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Biomedical subjects

R Klemenz

Publications and source records attributed to R Klemenz.

At least 37 records · Page 2Linked to original sources

Cooperative interactions of AP-1 and basic helix-loop-helix transcription factors regulate T1 gene expression.

The T1 gene is a murine, delayed early serum-responsive gene that encodes glycoproteins of the interleukin-1 receptor (IL-1R) family. Transcription of the T1 gene leads to production of two mRNAs that encode a transmembrane protein, which is highly similar to the type-1 IL-1R, and a secreted protein, which consists solely of the extracellular part. Fibroblasts, in contrast to mast cells, express predominantly the shorter form of the protein, and several mitogens cause strong, transient induction of the T1 gene in these cells. Here we describe the identification of a 148 bp enhancer element that is positioned 3.6 kb upstream of the transcription initiation site. A TPA-responsive element (TRE) and three identical E-boxes are located within this sequence. Introduced point mutations confirmed the necessity of these sites for full T1 promoter activity. The TRE and the distal E-box are absolutely indispensable for promoter function, whereas the two proximal E-boxes contribute less to promoter strength. In vitro the three E-boxes are bound by different protein complexes.

3T3 Cells↗

Glucocorticoids regulate the expression of the stressprotein alpha B-crystallin.

alpha B-crystallin is a major component of the eye lens but is also found in many extralenticular tissues. In established fibroblasts it is synthesized in response to stress such as hyperthermia. Here we report that the treatment of NIH3T3 fibroblasts with the synthetic glucocorticoid hormone dexamethasone resulted in the accumulation of substantial amounts of alpha B-crystallin, alpha B-crystallin mRNA accumulated slowly and over a period of many days in response to prolonged hormone treatment. alpha B-crystallin promoter-reporter constructs were hormone responsive. A putative glucocorticoid response element (GRE) within the analysed promoter region could bind the glucocorticoid receptor as revealed from in vitro footprint analysis but is not involved in the hormone-mediated gene activation. Deletions of 5' flanking regions to position -465 relative to the transcription start allowed for full hormone responsiveness. A deletion from -465 to -389 abolish hormone-mediated gene induction. No sequence element closely resembling a classical GRE is present within that hormone-responsive region.

3T3 Cells↗

Transcription of the interleukin-1 receptor-related T1 gene is initiated at different promoters in mast cells and fibroblasts.

The delayed early serum response gene T1 encodes glycoproteins of the immunoglobulin superfamily with significant sequence similarity to the type 1 interleukin-1 receptor. The T1 gene is transcribed in fibroblasts into an abundant 2.7-kilobase (kb) and a rare 5-kb mRNA in response to proliferation-inducing stimuli. It gives predominantly rise to the longer transcript in the bone marrow of adult mice and in cultured mast cells. Alternative 3' processing is responsible for the two mRNA forms. The short transcript encodes a secreted protein with marked similarity to the extracellular domain of the interleukin-1 receptor, whereas the long mRNA is translated into a protein with an additional putative transmembrane and an intracellular domain. Here we demonstrate that T1 transcription in mast cells and fibroblasts initiates at two different start sites which are 10.5 kb apart. The alternative first exons are both spliced to exon 2 which contains the translation start site. Northern blot analysis and primer extension experiments revealed that promoter usage is strictly cell type-specific. T1 transcription in mast cells is initiated exclusively at the distal promoter, whereas in fibroblasts both the short and the long T1 mRNA start at the proximal promoter. Two GATA-1 elements were identified in the 5'-flanking region of the mast cell-specific distal exon 1.

3T3 Cells↗

Expression of ril, a novel LIM domain gene, is down-regulated in Hras-transformed cells and restored in phenotypic revertants.

