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Biomedical subjects

P Feng

Publications and source records attributed to P Feng.

At least 127 records · Page 7Linked to original sources

Preprothyrotropin-releasing hormone mRNA and TRH are present in the rat heart.

PreproTRH mRNA has been identified in rat cardiac tissues by Northern analyses and RNase protection assays with a specific rat 32P-TRH cRNA probe. Densitometric analyses revealed that atrial ppTRH mRNA concentrations were approximately five-fold greater than those of the ventricles. TRH concentrations (RIA), by contrast, were two-fold higher in ventricles. These data suggest that TRH and TRH mRNA are present in the rat heart, but their concentrations are dissociated, possibly because of differential post-transcriptional or post-translational processing. TRH is postulated to play an autocrine or paracrine role in cardiac physiology.

Animals↗

Identification of invasive Yersinia species using oligonucleotide probes.

Oligonucleotide probes directed to the inv and ail invasion genes of Yersinia species were used to analyse yersiniae and non-yersiniae isolates by colony hybridization. The INV-3 probe, targeted to the inv gene of Yersinia pseudotuberculosis, hybridized with all 48 HeLa cell-invasive Y. pseudotuberculosis isolates examined; the PF-13 probe, specific for the ail gene of Yersinia enterocolitica, identified all invasive strains (36 of 52) of Y. enterocolitica tested. Neither probe hybridized with non-yersinia isolates or other Yersinia species. Southern analyses of restriction enzyme-digested genomic DNA confirmed the specificity of both probes. INV-3 hybridized with a 4.5 kilobase (kb) Bam HI fragment known to carry the inv gene in Y. pseudotuberculosis. PF-13 was specific for a 1.2 kb Cla I-Ava I fragment in Y. enterocolitica that carried the ail locus. Reactivity with either probe correlated closely with the ability of Y. pseudotuberculosis and Y. enterocolitica isolates to invade HeLa cells.

Base Sequence↗

The effect of Lasso herbicide on human immune function as measured by in vitro assays.

Using in vitro assays, this study was undertaken to determine whether the components of Lasso herbicide formulation had an effect on the human immune system. Mononuclear cells from human peripheral blood were exposed to analytical alachlor, alachlor conjugated to human serum albumin or Lasso formulation over a concentration range from .01 microM-1.0 microM. The effects of the test materials on the following immunological functions were determined: lymphocyte proliferation induced by mitogen or antigen; antibody synthesis of IgG and IgM isotypes in pokeweed stimulated mononuclear cell cultures; cytotoxic T cell proliferation; lysis of target cells by natural killer cells and lymphokine activated killer cells. The data demonstrated that the test compounds had no significant, dose related effect on the function of immunocompetent cells. Hence, the data suggest that the components of the Lasso formulation have no effect on the human immune system.

Acetamides↗

Increased ferritin gene expression is both promoted by cAMP and a marker of growth arrest in rabbit vascular smooth muscle cells.

To facilitate an understanding of the molecular events associated with vascular smooth muscle cells (SMC) growth arrest and differentiation, we have isolated a number of cDNAs encoding mRNAs that are more abundantly expressed in high density growth-arrested SMC. From 40,000 recombinant plaques, we identified 6 cDNA clones which encoded genes more highly expressed in density-arrested SMC. DNA sequence analysis of a cDNA clone which hybridized to a 5.5-kilobase mRNA revealed a 96% sequence homology to the carboxyl-terminal propeptide region of the human alpha 2(I) collagen gene. Sequence analysis of 3 other cDNA clones which all recognized a 1-kilobase mRNA, indicated that they encode the ferritin H-chain subunit gene. The large increase in ferritin H-chain mRNA expression was both growth arrest and high density-dependent, but did not appear to be cell-cell contact-dependent. The increase in H-chain was partially accounted for by an increase in the transcription of this gene, but a post-transcriptional mechanism likely accounts for the majority of the observed difference in mRNA level. A greater than 3-fold higher expression of ferritin H-chain mRNA was also observed in BC3H1s (a nonfusing myogenic cell line) during the process of differentiation, but no elevation in ferritin H-chain mRNA was associated with density-dependent growth arrest in fibroblasts. Hemin (an intracellular iron donor) induced an elevation in ferritin H-chain mRNA expression in both preconfluent and post-confluent SMC, but was unable to elevate the preconfluent mRNA level to an untreated postconfluent level. In addition, deferoxamine (an intracellular iron chelator) was unable to reduce the ferritin mRNA level in postconfluent SMC. These results suggest that high density growth arrest-mediated elevation in ferritin H-chain occurs by a mechanism distinct from that induced by an increase in intracellular iron. cAMP was also a powerful modulator of the expression of ferritin H-chain gene since cells treated with forskolin or dibutyryl cAMP had a 5-7-fold higher level of ferritin H-chain mRNA. We propose that the increase in the ferritin H-chain mRNA level in postconfluent SMC may occur through a cAMP-dependent pathway and may be associated with an enhanced differentiated phenotype.

