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Biomedical subjects

R Kuhn

Publications and source records attributed to R Kuhn.

At least 145 records · Page 8Linked to original sources

Axons regulate Schwann cell expression of the POU transcription factor SCIP.

SCIP (suppressed cAMP-inducible POU) is a POU domain transcription factor expressed by Schwann cells. Drugs that elevate intracellular cAMP, such as forskolin, increase the expression of SCIP and partially mimic the inductive effects of axons on Schwann cell gene expression. Thus, SCIP may be involved in a differentiation pathway in Schwann cells that is activated by axons. We have examined this issue by studying SCIP expression in developing, degenerating, and regenerating rat peripheral nerves, and in Schwann cell-neuron cocultures. High levels of SCIP mRNA were detected in developing and regenerating nerves, and axotomy at these times caused the level of SCIP mRNA to plummet. Similarly, there were many SCIP-immunoreactive Schwann cell nuclei in developing and regenerating nerves, and their number fell sharply after axotomy. SCIP-immunoreactive Schwann cells were associated with axons in developing and regenerating nerves, and in Schwann cell-neuron cocultures. These data demonstrate that axons upregulate the expression of SCIP in Schwann cells, and that SCIP is expressed in Schwann cells that ensheathe axons. Thus, SCIP may mediate some of the changes in Schwann cell gene expression that accompany axonal ensheathment.

Animals↗

Cell-specific action and mutable structure of a transcription factor effector domain.

POU proteins are cell-specific transcription factors whose specificity of action has been attributed to protein-DNA and protein-protein interactions mediated by their DNA-binding (POU) domains. Here we report that transcriptional activation by SCIP, a POU protein expressed by developing Schwann cells, is dependent on an amino-terminal effector domain and that this domain mediates cell-specific transactivation in the complete absence of the POU domain. When fused to a heterologous DNA-binding domain, this SCIP domain is a potent transactivator in Schwann cells but is inactive in three heterologous cell types. The primary structure of the SCIP amino-terminal domain is novel but contains a polymorphic string of alanine residues similar to those found in several other transcription factors. Although previously hypothesized to be important for transcription factor activity, we find that the SCIP string is functionally irrelevant. We propose that homopolymers of alanine, and certain other amino acids, do not represent a motif required for transcription factor function but instead reflect regions of unstable DNA related to those associated with four recently characterized human genetic disorders.

Alanine↗

Interleukin-4 transgenic mice of resistant background are susceptible to Leishmania major infection.

The outcome of cutaneous leishmaniasis is dependent on the balance of Th1 and Th2 cells. In the murine model, Th1 cells are host-protective whereas the Th2 cells are disease-promoting. However, the in vivo role of interleukin-4 (IL-4), a signature product of Th2 cells, is uncertain. We compared the course of Leishmania major infection in the genetically resistant 129/Sv mice and the mutant 129/Sv mice transgenic for the murine IL-4 gene under the control of the immunoglobulin heavy chain enhancer and promoter. We report here that in contrast to their wild-type parents, the IL-4 transgenic mice are susceptible to L. major infection. This is associated with the development of inexorably progressive lesions and parasite loads. Spleen cells from infected transgenic mice produced significantly higher levels of IL-4 but lower amounts of interferon-gamma when stimulated in vitro with leishmanial antigens compared to those from infected normal 129/Sv mice. Furthermore, sera from the infected transgenic mice contained higher levels of IL-4 and IgE than the sera of infected normal 129/Sv mice. These results, therefore, establish in a new animal model that IL-4 promotes disease development in murine cutaneous leishmaniasis.

Animals↗

Single cell analysis of the expression of a nuclear protein, SCIP, by fluorescent immunohistochemistry visualized with confocal microscopy.

A widely applicable method for the accurate quantification or semiquantification of macromolecules at the level of individual cells is described and validated; this is a method which may considerably facilitate the study of many biological processes. This method relies on measuring fluorescent emission in immunocytochemically labelled cells with a confocal microscope. Emission is related quantitatively to the level of the fluorophore by the combination of an analysis of the polarization of the fluorescent emission and fluorophore rationing methods. The method was applied to the study of the expression of the suppressed cyclic AMP-induced POU protein (SCIP) transcription factor in glial cells of the central nervous system. In particular, the method allowed the study of transcription factor expression in defined cells present in heterogeneous cultures and in cell types which cannot be isolated in sufficient numbers for biochemical analysis using conventional techniques.

