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Biomedical subjects

J Klug

Publications and source records attributed to J Klug.

At least 19 recordsLinked to original sources

Development of testicular inflammation in the rat involves activation of proteinase-activated receptor-2.

Mast cells are involved in early events crucial to inflammation and autoimmune disease. Recently, proteinase-activated receptor-2 (PAR(2)), a G-protein coupled receptor important to injury responses, was shown to be activated by mast cell tryptase. To investigate whether mast cells and PAR(2) are involved in the development and/or aggravation of testicular inflammation, we studied acute and chronic inflammatory models in the rat. In normal testes, PAR(2) was detected immunohistochemically in macrophages, in peritubular cells (PTCs) and in spermatid acrosomes. In experimentally induced autoimmune orchitis (EAO), PAR(2) was strongly upregulated in macrophages and peritubular-like cells, forming concentric layers around granulomas. Mast cells increased 10-fold in number, were more widely distributed throughout the interstitial tissue, and were partially degranulated. Isolated PTCs expressed functional PAR(2), responded to PAR(2) activation by phosphorylating extracellular signal-regulated kinases 1/2 (ERK1/2) and activating protein kinase c, and increased intracellular Ca(2+) concentrations as well as monocyte chemoattractant protein-1 (MCP-1), transforming growth factor beta(2) (TGFbeta(2)), and cyclooxygenase-2 (COX-2) mRNA expression. Expression of these inflammatory mediators, together with iNOS, also increased significantly in testes 50 days after EAO. In vivo, expression of cytokines and inflammatory mediators was upregulated after injection of recombinant tryptase (MCP-1, TGFbeta(2), and COX-2) and a specific PAR(2) peptide agonist (MCP-1, TGFbeta(2)) in the testis after 5 h. These results suggest that PAR(2) activation elicited on PTCs by mast cell tryptase contributes to acute testicular inflammation and that this pathogenetic mechanism may also play a role in autoimmune orchitis.

Acute Disease↗

Measurement of the absolute n p scattering differential cross section at 194 MeV.

We describe a double-scattering experiment with a novel tagged neutron beam to measure differential cross sections for np backscattering to better than +/-2% absolute precision. The measurement focuses on angles and energies where the cross section magnitude and angle dependence constrain the charged pion-nucleon coupling constant, but existing data show serious discrepancies among themselves and with energy-dependent partial-wave analyses. The present results are in good accord with the partial-wave analyses, but deviate systematically from other recent measurements.

Journal Article↗

All human genes of the uteroglobin family are localized on chromosome 11q12.2 and form a dense cluster.

Rabbit uteroglobin is the founder member of a family of mammalian proteins that has expanded to more than 20 members within the last few years. All members are small, secretory, rarely glycosylated dimeric proteins with unclear physiological functions and are mainly expressed in mucosal tissues. A phylogenetic analysis shows that the family can be grouped into five subfamilies, A to E. Subfamily A contains rabbit uteroglobin and its orthologues from various species; most of these have been described to form antiparallel homodimers via two intermolecular disulfide bonds. All other subfamily members contain a third conserved cysteine and, from existing biochemical data, it can be predicted that a member of subfamily B or C will likely form heterodimers with a partner from subfamily E or D, respectively. Besides the mentioned cysteines, only one central lysine is conserved in all family members. In the known uteroglobin structures, this lysine forms an exposed salt bridge with an aspartate side chain, which is conserved in almost all sequences. Using radiation hybrid mapping and P1 clone analysis and utilizing data from the human genome project, we show that all known five human family members (Clara cell 10-kDa protein, lipophilins A and B, lacryglobin, mammaglobin) and a new member, we call lymphoglobin, are localized on chromosome 11q12.2 in a dense cluster spanning not more than approximately 400 kbp.

Amino Acid Sequence↗

Insufficiency fracture of the femoral head: MR imaging in three patients.

