Major histocompatibility complex class II antigen expression is suppressed by estradiol in cardiac allografts.
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Publications and source records attributed to H Lou.
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Soluble forms of herpes simplex virus (HSV) glycoprotein D (gD) block viral penetration. Likewise, most HSV strains are sensitive to gD-mediated interference by cells expressing gD. The mechanism of both forms of gD-mediated inhibition is thought to be at the receptor level. We analyzed the ability of different forms of soluble, truncated gD (gDt) to inhibit infection by different strains of HSV-1 and HSV-2. Strains that were resistant to gD-mediated interference were also resistant to inhibition by gDt, thereby suggesting a link between these two phenomena. Virion gD was the major viral determinant for resistance to inhibition by gDt. An insertion-deletion mutant, gD-1(delta 290-299t), had an enhanced inhibitory activity against most strains tested. The structure and function of gDt proteins derived from the inhibition-resistant viruses rid1 and ANG were analyzed. gD-1(ridlt) and gD-1(ANGt) had a potent inhibitory effect on plaque formation by wild-type strains of HSV but, surprisingly, little or no effect on their parental strains. As measured by quantitative enzyme-linked immunosorbent assay with a diverse panel of monoclonal antibodies, the antigenic structures of gD-1(rid1t) and gD-1(ANGt) were divergent from that of the wild type yet were similar to each other and to that of gD-1 (delta 290-299t). Thus, three different forms of gD have common antigenic changes that correlate with enhanced inhibitory activity against HSV. We conclude that inhibition of HSV infectivity by soluble gD is influenced by the antigenic conformation of the blocking gDt as well as the form of gD in the target virus.
Glycoprotein D (gD) is a structural component of the herpes simplex virus (HSV) envelope which is essential for virus entry into host cells. Chinese hamster ovary (CHO-K1) cells are one of the few cell types which are nonpermissive for the entry of many HSV strains. However, when these cells are transformed with the gene for the herpesvirus entry mediator (HVEM), the resulting cells, CHO-HVEM12, are permissive for many HSV strains, such as HSV-1(KOS). By virtue of its four cysteine-rich pseudorepeats, HVEM is a member of the tumor necrosis factor receptor superfamily of proteins. Recombinant forms of gD and HVEM, gD-1(306t) and HVEM(200t), respectively, were used to demonstrate a specific physical interaction between these two proteins. This interaction was dependent on native gD conformation but independent of its N-linked oligosaccharides, as expected from previous structure-function studies. Recombinant forms of gD derived from HSV-1(KOS)rid1 and HSV-1(ANG) did not bind to HVEM(200t), explaining the inability of these viruses to infect CHO-HVEM12 cells. A variant gD protein, gD-1(delta290-299t), showed enhanced binding to HVEM(200t) relative to the binding of gD-1(306t). Competition studies showed that gD-1(delta290-299t) and gD-1(306t) bound to the same region of HVEM(200t), suggesting that the differences in binding to HVEM are due to differences in affinity. These differences were also reflected in the ability of gD-1(delta290-299t) but not gD-1(306t) to block HSV type 1 infection of CHO-HVEM12 cells. By gel filtration chromatography, the complex between gD-1(delta290-299t) and HVEM(200t) had a molecular mass of 113 kDa and a molar ratio of 1:2. We conclude that HVEM interacts directly with gD, suggesting that HVEM is a receptor for virion gD and that the interaction between these proteins is a step in HSV entry into HVEM-expressing cells.
BACKGROUND: Accelerated coronary arteriosclerosis is a major complication in long-term survivors of cardiac transplantation. Estrogen prevents transplant arteriosclerosis in experimental cardiac and aortic allografts and may act by an immune mechanism. METHODS AND RESULTS: New Zealand White rabbits immunosuppressed with cyclosporine were recipients of cardiac allografts from Dutch Belted rabbits. The recipients received either estradiol or placebo daily until they were killed 6 weeks later. Histological cross sections of the cardiac allograft were used for quantification of major histocompatibility complex (MHC) class II antigen expression, T lymphocytes, and macrophages by immunohistochemistry using monoclonal antibodies. MHC class II antigen expression was not detectable in allograft coronary arteries from any of the estradiol-treated recipients, whereas this antigen expression was present in the allograft coronary arteries from all the placebo-treated recipients. Macrophage and lymphocyte infiltration of the allograft coronary artery myointima was significantly less frequent in the estradiol-treated group. Rejection was moderate but slightly less in the estradiol-treated group. These findings were associated with a 60% decrease in allograft coronary artery myointimal thickening (determined by morphometry) in the estradiol-treated compared with the placebo-treated group. CONCLUSIONS: Estradiol treatment of cardiac allograft recipients abolishes MHC class II antigen expression in the coronary arteries and decreases macrophage infiltration in all three layers of the vessel wall, whereas T-lymphocyte infiltration is decreased only in the myointima. These findings are associated with estradiol inhibition of myointimal proliferation. Thus, estradiol treatment may have a beneficial effect on graft arteriosclerosis through immune mechanisms.