Several candidate genes involved in the maintenance of normal growth control (H-rev) were identified by differential expression cloning on the assumption that they are expressed in phenotypically normal rat cells and repressed in closely related H-ras transformed cells. Previously the genes coding for lysyl oxidase (H-rev142) and for an 18K-protein of unknown function (H-rev107) were recovered as cDNAs by subtraction cloning. Here we describe the identification and expression pattern of ril, a novel member of the heterogeneous group of genes encoding proteins with LIM/double zinc finger domains. The ril gene is expressed in normal fibroblasts and down-regulated in H-ras-transformed derivatives. Expression is restored in several independent phenotypic revertants derived from H-ras transformed cells. The predicted protein product of ril harbors a single LIM domain but lacks a homeodomain. The ril gene is highly conserved during evolution and is transcribed in various normal cell lines. Northern blot analysis and in situ hybridization studies showed that ril is expressed in meiotic spermatocytes, in somites of developing mice, and in a wide variety of tissues of adult mice.

Amino Acid Sequence↗

Constitutive expression of human hsp27, Drosophila hsp27, or human alpha B-crystallin confers resistance to TNF- and oxidative stress-induced cytotoxicity in stably transfected murine L929 fibroblasts.

Hyperthermia and other forms of stress that induce and/or stimulate heat shock or stress protein (hsp) expression enhance the cellular resistance to TNF-alpha. One of the stress proteins, hsp70, has been shown to participate in the molecular mechanisms that regulate this phenomenon. Here we have tested the capability of small hsps from different species to protect against this cytokine in the TNF-sensitive L929 fibrosarcoma cells. The genes that encode human hsp27, Drosophila hsp27, and human alpha B-crystallin were placed under the control of the constitutive SV40 early promoter and were stably introduced into L929 cells. We observed that all clones that constitutively expressed the exogenous small hsps exhibited a strong protection against TNF-mediated killing, which was proportional to the level of the expressed proteins. This phenomenon did not correlate with altered binding of TNF-alpha to its receptors, and no protection was observed as a consequence of the transfection or selection procedures. In addition, the overexpression of the exogenous small hsps did not modify the level of the endogenous stress proteins in the transfected clones. Remarkably, the small hsps also induced a protection against oxidative stresses generated by either hydrogen peroxide or menadione. In L929 cells, the killing induced by TNF-alpha and oxidative stress is thought to occur through the accumulation of intracellular reactive oxygen intermediates. Hence, our data suggest that the small hsps from different species share the property to protect L929 cells against the deleterious effects of reactive oxygen intermediates generated by either TNF-alpha or oxidative stress.

Animals↗

Growth factor-mediated induction of the delayed early gene T1 depends on a 12-O-tetradecanoylphorbol 13-acetate-responsive element located 3.6 kb upstream of the transcription initiation site.

The T1 gene is a delayed early serum-responsive gene which encodes a secreted glycoprotein of the immunoglobulin superfamily. We have addressed the question of what promoter elements are needed to allow for growth factor-mediated T1 gene expression. By deletion analysis we have identified a 448-bp DNA region 3.5-4.0 kb upstream of the transcription start site which can confer serum inducibility onto a foreign minimal promoter. Within this sequence there is a 12-O-tetradecanoylphorbol 13-acetate (TPA)-responsive element (TRE) which is essential for T1 promoter induction in response to the forced expression of the transcription factor AP-1 in NIH 3T3 fibroblasts and F9 teratocarcinoma cells. This TRE is crucial for growth factor-mediated T1 gene expression. A point mutation within this TRE attenuated serum inducibility. Two E boxes are positioned 6 and 40 bp downstream of the TRE. Point mutations within these sequence motifs reduced basal T1 promoter activity and serum inducibility. Additional, as-yet-unidentified, promoter elements within the 448-bp serum-responsive region are required for T1 gene activation in response to growth stimulation.

3T3 Cells↗

T1 is a c-Fos- and FosB-responsive gene which is induced by growth factors through multiple signal transduction pathways.