OBJECTIVE: The purpose of this report is to describe three patients in whom a presumptive diagnosis of insufficiency fracture of the femoral head was made on the basis of clinical and MR imaging findings. CONCLUSION: Femoral head insufficiency fracture should be included in the differential diagnosis of hip pain in the osteopenic elderly patient.

Aged↗

Binding of YY1 to a site overlapping a weak TATA box is essential for transcription from the uteroglobin promoter in endometrial cells.

The gene for rabbit uteroglobin codes for a small calcium-, steroid-, and biphenyl metabolite-binding homodimeric protein which is expressed in a variety of epithelial cell types such as Clara cells (lung) and the glandular and luminal cells of the endometrium. One important region mediating its efficient transcription in a human endometrium-derived cell line, Ishikawa, is centered around a noncanonical TATA box. Two factors, TATA core factor (TCF), expressed in cell lines derived from uteroglobin-expressing tissues, and the ubiquitously expressed TATA palindrome factor, bind to the DNA major groove at two adjacent sites within this region. Here, we report the identification of the TATA palindrome factor as the transcription/initiation factor YY1 by microsequencing of the biochemically purified factor from HeLa cells. The binding site for YY1 within the uteroglobin gene is unique in its sequence and its location overlapping a weak TATA box (TACA). Binding of YY1 was required for efficient transcription in TCF-positive Ishikawa cells, which responded only weakly to a change of TACA to TATA, although in vitro binding affinity for the TATA-box-binding protein increased by 1 order of magnitude. In contrast, in CV-1 cells, lacking TCF, binding of YY1 was not required for transcription in the context of a wild-type TACA box, whereas a change from TACA to TATA led to significantly increased reporter gene expression. DNA binding data exclude a role of YY1 in stabilizing the interaction of the TATA-box-binding protein with the uteroglobin promoter. We conclude that cell lines derived from uteroglobin-expressing tissues overcome the weak TATA box with the help of auxiliary factors, one of them being YY1.

Adenoviridae↗

Identification of cyclophilin A from human decidual and placental tissue in the first trimester of pregnancy.

The protein patterns of tissue homogenates from human decidua and placenta of first trimester pregnancies were investigated. Particular attention was paid to the low molecular weight components of these tissues, since substantial evidence has accumulated that some of these smaller proteins show a characteristic cyclic and pregnancy expression. Two specific bands were purified from homogenates of first trimester decidua and placenta using gel filtration and anion exchange chromatography. These bands were separated by gel electrophoresis and blotting onto polyvinylidendifluoride membrane. Partial amino acid sequencing of both proteins revealed sequences identical to human cyclophilin A. One protein was sequenced V-N-P-T-V-F-F-D-I-A-V-D-G-E-P-L-G-R-(X)-S-F-E-L-F-A-D-K-V-P and identified as the 17 kDa isoform of cyclophilin A. The other protein was sequenced V-N-P-T-V-F-F-D-I-A and identified as the 18 kDa isoform of cyclophilin A.

Amino Acid Isomerases↗

Two distinct factors bind to the rabbit uteroglobin TATA-box region and are required for efficient transcription.

The rabbit uteroglobin gene is expressed in a variety of epithelial cell types like the lung Clara cells and the glandular and luminal epithelial cells of the endometrium. Expression in Clara cells is on a high constitutive level, whereas expression in the rabbit endometrium is under tight hormonal control. One important element of the rabbit uteroglobin gene mediating its efficient transcription in two epithelial cell lines from human endometrium (Ishikawa) and lung (NCI-H441) is its noncanonical TATA box (TACA). Here, we show that two factors (TATA core factor [TCF] and TATA palindrome factor [TPF]) different from the TATA-box binding protein bind to the DNA major groove at two adjacent sites within the uteroglobin TATA-box region and that one of them (TCF) is specifically expressed in cell lines derived from uteroglobin-expressing tissues. The binding sites for TCF and TPF, respectively, are both required for efficient transcription in Ishikawa and NCI-H441 cells. Mutation of the TACA box, which we show is a poor TATA box in functional terms, to a canonical TATA motif does not affect TCF and TPF binding. Therefore, we suggest that the function of the unusual cytosine could be to reduce rabbit uteroglobin expression in cells lacking TCF and that the interaction of TATA-box binding protein with the weak TACA site is facilitated in TCF- and TPF-positive cells.