Alternative processing of the pre-messenger RNA encoding calcitonin/calcitonin gene-related peptide (CT/CGRP) involves alternative inclusion of a 3'-terminal exon (exon 4) embedded within a six exon primary transcript. Expression of CT/CGRP in transgenic mice indicates that inclusion of exon 4 occurs in a wide variety of tissues, suggesting that the factors responsible for exon 4 inclusion are widely distributed. Inclusion of exon 4 requires an enhancer sequence located within the intron downstream of the poly(A) site of exon 4. Here we show that the intron enhancer activated in vitro polyadenylation cleavage of precursor RNAs containing the CT/CGRP exon 4 poly(A) site or heterologous poly(A) sites. To our knowledge this is the first example of an intron-located enhancer that facilitates polyadenylation. Within the enhancer sequence is a 5' splice site sequence immediately preceded by a pyrimidine tract. This 5' splice site sequence was required for enhanced polyadenylation and was recognized by both U1 small nuclear ribonucleoproteins (snRNPs) and alternative splicing factor/splicing factor 2 (ASF/SF2). Enhancement of polyadenylation required U1 RNA, suggesting that the 5' splice site sequence within the enhancer mediates enhancement via interaction with factors normally associated with functional 5' splice sites. Mutation of the polypyrimidine track of the enhancer also inhibited in vitro polyadenylation cleavage. Oligonucleotide competitions and UV cross-linking indicated that the enhancer pyrimidine track binds the polypyrimidine tract binding protein (PTB), but not U2 snRNP auxiliary factor (U2AF), and that binding of PTB was required for maximal enhancer-mediated polyadenylation. These results suggest that the enhancer binds known splicing factors, and that binding of these factors activates polyadenylation cleavage. Furthermore, these results suggest that regulation of alternative processing of CT/CGRP could occur at the level of polyadenylation, rather than splicing.
IGF I is an ubiquitous peptide that activates a membrane tyrosine kinase receptor and has autocrine/paracrine effects on vascular smooth muscle cells. Thrombin activates a G-protein coupled receptor and is also a mitogen for vascular smooth muscle cells. To assess the potential role of IGF I as a mediator of thrombin's effects, we characterized expression of IGF I and of its receptor on vascular smooth muscle cells exposed to thrombin. Thrombin dose-dependently decreased IGF I mRNA levels and caused a delayed decrease in IGF I secretion from vascular smooth muscle cells. This effect was mimicked by the hexapeptide SF-FLRN (that functions as a tethered ligand) and was inhibited by hirudin. In contrast, thrombin doubled IGF I receptor density on vascular smooth muscle cells, without altering binding affinity (Kd). An anti-IGF I antiserum markedly reduced thrombin-induced DNA synthesis, whereas nonimmune serum and an anti-fibroblast growth factor antibody were without effect. Cell counts confirmed these results. Downregulation of IGF I receptors by antisense phosphorothioate oligonucleotides likewise markedly inhibited thrombin-induced DNA synthesis. These data demonstrate that a functional IGF I-IGF I receptor pathway is essential for thrombin-induced mitogenic signaling and support the concept of cross talk between G-protein coupled and tyrosine kinase receptors.
Difficulties in the geometrical definition and measurement of resorption pits is a major problem for the quantitative analysis of bone resorption by isolated osteoclasts cultured on bone or dentin substrates. In this study we developed an enzyme-linked immunosorbent assay (ELISA) for quantification of bone resorption in vitro, which specifically quantifies type I collagen fragments released into the culture medium by the resorptive action of bone cells cultured on slices of bone or dentin. A consistently high correlation between the formation of resorption pits and the release of antigenic collagen fragments was observed for isolated rabbit osteoclasts seeded at various densities and cultured for various periods on bovine, elephant, and human substrates. In a further support of the osteoclastic nature of the collagenolytic effects, a high consistency between pit formation and collagenolysis was also observed when the rabbit bone cells were cultured in the presence of very differently acting but typical inhibitors of pit formation, i.e., the carbonic anhydrase inhibitor acetazolamide, the cysteine proteinase inhibitor epoxysuccinyl-L-leucylamido-(4-guanodino)butane (E-64), the phosphatidyl-inositol 3-kinase inhibitor wortmannin, and the bisphosphonate ibandronate (BM 21.0955). In conclusion, the ELISA represents a simple, precise, and objective way to dynamically monitor bone resorption in vitro through quantification of the collagenolytic activity of isolated osteoclasts.