Stimulation of quiescent cells with growth factors triggers changes in gene expression through multiple signal transduction pathways. One of these changes in Swiss 3T3 cells is the strong accumulation of T1 mRNA which encodes a secreted glycoprotein of the immunoglobulin superfamily. Proliferating cells continued to express T1 mRNA at a lower level, whereas growth arrest induced either by serum deprivation or by contact inhibition was paralleled by the disappearance of the T1 mRNA. T1 mRNA synthesis in response to serum and platelet-derived growth factor stimulation is mediated through protein kinase C-dependent and protein kinase C-independent pathways. Activation of protein kinase A also led to T1 gene expression. Ongoing protein synthesis is a prerequisite for T1 gene induction by growth factors which defines T1 as a delayed early serum-responsive gene. The ability of the immediate early transcription factors c-Fos and FosB to directly induce the T1 gene was demonstrated in a conditional expression system in the absence of protein synthesis. Furthermore, all known inducers of the T1 gene also lead to c-fos gene activation. Thus we show that the T1 gene is regulated by signals which are transduced through multiple pathways and provide evidence that the Fos proteins play an important role in the integration of these pathways.

3T3 Cells↗

Alpha B crystallin expression in response to hormone, oncogenes and stress.

alpha B crystallin is one of the major eye lens proteins and it is abundantly expressed in many non-lenticular tissues as well. The alpha B crystallin protein sequence is similar to that of small heat shock proteins and we could demonstrate that alpha B crystallin does indeed accumulate in response to heat shock and other forms of stress. Moreover, ectopic expression of alpha B crystallin establishes a state of thermotolerance. Glucocorticoid hormones activate the alpha B crystallin gene with a delayed kinetics. Induced expression of the Ha-ras oncogene accelerates hormone-mediated gene induction. A shorter promoter sequence is required for the ras supported hormone response. However, sustained Ha-ras oncogene expression attenuates glucocorticoid-triggered induction of the alpha B crystallin gene completely. Whereas the small heat shock protein Hsp27 is overexpressed in many human mammary carcinomas, we observed the frequent absence of alpha B crystallin in these tumors but not in the normal breast tissue. In contrast, overexpression of alpha B crystallin has been frequently observed in non-neuronal brain tumors.

Animals↗

Subtraction cloning of H-rev107, a gene specifically expressed in H-ras resistant fibroblasts.

We have isolated by subtractive hybridization a novel gene, called H-rev107, which is specifically expressed in a phenotypic revertant of H-ras transformed 208F rat fibroblasts. Apart from oncogene revertants, strong expression of H-rev107 was found in REF52 and EK-3 cells, two fibroblast lines resistant to transformation by activated H-ras oncogenes. In contrast, transformation-sensitive fibroblasts like 208F or NIH3T3 cells expressed only very little H-rev107 RNA. In H-ras or v-src transformed fibroblasts, H-rev107 RNA was undetectable. Introduction of the adenovirus E1A nuclear oncogene into ras-resistant REF52 cells abolished their transformation resistance and repressed the H-rev107 gene. H-rev107 encodes a protein with a molecular weight of 18 kDa without any structural similarity to known proteins. p18H-rev107 exists in two forms which can be distinguished by their electrophoretic mobility; one is localized predominantly in cell membranes, the other in the cytoplasm. In confluent contact-inhibited 208F cells, p18H-rev107 accumulated in cell membranes, while growth arrest induced by serum starvation did not induce H-rev107. In REF52, cell density had no influence on the expression or localization of p18H-rev107. Repression of the H-rev107 gene may be closely associated with the loss of density-dependent growth inhibition and with the expression of the neoplastic phenotype.

Adenovirus E1A Proteins↗

Expression of alpha B-crystallin in human brain tumors.

We have previously shown that alpha B-crystallin is a heat-shock protein which specifically accumulates in response to the expression of c-Ha-ras and v-mos oncogenes in mouse NIH 3T3 fibroblasts. Elevated levels of alpha B-crystallin mRNA or protein were shown to be associated with pathological conditions of the brain. Therefore, we have examined the expression of alpha B-crystallin in normal human brains and brain tumors by Western blot analysis. alpha B-crystallin is moderately expressed in adult but not fetal brain. Elevated levels of alpha B-crystallin expression are observed in glial tumors such as astrocytoma, glioblastoma multiforme, and oligodendroglioma. alpha B-crystallin in these tumors is predominately unphosphorylated. High amounts of accumulated alpha B-crystallin in astrocytic tumors are preferentially found in the more aggressive stages. Glioblastoma multiforme is exceptional in that high alpha B-crystallin expression is observed in only one half of the analyzed samples whereas no alpha B-crystallin could be detected in the other. These results indicate that alpha B-crystallin may be a useful biochemical marker for studying the pathogenesis of various human brain tumors.