Animals↗

Human CC10, the homologue of rabbit uteroglobin: genomic cloning, chromosomal localization and expression in endometrial cell lines.

Human and rat cDNAs to Clara Cell 10 kDa protein (CC10) have been previously isolated. Comparison of the amino acid sequences showed that CC10 is homologous to rabbit uteroglobin. Here we present further evidence that human CC10 is the human counterpart of rabbit uteroglobin. We have isolated the gene and have mapped its genomic localization to chromosome 11q11-qter. Sequence analysis of the 5'-flanking region reveals that the homology between the human and the rabbit gene starts at the first exon/intron boundary and extends up to -1.4 kb. A second region of 0.74 kb from -1.77 to -2.51 kb in the human 5'-flanking gene region is homologous to rabbit sequences that include four progesterone receptor binding sites which have been implicated in progesterone regulation of rabbit uteroglobin gene expression in endometrium. Sequence alignment of this region on the nucleotide level shows that only two weak progesterone receptor binding sites are partially conserved. In addition, close inspection of the human and rabbit promoters reveals that the estrogen responsive element and two recently identified cis elements of the rabbit promoter located between -177 and -258 bp are also absent in the human uteroglobin promoter. Despite these differences in the 5'-flanking regions of the genes, we report that the human uteroglobin mRNA is expressed in a human cell line of endometrial origin indicating that human uteroglobin is expressed in the uterus like its rabbit homologue. Thus, it appears that human uteroglobin is not only a marker for lung Clara cells but also an endometrial differentiation marker.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenocarcinoma↗

Sequence analysis of the 5' flanking region of the human estrogen receptor gene.

We present the sequence of 2770 nucleotides of 5' flanking sequence of the human estrogen receptor (hER) gene. The positions of potential binding sites for a number of trans-acting factors including Sp1, OTF-1, INR, TATA and CAAT box factors as well as several half palindromic hormone responsive elements (HREs) have been mapped by comparison with the consensus binding sequences. A long alternating purine/pyrimidine (APP) tract which has the potential for structural diversity as indicated by site-specific cleavage with S1 nuclease is another feature of this region. The organization of this promoter region is compared to that of other cloned members of this family. The potential roles that these sequences may play in the transcriptional regulation of this gene are discussed.

Base Composition↗

Elements of the rabbit uteroglobin promoter mediating its transcription in epithelial cells from the endometrium and lung.

The rabbit uteroglobin gene is specifically expressed in certain epithelial cells of ontogenetically unrelated origin. In the endometrium, expression is restricted to the glandular and luminal epithelium and is inducible by progesterone and estradiol. In the lung, Clara cells lining the bronchiolar epithelium show constitutive expression of uteroglobin, which is modulated by glucocorticoids. To explore the molecular basis for this cell type specificity, we have transiently transfected the uteroglobin promoter region fused to the chloramphenicol acetyl transferase gene (CAT gene) in the endometrial cell line Ishikawa; in the human lung cell line NCI-H441, which shows morphological Clara cell characteristics; in HeLa cells; and in three fibroblast cell lines. The uteroglobin promoter efficiently drives expression of the CAT gene in Ishikawa and NCI-H441 cells, but not in HeLa and fibroblast cells. To identify the responsible elements we have analyzed progressive promoter 5'-deletion mutants and randomly generated linker scanning mutants spanning the sequence from -258 to -14 of the uteroglobin promoter. Transfection experiments reveal seven mutation-sensitive regions located around -30, -70, -95, -130, -190, -230, and -255. Several mutants display strong cell type-specific phenotypes. Most significantly, the integrity of the region around -190 is essential for full CAT gene expression in Ishikawa cells, but not in NCI-H441 cells.