From October, 1963 to December, 1992, 1,213 cases with cervical cancer were treated surgically in our hospital, among whom 922 cases, including 305 in stage 0, 123 in stage IA, 212 in stage IB, 265 in stage IIA, 17 in stage IIB, were operated before February, 1990. Among the 617 evaluable cases, excluding those in stage ), the five-year survival rates were 95.1% in stage IA, 91.0% in stage IB, 83.1% in stage IIA and 59.0% in stage IIB, respectively. The results showed that cervical tumour greater than 4 cm in diameter, invasion in muscular layers, lower degree of differentiation and pelvic lymph nodes metastasis would lead to worse therapeutic effects. The method of pelvic lymphadenectomy, pathological types, and ages of the patients, however, did not at all correlate with the survival rates of the patients. For those who have above-mentioned risk factors active adjuvant treatments are indicated.
By the method of UV second order derivative spectra, baicalin in contents in the Lanqin Oral Liquid were determined. Able to eliminate the influence of other constituents, this method is simple, rapid, sensitive and accurate.
BACKGROUND: L-arginine, a nitric oxide precursor, inhibits myointimal hyperplasia induced by balloon injury in native vessels. No studies are published on L-arginine effects on transplant arteriosclerosis. Insulin-like growth factor-I and interleukin-6 are mitogenic for smooth muscle cells and are involved in the cell-mediated and humoral immune response. METHODS: New Zealand White rabbits received cardiac allografts from Dutch Belted rabbits. All animals were fed a 0.5% cholesterol diet and received drinking water with (eight pairs) or without (eight pairs) L-arginine (2.5%) from day 7 to until they were killed at day 42. The recipients received cyclosporine A 10 mg/kg/day from transplantation until the time they were killed. RESULTS: Dietary L-arginine reduces myointimal hyperplasia in allograft coronary arteries from 44% +/- 4% in the non-L-arginine group to 16% +/- 2% (p < 0.002). The L-arginine significantly inhibits graft vascular cell proliferation induced by (1) insulin-like growth factor-I, from 328% +/- 66% to 154% +/- 28% (p < 0.05), (2) interleukin-6, from 376% +/- 97% to 138% +/- 30% (p < 0.05) and (3) the combination of insulin-like growth factor-I and interleukin-6 from 710% +/- 201% to 226% +/- 72% (p < 0.05). In recipient native aorta explants L-arginine also abolishes vascular cell proliferation stimulated by insulin-like growth factor-I and interleukin-6. The rejection grading is similar in the L-arginine (2.9 +/- 0.1) and control groups (2.7 +/- 0.1). Class II major histocompatibility antigen expression, T-lymphocyte, and macrophage infiltration in the cardiac allograft are unaffected by L-arginine. However, the diet significantly increased plasma nitric oxide from 15.4 +/- 2.3 to 45.1 +/- 11 mumol (p < 0.05). CONCLUSIONS: Dietary L-arginine attenuates transplant arteriosclerosis in vivo without affecting rejection. The protective effect seen in these experiments may relate to the generation of sufficient nitric oxide to prevent smooth muscle cell response to mitogens like insulin-like growth factor-I and interleukin-6.
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Blood-brain barrier permeability to phenylalanine and leucine in four patients with phenylketonuria and in four volunteers was measured five times by the double-indicator method at increasing plasma concentrations of phenylalanine. Based on the permeability-surface area product (PS) from blood to brain (PS1) and on plasma phenylalanine levels, Vmax and the apparent Km for phenylalanine were determined. Statistically significant relationships between plasma phenylalanine and PS1 were established in three out of four volunteers, the average Vmax value being 46.7 nmol/g per min and the apparent Km 0.328 mmol/L. Owing to saturation of the carrier, such a relationship could not be established in the patients. In phenylketonuria, PS1 for phenylalanine and leucine decreased significantly by 55% and 46%, respectively. Transport from brain back to blood, PS2, decreased significantly and cerebral large neutral amino acid net uptake was generally decreased in patients with phenylketonuria. In conclusion, the transport of L-phenylalanine across the human blood-brain barrier follows Michaelis-Menten kinetics. In phenylketonuria, brain permeability to large neutral amino acids is reduced by about 50% and net uptake appears decreased.
