Mallory bodies contained this antigen but the cytoplasm of Mallory body containing cells lacked JMB1. In normal liver the JMB2 antigen was localised on the cytoplasmic intermediate filament network of hepatocytes and bile duct epithelium; and almost all Mallory bodies also contained this antigen but the adjacent cytoplasm of these cells lacked JMB2. In severe alcoholic liver disease these antigens could not be detected in large zones of hepatocytes even when these hepatocytes did not contain Mallory bodies. It is evident that there is disorganisation of intermediate filament constituents in severe alcoholic liver disease.

Antibodies, Monoclonal↗

Nuclear matrix-intermediate filament system and its alteration in adenovirus infected HeLa cell.

The nuclear matrix-intermediate filament (NM-IF) of normal and adenovirus infected HeLa cells were investigated by means of both electron microscopy and two-dimensional gel electrophoresis. After infection there were some changes in NM-IF, and the viral factory was suspended in nuclear matrix. Two new polypeptides appeared in 2-D gel of NM-IF after infection. They are probably not viral proteins but cellular polypeptides. During viral replication, all of vimentin were degraded and phosphorylated keratin 18 increased. These facts suggest that NM-IF plays a certain role in adenovirus replication.

Adenoviruses, Human↗

Cultured human amniotic fluid cells characterized with antibodies against intermediate filaments in indirect immunofluorescence microscopy.

Cells cultured from second trimester human amniotic fluid were characterized in indirect immunofluorescence (IIF) microscopy using specific antibodies against the subunit proteins of different types of cytoskeletal intermediate filaments. Most of the amniotic fluid cell cultures contained only epithelial cells as indicated by the positive keratin-fluorescence in IIF. Five distinct types of keratin-positive cells could be characterized. A dominating cell type (E-1) in most cultures were rapidly proliferating epithelial cells, previously called amniotic fluid cells (AF-cells). These cells showed a fibrillar cytoplasmic fluorescence both with keratin antibodies and with antibodies against vimentin, the fibroblast type of intermediate filament protein. E-1 cells did not show the typical cell-to-cell arrangement of keratin fibrils between the adjacent cells, a characteristic previously found in most cultured epithelial cells. Most of the cultures also contained large epitheloid cells (E-2), showing a fine fibrillar cytoplasmic organization of both keratin- and vimentin filaments, clearly different from that seen in E-1 cells. Several cultures contained two additional epithelial cells both showing the typical cell-to-cell arrangement of keratin fibrils (E-3 and E-4). These two cell types could be distinguished because of their distinct difference in size. E-4 cells typically grew as small cell islands among other epitheloid cells. Amniotic fluid cell cultures occasionally contained also large multinucleated cells (E-5), which appeared to contain large amount of fibrillar keratin. Fibroblastic cells, identified by their decoration only with antibodies against vimentin, were rarely found in amniotic fluid cell cultures. Interestingly, in such cultures some cells with a fibroblastoid appearance were identified as epithelial cells on the basis of the positive keratin-fluorescence. The results show the suitability of IIF with cytoskeletal antibodies in characterization of heterogenous cell populations and indicate that normal amniotic fluid cell cultures mostly contain epithelial cells.

Amniotic Fluid↗

Differential expression of the intermediate filament protein nestin during renal development and its localization in adult podocytes.

Nestin, an intermediate filament protein, is widely used as stem cell marker. Nestin has been shown to interact with other cytoskeleton proteins, suggesting a role in regulating cellular cytoskeletal structure. These studies examined renal nestin localization and developmental expression in mice. In developing kidney, anti-nestin antibody revealed strong immunoreactivity in vascular cleft of the S-shaped body and vascular tuft of capillary loop-stage glomerulus. The nestin-positive structures also were labeled by endothelial cell markers FLK1 and CD31 in immature glomeruli. Nestin was not detected in epithelial cells of immature glomeruli. In contrast, in mature glomerular, nestin immunoreactivity was observed only outside laminin-positive glomerular basement membrane, and co-localized with nephrin, consistent with podocyte nestin expression. In adult kidney, podocytes were the only cells that exhibited persistent nestin expression. Nestin was not detected in ureteric bud and its derivatives throughout renal development. Cell lineage studies, using a nestin promoter-driven Cre mouse and a ROSA26 reporter mouse, showed a strong beta-galactosidase activity in intermediate mesoderm in an embryonic day 10 embryo and all of the structures except those that were derived from ureteric bud in embryonic kidney through adult kidney. These studies show that nestin is expressed in progenitors of glomerular endothelial cells and renal progenitors that are derived from metanephric mesenchyme. In the adult kidney, nestin expression is restricted to differentiated podocytes, suggesting that nestin could play an important role in maintaining the structural integrity of the podocytes.