Animals↗

Novel upstream elements and the TATA-box region mediate preferential transcription from the uteroglobin promoter in endometrial cells.

To understand the mechanisms responsible for endometrium-specific expression of the uteroglobin gene, we have compared transcription from the uteroglobin promoter in a human endometrial cell line (Ishikawa) and in HeLa cells. In transient transfection experiments and in nuclear extracts, sequences from -395 to +14 of the uteroglobin gene are able to promote transcription of a reporter gene more efficiently in Ishikawa cells than in HeLa cells relative to the RSV or the SV40 early promoter. Analysis of progressive 5'-deletion mutants identifies three promoter regions, -258/-220, -205/-177, and -96/-35, that are important for preferential transcription in endometrial cells. DNase I footprinting experiments with nuclear extracts from Ishikawa and HeLa cells reveal a series of defined protections overlapping these regions. The relative intensity of individual protections differs between the two cell lines. Oligonucleotide competition experiments suggest that similar factor(s) bind(s) to the two relevant upstream regions of the promoter that share no homology to known regulatory elements. A protection over the TATA-box is detected only with extracts from Ishikawa cells. Band shift experiments show that an Ishikawa-specific factor binds to sequences overlapping the TATA-box region that are partially conserved in other endometrium-expressed genes. We propose that novel transcription factors mediate endometrium-specific expression of the uteroglobin gene in conjunction with a tissue-specific factor that binds to the TATA-box region.

Base Sequence↗

Evidence for a previously unidentified upstream exon in the human oestrogen receptor gene.

The presence of a previously unidentified exon upstream of the originally described human oestrogen receptor (hOR) gene is demonstrated. This is shown to be spliced to the 5' untranslated region of the previously designated exon I. The resulting genomic structure of the human gene is thus in agreement with the structure of the mouse OR gene and highlights the conservation of an 18 amino acid upstream open-reading frame formed from the above splicing event. Taken in conjunction with previous publications this would suggest that the hOR gene is a complex transcriptional unit that contains two promoters.

Amino Acid Sequence↗

[Psychosocial and biological correlates of panic attacks and panic syndrome].

The definition of a separate nosological entity "panic disorder" in the Diagnostic and Statistical Manual of Mental Disorders, 3rd revision (DSM III) of the American Psychiatric Association triggered a flood of empirical research into this disorder. In this article the literature is surveyed to find out to what extent panic attacks and panic disorder bear specific relationships to measurable variables from the psychosocial and biological spheres. The investigated psychosocial variables are: experiences of separation in childhood; separation anxieties in childhood; sociodemographic correlates as they are known from epidemiological studies; personality factors; life events as possible triggering events of periods with panic attacks; and, finally, socalled "cognitive correlates". The results obtained in this field are just as inhomogeneous as they continue to be in the sphere of biological variables. Of these, the following factors are discussed: genetic factors; neurological and psycho-physiological correlates; the problem of mitral valve prolapse; endocrinal correlates and neurotransmitters. Present findings do not supply conclusive evidence either for or against separation of panic attacks from free-floating anxiety. The relationship between panic attacks and depressive disorders is equally unclear if judged on the basis of the results from empirical research which are far from uniform.

Anxiety Disorders↗

Detection of a new Msp I restriction fragment length polymorphism in the apolipoprotein A-I gene.

We report the existence of a Msp I restriction fragment length polymorphism in the first intron of the apolipoprotein A-I gene that is different from the one described by Seilhamer et al. (DNA 3, 309 (1984)). Size comparison of the newly discovered Msp I fragment with a restriction map of the apolipoprotein A-I gene revealed that most likely the cutting site at the 5'-end of the normally seen 673 bp fragment is lost giving rise to the observed 719 bp Msp I fragment. Based on analyses of 136 DNAs of healthy and non-related caucasians the allelic frequency was determined to be 0.06. The observed Msp I genotype frequencies are in Hardy-Weinberg equilibrium.

Apolipoprotein A-I↗