Animals↗

Repression of the myelin P0 gene by the POU transcription factor SCIP.

SCIP is a POU domain transcription factor expressed by Schwann cells, the myelin-forming glial cells of the peripheral nervous system. In this study, we investigate SCIP regulation of the gene encoding P0, the major structural protein of peripheral myelin. We find that SCIP represses transcription of this gene through the joint action of the SCIP POU domain and an amino terminal domain that acts cell specifically. Maximal repression is DNA-binding-dependent, and analysis of the P0 promoter reveals the presence of multiple SCIP binding sites. Surprisingly, none of these sites in their native positions dramatically affect P0 promoter activity or its repression by SCIP, although they mediate repression when moved closer to the P0 transcription start site. We propose that repression occurs through a quenching mechanism mediated by the SCIP POU and amino terminal domains acting in concert with other nuclear proteins, including a Schwann cell-specific adapter.

Animals↗

[Single hepatocellular carcinoma (phi < or = 5 cm) in liver cirrhosis. Early diagnosis and surgical removal].

721 patients with liver cirrhosis were regularly screened by sonography and determination of alpha fetoprotein during a period of eleven years (1.1.1982-1.1.1993). In 137 of them hepatocellular carcinoma (HCC) was diagnosed; 28 (20.4%) had a unilocular HCC with a diameter up to 5 cm. Diagnosis was regularly verified by sonographic guided puncture, in rare cases by laparoscopy and biopsy. Beside a diameter of 5 cm the tumor should be localized at least 5 mm from the main structures in the hilus, and not in the centre of the liver; furthermore multilocular hepatocellular carcinomas and intra- and extrahepatic metastases were contraindications. Child-Pugh-classification should be A+B and urea synthesis rate at least 6 g per day. In 21 patients (75%) a portal hypertension was diagnosed; 19 (68%) had bled from esophageal varices; in case of one bleeding a therapeutic sclerotherapy and in case of recurrent variceal hemorrhage an elective shunt operation were performed. Surgical resection was carried out with controlled hypotension and temporary occlusion of the hepatoduodenal ligament. Tumor was removed by segmentectomy or bisegmentectomy and in rare cases by enucleation. There were 3 clinical deaths (10.7%); causes of death were liver failure and (2) sepsis (1). All patients could be followed up to January 1, 1993; there were 12 further deaths of liver failure, tumor recurrence or second tumor. 13 patients are still living. Thus the live expectancy for one year was 80, for 5 years 50 and for 10 years 30%. There is no doubt, that it is possible to detect hepatocellular carcinoma in patients with liver cirrhosis early by regular sonography and determination of alpha-fetoprotein.(ABSTRACT TRUNCATED AT 250 WORDS)

Aged↗

Down-regulation of the POU transcription factor SCIP is an early event in oligodendrocyte differentiation in vitro.

The POU-domain transcription factor SCIP (also known as Tst-1) has been implicated in the development of Schwann cells, the myelinating cells of the peripheral nervous system (PNS). We have investigated the possibility that SCIP also might play a role in the development of oligodendrocytes, the myelinating cells of the central nervous system (CNS). We purified oligodendrocyte precursors (O-2A progenitors) by immunoselection and cultured them in the presence of platelet-derived growth factor (PDGF) and basic fibroblast growth factor (bFGF), which together keep O-2A progenitors proliferating and prevent oligodendrocyte differentiation. Under these culture conditions, O-2A progenitors expressed high levels of SCIP mRNA and protein, and did not express myelin-specific genes. When oligodendrocyte differentiation was initiated by withdrawing the growth factors, SCIP mRNA was rapidly down-regulated, followed by a decline in SCIP protein and the sequential activation of myelin-specific genes. Rapid down-regulation of SCIP mRNA required continued protein synthesis. In O-2A progenitors that were cultured in the presence of PDGF alone, SCIP expression declined to an intermediate level, and low levels of the myelin gene products were induced. Thus, the level of SCIP expression in O-2A progenitors is inversely related to the level of myelin gene expression, suggesting that SCIP may be involved in the developmental switch from proliferation to differentiation in the oligodendrocyte lineage. When O-2A progenitors are cultured in the presence of 10% fetal calf serum, they differentiate into type-2 astrocytes rather than oligodendrocytes. SCIP mRNA was also down-regulated in type-2 astrocytes, which do not express myelin genes, so down-regulation of SCIP seems to be more closely linked to the cessation of cell proliferation per se than the expression of a particular differentiated phenotype.