Aging↗

Human upper epidermal cytoplasmic antibodies are directed against keratin intermediate filament proteins.

Upper cytoplasmic (U-Cyt) antibodies are directed against cytoplasmic antigens found in keratinocytes in the upper layers of the epidermis. Until now, they have been defined by indirect immunofluorescence and are known to occur in the sera of patients with cutaneous diseases such as bullous dermatoses, basal cell carcinomas, and melanomas. An increased incidence of U-Cyt antibodies has also been reported in the sera of patients with noncutaneous diseases, such as pulmonary neoplasms. They have been found in addition in the sera of some normal individuals. In this study we have identified keratin intermediate filaments (KIF) as antigens U-Cyt antibodies are directed against. KIF proteins were prepared, separated by polyacrylamide gel electrophoresis, transblotted to nitro-cellulose strips, and used as substrates for antibody binding. Sera containing U-Cyt antibodies by indirect immunofluorescence also had antibodies that were directed against high molecular weight (65,000, 63,000, 61,500) KIF proteins. When KIF proteins were separated according to their charge and their molecular weight by two-dimensional gel electrophoresis and transblotted, the anti-KIF protein antibodies bound to virtually all charge isomers of the KIF proteins at the respective molecular weight. The antibody titers measured using the transblotting technique were 10 to 160 times higher than those found by indirect immunofluorescence. To determine whether U-Cyt antibodies were directed against KIF, a series of absorption and elution experiments were performed. Absorption of test sera with purified KIF removed both U-Cyt antibodies and anti-KIF protein antibodies. Absorption with another type of intermediate filament derived from fibroblasts, vimentin, did not remove U-Cyt or anti-KIF protein antibodies. Absorbed U-Cyt and anti-KIF protein antibodies were both eluted from the same KIF preparation and shown to bind to U-Cyt antigens by indirect immunofluorescence and KIF proteins by transblotting. Absorption of a serum containing U-Cyt antibodies, anti-nuclear antibodies, and anti-basement membrane zone antibodies with purified KIF resulted in the removal of the U-Cyt antibodies but not the other types of antibody. In addition, all test sera, even those that lacked U-Cyt antibodies, were found to have low-titer antibodies against KIF proteins by the transblotting technique. These data indicate that KIF proteins bear antigens to which U-Cyt antibodies are directed and that low titer antibodies against KIF proteins may be much more common than previously appreciated.

Absorption↗

Intermediate filament expression in mesotheliomas: leiomyoid mesotheliomas are not uncommon.

In this study we examined intermediate filament expression in 45 formalin-fixed mesotheliomas. Immunostaining for cytokeratin was found in 86%, for vimentin in 71%, and for desmin in 4%; none stained for glial fibrillary acidic protein or neurofilament. The two biphasic mesotheliomas which expressed desmin also expressed smooth muscle actin but were negative for myoglobin. This, together with the ultrastructural findings, was taken as unequivocal evidence of a leiomyoid form of mesothelioma which might easily be confused with leiomyosarcoma. Both of these tumours co-expressed cytokeratin, exemplifying the value of cytokeratin immunostaining in the distinction between mesothelioma and sarcoma. Consistent non-expression of glial fibrillary acidic protein in mesotheliomas may help to distinguish them from nerve sheath tumours.

Desmin↗

Solid-phase preparation of vimentin-type intermediate filaments for immunoassays.

A simple method is described for the preparation of vimentin-type intermediate filaments for solid-phase immunoassays. Bovine aortic endothelial cells were grown to confluency in multiwells, and extracted with Triton X-100 and a high-salt buffer. Residual protein in the wells consisted of 53% vimentin as judged by SDS electrophoresis, and the recovery of vimentin was 41%. Methanol-fixed and dried filaments can be used directly for immunological assays.

Animals↗

Phosphorylation of intermediate filament proteins by cAMP-dependent protein kinases.