Astrocytoma↗

Up-regulation of lysyl oxidase in spontaneous revertants of H-ras-transformed rat fibroblasts.

Neoplastic transformation mediated by ras oncogenes is associated with down-regulation of gene expression. We have constructed a subtracted complementary DNA library from preneoplastic rat 208F fibroblasts by hybridizing with mRNA from a ras-transformed subclone. One of the complementary DNA clones identified by this approach encodes the 3' end of lysyl oxidase, the homologue of the mouse ras recision gene. Expression of lysyl oxidase was almost completely down-regulated in two clones of H-ras-transformed 208F cells (FE-8 and FE-56). We isolated a set of spontaneous phenotypic revertants of FE-8 cells (designated FSR) by cloning at limiting dilution. FSR revertant clones expressed high levels of lysyl oxidase and H-ras mRNA but grew only poorly in semisolid agar medium as opposed to anchorage-independent parental FE-8 cells. We obtained subclones of FSR cells which displayed again the transformed morphology of FE-8 cells but required anchorage for growth and continued to express high levels of lysyl oxidase mRNA. Thus, expression of lysyl oxidase correlated with the suppression of anchorage-independent growth rather than with flat morphology. Lysyl oxidase might be a useful marker to distinguish between different aspects of reversion and transformation.

Algorithms↗

Cloning of the mouse hsp25 gene and an extremely conserved hsp25 pseudogene.

A genomic clone of the murine gene encoding the small heat-shock protein, Hsp25, was isolated. The coding region is interrupted by two introns of 128 bp and approximately 600 bp at identical positions as the human hsp27 gene. The 5' flanking regions of the mouse and human genes are very strongly conserved and contain several sequence motives for the transcription factors, HSF and Sp1. In the same screen we also isolated a hsp25 pseudogene. The sequence conservation between this pseudogene and hsp25 cDNA is very high (99%) indicating that this pseudogene emerged very recently.

Amino Acid Sequence↗

Suppression of ras-mediated transformation. Differential expression of genes encoding extracellular matrix proteins in normal, transformed and revertant cells.

A subtraction hybridization technique was used to identify genes specifically expressed in phenotypic revertants derived from cells transformed by the H-ras oncogene. The expression of genes coding for components of the extracellular matrix appears to be frequently down-regulated in transformed cells. Partial restoration is associated with the reexpression of the normal phenotype in revertants.

Animals↗

Expression of the murine small heat shock proteins hsp 25 and alpha B crystallin in the absence of stress.

Stress induces the synthesis of several large and small heat shock proteins (hsp's). Two related small hsp's, hsp25 and alpha B crystallin exist in mice. alpha B crystallin is an abundant protein in several tissues even in the absence of stress. Particularly high amounts accumulate in the eye lens. Here we show that hsp25 is likewise constitutively expressed in many normal adult tissues. In the absence of stress the protein is most abundant in the eye lens, heart, stomach, colon, lung, and bladder. The stress-independent expression pattern of the two small hsp's is distinct. In several tissues the amount of hsp25 exceeds that accumulating in NIH 3T3 fibroblasts in response to heat stress. hsp25, like alpha B crystallin, exists in a highly aggregated form in the eye lens. The expression of hsp25 and alpha B crystallin in normal tissues suggests an essential, but distinct function of the two related proteins under standard physiological conditions.