Regulation of calcitonin (CT)/calcitonin gene-related peptide (CGRP) RNA processing involves the use of alternative 3' terminal exons. In most tissues and cell lines, the CT terminal exon is recognized. In an attempt to define regulatory sequences involved in the utilization of the CT-specific terminal exon, we performed deletion and mutation analyses of a mini-gene construct that contains the CT terminal exon and mimics the CT processing choice in vivo. These studies identified a 127-nucleotide intron enhancer located approximately 150 nucleotides downstream of the CT exon poly(A) cleavage site that is required for recognition of the exon. The enhancer contains an essential and conserved 5' splice site sequence. Mutation of the splice site resulted in diminished utilization of the CT-specific terminal exon and increased skipping of the CT exon in both the mini-gene and in the natural CT/CGRP gene. Other components of the intron enhancer modified utilization of the CT-specific terminal exon and were necessary to prevent utilization of the 5' splice site within the intron enhancer as an actual splice site directing cryptic splicing. Conservation of the intron enhancer in three mammalian species suggests an important role for this intron element in the regulation of CT/CGRP processing and an expanded role for intronic 5' splice site sequences in the regulation of RNA processing.
Selenium (Se) concentration in serum, hair, normal cervix tissue or tissue of cervix cancer of 20 cases with cancer of uterine cervix (survey group), 21 with myoma of the uterus and 1 with cervical polys (control group), but also in rice, water and soil in the high and low incidence areas of cervical cancer was determined. The results showed that Se concentration in serum and cancer tissue of uterine cervix in patients with cancer of uterine cervix was significantly lower than that in the control group (P < 0.05), but no significant difference of Se concentration in hair was observed (P > 0.05), However Se concentration in rice, water and soil in the high incidence areas of cervical cancer was significantly lower than that in the low incidence areas (P < 0.05). Se deficiency may play a role in the carcinogenesis of uterine cervix.
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We previously characterized and cloned a unique human hepatic dihydrodiol dehydrogenase (DDH) that exhibits high affinity binding for bile acids (Stolz, A., Hammond, L., Lou, H., Takikawa, H., Ronk, M., and Shively, J. E. (1993) J. Biol. Chem. 268, 10448-10457). This hepatic dihydrodiol dehydrogenase demonstrates significant sequence homology with the cytosolic rat bile acid binder 3 alpha-hydroxysteroid dehydrogenase and other members of the monomeric oxidoreductase gene family. We now report the genomic organization and chromosomal localization of the human hepatic DDH in order to further define its physiological role and provide additional insight into the development of this gene family. The 15-kilobase human hepatic DDH gene was contained in an overlapping cosmid and lambda genomic clones and is composed of nine exons. A major transcriptional start site was determined to be 30 base pairs upstream from the ATG initiation methionine by both primer extension and S1 nuclease mapping studies. The human hepatic DDH gene was mapped by chromosomal in situ hybridization and analysis of human-mouse somatic cell hybrids to the tip of the short arm of chromosome 10 at p14. Strict conservation of the intron-exon junctions in the human hepatic DDH and two other members of the monomeric oxidoreductase gene family, aldose reductase and mouse major vas deferens protein suggests evolution from a common ancestral gene. Human hepatic DDH mRNA was identified in both human hepatoma Hep G2 and human lung carcinoma cell line NCI-H322 by RN'ase protection; thus, these cell lines will be useful in examining the regulation of the gene.
The primary transcript of the calcitonin (CT)/calcitonin gene-related peptide (CGRP) is alternatively spliced in a cell-specific fashion to produce CT in thyroid C cells and CGRP in neuronal cells. The key step in this regulatory process is the recognition and inclusion of exon 4 to produce CT mRNA or nonrecognition and exclusion of exon 4 to produce CGRP mRNA. To determine whether inclusion/exclusion of CT exon is regulated independently of its position, we created a series of minigene constructs containing decreasing amounts of CT gene sequence. A human glioblastoma cell line, T98G, was tested and used as a CT exon exclusion cell line, while HeLa cells were used as a CT exon inclusion cell line. CT exon inclusion/exclusion was regulated when either the relative position of exon 4 within the CT gene was changed or when the exon with flanking sequence was inserted into a completely heterologous gene. Our results demonstrate that CT exon functions as a unit in a position-independent fashion in regulating its own inclusion/exclusion. We believe that the heterologous fusion gene containing only exon 4 and part of its flanking intron sequences will be useful for further defining the sequence elements involved in the regulation of CT/CGRP splicing.
Polymerase chain reaction amplification of a cDNA derived from dog left ventricular myocardium, using primers specific for rat insulin-like growth factor I (IGFI), exons 3 and 6, yielded the dog clone, IGFI5.1. This clone includes the signal peptide sequence, the entire coding sequence for mature dog IGFI and the C-terminal extension sequence. By analogy with the organization of the rat and human IGFI genes which encode two extension peptides, we have termed this cDNA, dog IGFIa. The deduced amino acid sequence of mature dog IGFI is identical to that of human IGFI.