The intermediate filament proteins, desmin and vimentin, are phosphorylated in skeletal muscle cells in vivo. Desmin kinase activities have been purified from mature chicken skeletal muscle and identified as the cAMP-dependent kinases. Chicken skeletal muscle contains two cAMP-dependent protein kinases which are similar to those of other tissues in their subunit composition and chromatographic behavior. The catalytic subunits purified from the two chicken cAMP-dependent kinases phosphorylate both desmin and vimentin in vitro, using cytoskeletal residues prepared from cultured myogenic cells as a substrate. Likewise, the purified catalytic subunits of the rabbit skeletal muscle and bovine heart cAMP-dependent protein kinases phosphorylate desmin and vimentin in vitro. Desmin and vimentin phosphorylation by the rabbit skeletal muscle catalytic subunit is inhibited by the addition of its regulatory subunit. This inhibition is reversed by the presence of cAMP in the reaction mixture. A small fraction of the vimentin phosphorylation is cAmP-independent. Tryptic peptide analysis of desmin phosphorylated in vivo shows two major phosphopeptides. Serine is the phosphorylated amino acid in both peptides. The same two peptides are phosphorylated in vitro by the bovine heart catalytic subunit, but additional peptides are also phosphorylated.

Animals↗

Intermediate filaments are required for C. elegans epidermal elongation.

Cytoplasmic intermediate filaments (cIFs) are thought to provide mechanical strength to vertebrate cells; however, their function in invertebrates has been largely unexplored. The Caenorhabditis elegans genome encodes multiple cIFs. The C. elegans ifb-1 locus encodes two cIF isoforms, IFB-1A and IFB-1B, that differ in their head domains. We show that both IFB-1 isoforms are expressed in epidermal cells, within which they are localized to muscle-epidermal attachment structures. Reduction in IFB-1A function by mutation or RNA interference (RNAi) causes epidermal fragility, abnormal epidermal morphogenesis, and muscle detachment, consistent with IFB-1A providing mechanical strength to epidermal attachment structures. Reduction in IFB-1B function causes morphogenetic defects and defective outgrowth of the excretory cell. Reduction in function of both IFB-1 isoforms results in embryonic arrest due to muscle detachment and failure in epidermal cell elongation at the 2-fold stage. Two other cIFs, IFA-2 and IFA-3, are expressed in epidermal cells. We show that loss of function in IFA-3 results in defects in morphogenesis indistinguishable from those of embryos lacking ifb-1. In contrast, IFA-2 is not required for embryonic morphogenesis. Our data indicate that IFB-1 and IFA-3 are likely the major cIF isoforms in embryonic epidermal attachment structures.

Animals↗

The organizational fate of intermediate filament networks in two epithelial cell types during mitosis.

Intermediate filaments (IF) appear to be attached to the nuclear envelope in various mammalian cell types. The nucleus of mouse keratinocytes is enveloped by a cagelike network of keratin-containing bundles of IF (IFB). This network appears to be continuous with the cytoplasmic IFB system that extends to the cell surface. Electron microscopy reveals that the IFB appear to terminate at the level of the nuclear envelope, frequently in association with nuclear pore complexes (Jones, J. C .R., A. E. Goldman, P. Steinert, S. Yuspa, and R. D. Goldman, 1982, Cell Motility, 2:197-213). Based on these observations of nuclear-IF associations, it is of interest to determine the fate and organizational states of IF during mitosis, a period in the cell cycle when the nuclear envelope disassembles. Immunofluorescence microscopy using a monoclonal keratin antibody and electron microscopy of thin and thick sections of mitotic mouse keratinocytes revealed that the IFB system remained intact as the cells entered mitosis and surrounded the developing mitotic spindle. IFB were close to chromosomes and often associated with chromosome arms. In contrast, in HeLa, a human epithelial cell, keratin-containing IFB appear to dissemble as cells enter mitosis (Franke, W. W., E. Schmid, C. Grund, and B. Geiger, 1982, Cell, 30:103-113). The keratin IFB in mitotic HeLa cells appeared to form amorphous nonfilamentous bodies as determined by electron microscopy. However, in HeLa, another IF system composed primarily of a 55,000-mol-wt protein (frequently termed vimentin) appears to remain morphologically intact throughout mitosis in close association with the mitotic apparatus (Celis, J.E., P.M. Larsen, S.J. Fey, and A. Celis, 1983, J. Cell Biol., 97:1429-34). We propose that the mitotic apparatus in both mouse epidermal cells and in HeLa cells is supported and centered within the cell by IFB networks.