3T3 Cells↗

Alpha B-crystallin expression in mouse NIH 3T3 fibroblasts: glucocorticoid responsiveness and involvement in thermal protection.

alpha B-crystallin, a major soluble protein of vertebrate eye lenses, is a small heat shock protein which transiently accumulates in response to heat shock and other kinds of stress in mouse NIH 3T3 fibroblasts. Ectopic expression of an alpha B-crystallin cDNA clone renders NIH 3T3 cells thermoresistant. alpha B-crystallin accumulates in response to the synthetic glucocorticoid hormone dexamethasone. Dexamethasone-treated NIH 3T3 cells become thermoresistant to the same extent as they accumulate alpha B-crystallin. A cell clone in which alpha B-crystallin is superinduced upon heat shock acquires augmented thermotolerance. Expression of the ras oncogene causes a rapid but transient accumulation of alpha B-crystallin within 1 day. Later, sustained ras oncogene expression suppresses the dexamethasone-mediated alpha B-crystallin accumulation. Thus, oncogenic transformation triggered by the ras oncogene interferes with hormone-mediated accumulation of alpha B-crystallin and concomitant acquisition of thermoresistance. Other known heat shock proteins do not accumulate in response to ectopic alpha B-crystallin expression or to dexamethasone treatment. These results indicate that alpha B-crystallin can protect NIH 3T3 fibroblasts from thermal shock.

3T3 Cells↗

Oncogene-mediated effects on cellular gene expression.

The expression of oncogenes results in alterations of the morphology and growth properties of the affected cells. The oncogenes encode proteins which interfere with mitotic signal transduction pathways and ultimately cause changes in the pattern of gene expression. It must be the products of at least some of these oncoprotein-affected genes which catalyze the altered cell properties. The study of such genes should help our understanding of the biochemistry of malignant growth and transformed cell morphology. The molecular mechanisms which underlie the oncoprotein-mediated gene induction should lead to the elucidation of the signal transduction pathway on which the oncoproteins impinge.

Base Sequence↗

Alpha B-crystallin is a small heat shock protein.

Sequence similarity between alpha B-crystallin and small heat shock proteins (HSPs) has prompted us to investigate whether alpha B-crystallin expression is induced by heat shock. Indeed, accumulation of alpha B-crystallin was detected immunologically in NIH 3T3 cells after incubation at elevated temperatures and after addition of Cd2+ or sodium arsenite to these cells. Two-dimensional gel electrophoresis revealed identity between alpha B-crystallin from eye lenses and from heat-treated fibroblasts. The promoter of the alpha B-crystallin gene was fused to the bacterial chloramphenicol acetyltransferase gene and was shown to confer heat inducibility on this reporter gene in transient transfection assays. A perfect heat shock element within the promoter region is likely to mediate this response. Small HSPs and alpha B-crystallin were shown to share the following two physical properties: (i) they form supramolecular structures with sedimentation values around 17 S and (ii) they are associated with the nucleus at high temperatures and are localized in the cytoplasm under normal conditions. We conclude that alpha B-crystallin has to be considered a member of the class of small HSPs.

Animals↗

Alpha B crystallin accumulation is a specific response to Ha-ras and v-mos oncogene expression in mouse NIH 3T3 fibroblasts.

The conditional expression of the v-mos and Ha-ras(EJ) oncogenes in NIH 3T3 cells leads to the accumulation of a 23-kDa protein (p23) (R. Klemenz, S. Hoffmann, R. Jaggi, and A.-K. Werenskiold, Oncogene 4:799-803, 1989). We purified p23 to homogeneity and determined part of the amino acid sequence. The obtained sequence is identical with that of the eye lens protein alpha B crystallin. Northern (RNA) blot and Western immunoblot experiments were performed to demonstrate that alpha B crystallin mRNA and protein do indeed accumulate as a consequence of v-mos and Ha-ras oncogene expression. Comparison of cDNA clones obtained from the mRNA of eye lenses and of oncogene-expressing fibroblasts revealed identity between them. The major transcription initiation site of the alpha B crystallin gene in our experimental system was shown by primer extension experiments to be identical with the one used in eye epithelial cells. In addition, we identified a second minor initiation site 49 nucleotides further upstream. Serum growth factors did not stimulate alpha B crystallin expression in growth-arrested cells.

Amino Acid Sequence↗