Animals↗

Trypanosoma cruzi in wild raccoons and opossums in North Carolina.

Trypanosoma cruzi was isolated from 1 of 12 (8.3%) opossums and 3 of 20 (15%) raccoons from the piedmont area of North Carolina. Although T. cruzi has been isolated previously from wild mammals in the southern United States, the present study is the first published report of naturally occurring T. cruzi infection of wild mammals in North Carolina. All 4 isolates were maintained successfully in axenic culture and in murine fibroblasts. In addition, intraperitoneal injection of 1 x 10(6) culture forms of 1 of the opossum isolates into C3H mice resulted in low but detectable parasitemias as early as day 6 of infection. These mice resolved parasitemia and survived infection. Intraperitoneal injection of 1 x 10(6) culture forms of a raccoon isolate resulted in the death of 3 out of 4 mice. Surprisingly, parasitemias were never detected in the peripheral blood of these mice. Infection of murine fibroblasts in vitro resulted in the presence of intracellular amastigote stages characteristic of T. cruzi.

Animals↗

Axon-regulated expression of a Schwann cell transcript that is homologous to a 'growth arrest-specific' gene.

We have isolated a 1.8 kb cDNA (pCD25) clone that encodes a transcript that is differentially expressed during nerve regeneration. Nucleotide sequence comparison indicates 89.6% homology with the recently identified murine 'growth arrest-specific' gene gas3. The open reading frame of the CD25 transcript predicts a 17 kDa protein with four putative transmembrane regions. Steady-state levels of the CD25 mRNA are very much higher in sciatic nerve than in other tissues, and expression in sciatic nerve is confined to Schwann cells. Following nerve injury, the transcript levels rapidly declined in nerve segments distal to the site of lesion, but recovered upon nerve regeneration. In contrast, in distal stumps of permanently transected nerves, the mRNA level remained very low. Substantial amounts of the mRNA could be reinduced only upon anastomosis of these interrupted nerve stumps. Re-induction of the mRNA followed the elongation of regenerating axons through the distal nerve segment. Our data indicate that axons regulate expression of the CD25 mRNA in Schwann cells, and suggest that the CD25 protein functions during Schwann cell growth and differentiation.

Amino Acid Sequence↗

A cluster of four genes selectively expressed in the male germ line of Drosophila melanogaster.

The gene Mst87F is exclusively expressed in the male germ line and is subject to translational regulation. The Mst87F mRNA is transcribed in the primary spermatocytes, stored for three days and then subsequently translated in the post-elongation period of spermiogenesis. Here we report on the isolation of a cluster of four small genes closely related in structure and function to Mst87F. These genes are located at polytene band 84D on the right arm of chromosome three and are named Mst84Da, Mst84Db, Mst84Dc and Mst84Dd. All four genes encode putative proteins composed primarily of a repetitive motif of cysteine-glycine-proline. The genes are exclusively expressed in the male germ line. The poly(A) tail of the Mst84D mRNAs increases in length at day three of pupal development, the time at which a similar change in Mst87F mRNA and translation has been shown to begin. In addition we have identified a conserved 12 base pair element within the 5' untranslated region (UTR) of each gene which is also found at an identical position in Mst87F and which has been demonstrated to be the structural element for translational control of Mst87F expression (Schäfer et al., 1990 EMBO J. 9, 4519-4525). We have mapped the gene cluster to a small deletion associated with a rotund mutation at 84D. Although flies with a homozygous deletion of the cluster still produce motile sperm, electron microscopic examination revealed numerous malformations in the ultrastructure of the axoneme resulting in a drastic reduction of motile sperm.

Amino Acid Sequence↗

The gene encoding the transcription factor SCIP has features of an expressed retroposon.