Animals↗

Alteration of vimentin intermediate filament expression during differentiation of human hemopoietic cells.

We describe the alterations of vimentin intermediate filament (IF) expression in human hemopoietic committed precursors as they differentiate into mature cells of the erythroid, granulomonocytic, megacaryocytic and lymphoid lineages. A double labelling fluorescence procedure was used to identify hemopoietic cells expressing lineage-specific antigens and to decorate the vimentin IF network. Whereas very early progenitors from each lineage expressed vimentin, the density and organization of the network differed strikingly as the cells matured on a given pathway. T lymphocytes, monocytes and granulocytes retained vimentin expression at all stages of maturation. In contrast, megakaryoblasts lose vimentin expression at a very early stage of differentiation, erythroblasts at variable steps between the committed erythroid cell and the red cell. Finally, B lymphocytes tend to lose vimentin expression later when they mature into plasma cells.

Blood Platelets↗

[Changes in the intermediate filament cytoskeleton of liver cells in alcoholic liver injury].

Mallory bodies are a morphological key feature of severe alcoholic liver cell injury (alcoholic hepatitis) and the morphological expression of dysregulation and derangement of the intermediate filament cytoskeleton of the hepatocyte. Their pathogenesis is still unclear. Studies on Mallory body formation may not only help to elucidate the mechanisms of liver cell injury associated with alcoholic hepatitis, but may also contribute to our understanding of the regulation and function of the intermediate filament cytoskeleton.

Animals↗

In vivo and in vitro evidence that the four essential intermediate filament (IF) proteins A1, A2, A3 and B1 of the nematode Caenorhabditis elegans form an obligate heteropolymeric IF system.

The in vitro polymerization and tissue-specific expression patterns of the four essential intermediate filament (IF) proteins (A1, A2, A3, B1) and the non-essential IF protein A4 were analyzed. Recombinant B1, used as a probe in blot overlay assays of the 11 Caenorhabditis elegans IF proteins, reacted strongly with proteins A1 to A4, indicating a heterotypic interaction. Obligate heteropolymeric filament assembly in vitro was confirmed by electron microscopy. Protein B1 formed long IF when mixed with an equimolar amount of A1, A2 or A3. Developmentally regulated coexpression of B1 and one or more members of the A family was found with GFP-promoter reporters. This coexpression pattern argues for a heteropolymer system in vivo. One or both splice variants of the B1 gene are always coexpressed in a tissue-specific manner with at least one member of the A family in hypodermis, pharynx, pharyngeal-intestinal valve, excretory cells, uterus, vulva and rectum. Interestingly, while the intestine normally lacks a B1/A pair, the dauer larva shows intestinal B1 and A4. These results are in line with similar postembryonic phenotypes of the hypodermis induced by RNA interference (RNAi) of genes B1, A2 and A3. Similarly, defects of the pharynx and its A1-GFP containing tonofilaments observed in the postembryonic B1 RNAi phenotype are consistent with the coexpression of B1 and A1 in the marginal cells. Thus RNAi analyses provide independent evidence for the existence of the B1/A obligate heteropolymer system in vivo. Proteins A1 and B1 have a similar and rather slow turnover rate in photobleaching experiments of the pharynx tonofilaments.

Amino Acid Sequence↗

Intermediate filament immunohistochemistry of astroglial cells in the leopard gecko, Eublepharis macularius.

The distribution of intermediate filament molecular markers, glial fibrillary acidic protein (GFAP) and vimentin, has been studied in the central nervous system (CNS) of the adult leopard gecko, Eublepharis macularius. This immunohistochemical study points out the presence of different astroglial cell types. The main pattern is constituted by ependymal radial glia, which have their cell bodies located in the ependymal layer throughout the brain ventricular system. Radial glia proper or radial astrocytes show their cell bodies displaced from the ependymal layer into a periependymal zone and are observed only in the spinal cord. Star-shaped astrocytes are scarce. They are detected in the ventral and lateral regions of the diencephalon and mesencephalon, in the superficial layer of the optic tectum, in the ventral medulla oblongata, and in the ventral and lateral spinal cord. In the different regions of the CNS, the staining intensity appears not to be identical even in the same cellular type. The results reported in the present study show an heterogeneous feature of the astroglial pattern in E. macularius.

Animals↗