SCIP is a POU domain transcription factor expressed by glial progenitor cells in the peripheral and central nervous systems (dividing Schwann cells and O-2A cells, respectively), where it appears to act as a repressor of myelin-specific genes. We have isolated genomic clones encoding the rat SCIP gene. Comparison of the structure of these clones with genomic Southern blots and SCIP cDNAs demonstrates that SCIP is encoded in a single-copy, intronless gene that has the general features of an expressed retroposon. This gene contributes to an extended CpG island. It is transcribed to produce a 3.1-kb mRNA that encodes a 451-amino-acid protein with a predicted molecular mass of 45 kDa. Immunopurified SCIP antibodies specifically recognize a nuclear protein of this size in cultured proliferating Schwann cells, and gel shift analyses demonstrate that this protein is the predominant octamer-binding protein in these cells.

Animals↗

Growth factors and transcription factors in oligodendrocyte development.

O-2A progenitor cells, the precursors of oligodendrocytes in the central nervous system (CNS), probably originate in the subventricular germinal zones of the developing CNS, and subsequently migrate away from there to populate the rest of the CNS with oligodendrocytes. We are trying to understand how the O-2A progenitor cells interact with their changing environment as they migrate, and how this influences each stage of their development into mature, myelinating oligodendrocytes. In this article we summarize evidence that platelet-derived growth factor (PDGF) is important for stimulating O-2A progenitor cell proliferation in vivo, and describe our efforts to map the distribution of PDGF and its receptors in the developing rat CNS by in situ hybridization and immunohistochemistry. These studies suggest that, in the CNS, PDGF alpha-receptor subunits may be restricted to O-2A lineage cells that have started to migrate away from the subventricular zones towards their final destinations. Many neurons express the A and/or B chains of PDGF, and astrocytes express the A chain, but it is not yet clear which of these cell types might be the major source of PDGF for O-2A lineage cells in vivo. O-2A progenitor cells can be purified and maintained in a proliferating state in vitro by culturing in the presence of PDGF and bFGF. Under these conditions, the POU transcription factor SCIP/Tst-1 is expressed at a high level; when oligodendrocyte differentiation is initiated by withdrawing the growth factors, SCIP/Tst-1 mRNA is rapidly down-regulated, followed by a decline in SCIP/Tst-1 protein and sequential activation of myelin-specific genes.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Dendritic accessory cells derived from rat bone marrow precursors under chemically defined conditions in vitro belong to the myeloid lineage.

Serum-free conditions have been developed to differentiate dendritic cells from a non-adherent fraction of rat bone marrow precursors by action of the multipotential and macrophage colony-stimulating factors further supplemented with linoleic acid, vitamin E, and vitamin D3. Accessory activity was demonstrated by the high potency of the dendritic cells to stimulate autologous T cell proliferation, whereas such cells were negative for Fc receptor-dependent phagocytosis, a characteristic macrophage feature. While the dendritic cells were weakly positive for alpha-naphtylbutyrate esterase, they strongly expressed RT.1 class II antigens. Apparently, these cells represent a more differentiated phenotype since they expressed the nuclear A/C lamins. By addition of serum to the cultures, the dendritic cells developed into macrophages, which were also lamin A/C-positive as well as strongly positive for alpha-naphtylbutyrate esterase. Thus, these dendritic cells belong to the myeloid lineage, and it appears as if serum factor(s) control differentiation at a mature level. Suitable conditions could also be established for large-scale cultures of dendritic cells, which would be useful for applications requiring higher numbers of cells.

Animals↗

Expression and activity of the POU transcription factor SCIP.

POU proteins have been shown to transcriptionally active cell-specific genes and to participate in the determination of cell fate. It is therefore thought that these proteins function in development through the stable activation of genes that define specific developmental pathways. Evidence is provided here for an alternative mode of action. The primary structure of SCIP, a POU protein expressed by developing Schwann cells of the peripheral nervous system, was deduced and SCIP activity was studied. Both in normal development and in response to nerve transection, SCIP expression was transiently activated only during the period of rapid cell division that separates the premyelinating and myelinating phases of Schwann cell differentiation. In cotransfection assays, SCIP acted as a transcriptional repressor of myelin-specific genes.

Amino Acid Sequence↗