Amino Acid Sequence↗

Identification of uidA gene sequences in beta-D-glucuronidase-negative Escherichia coli.

A probe specific for the uidA gene of Escherichia coli hybridized with 112 of 116 E. coli isolates examined, including 31 beta-D-glucuronidase-negative and 12 enterohemorrhagic E. coli serotype O157:H7 isolates. Southern hybridizations confirmed the presence of a 900-bp HinfI fragment from the uidA gene in all isolates examined, suggesting that uidA gene sequences are present in most E. coli.

Base Sequence↗

Polymerase chain reaction identification of Vibrio vulnificus in artificially contaminated oysters.

DNAs extracted from Vibrio vulnificus seeded into oyster homogenates were evaluated as templates for the polymerase chain reaction. Several extraction procedures were examined, and it was determined that DNA recovered from cells lysed by guanidine isothiocyanate, extracted with chloroform, and precipitated with ethanol was most suitable for use as a polymerase chain reaction template. The region targeted was a 519-bp portion of the cytotoxin-hemolysin gene of V. vulnificus. This region was amplified only when DNA from this species was present in the homogenate. V. vulnificus seeded into oyster homogenates at an initial level of 10(2) CFU/g of oyster meat was consistently observed after 24 h of incubation in alkaline peptone water.

Animals↗

The structure of the TATA-less rat tissue-type plasminogen activator gene. Species-specific sequence divergences in the promoter predict differences in regulation of gene expression.

The genomic region carrying the rat tissue-type plasminogen activator (tPA) gene including its 5'-flanking sequence has been isolated and characterized by restriction enzyme analysis, Southern blotting, and DNA sequencing of all coding parts and the promoter region. The gene is approximately 25 kilobase pairs in size and comprises 14 exons separated by 13 introns. All the exon/intron boundaries agree with the GT-AG rule. The organization of the rat tPA gene is very similar to its human counterpart, and the location of the introns in the protein structure is identical to the human tPA gene. To characterize the promoter region, the transcription initiation site was identified by S1 nuclease protection experiments. A DNA fragment carrying 621 nucleotides of the 5'-flanking sequence was found to confer basal promoter activity and hormone responsiveness to a reporter gene construct in primary cultures of rat granulosa cells. Analysis of the rat tPA promoter sequence and a comparison with the human and mouse counterparts reveal several species-specific differences: the rat and mouse tPA promoters lack typical TATA and CAAT sequences found in the human tPA gene. Furthermore, the rat tPA promoter contains a consensus cAMP-responsive element shown to be required for cAMP responsiveness in eucaryotic genes. At the same position as the cAMP-responsive element in the rat gene, the mouse and human tPA genes have a 12-O-tetradecanoylphorbol-13-acetate-responsive element known to mediate activation by phorbol esters. The differences in the promoter sequences of the rat, mouse, and human tPA genes may have implications for the regulation of the tPA gene in different species.

Amino Acid Sequence↗

Identification of a common enterobacterial flagellin epitope with a monoclonal antibody.

A monoclonal antibody (mAb), designated 15D8, was produced from BALB/c splenocytes of mice injected with Escherichia coli flagella. ELISA of motile cells, non-motile cells and partially purified flagellin proteins showed that the mAb reacted specifically with flagella of E. coli and with other members of the family Enterobacteriaceae. Western immunoblot analyses of enterobacterial flagella or cell extracts demonstrated that the antibody reacted with a single protein species in the extracts which was identical in size to purified flagellin. The antigenic determinant for this antibody appears to be surface exposed and linear in configuration, since the antibody reacted with native flagella and flagella which had been denatured. This antibody was also used to demonstrate that although the flagella proteins are heterogeneous in size, at least one epitope is highly conserved.

Antibodies, Monoclonal↗

Structure of the NGFI-A gene and detection of upstream sequences responsible for its transcriptional induction by nerve growth factor.

The NGFI-A gene encodes a "zinc-finger" protein that is rapidly induced by nerve growth factor (NGF) in PC12 rat pheochromocytoma cells. The complete exon/intron organization and nucleotide sequence of the rat NGFI-A gene have been determined. The gene spans 3789 nucleotides (nt) and is interrupted by a single intron at nt 588. All three zinc-finger DNA-binding domains are contiguously coded for within the 3' exon; this is in contrast to the structure described by others for the Xenopus laevis transcription factor TFIIIA gene. To analyze the transcription of this gene, we have determined the transcription start site and nucleotide sequence of the 5' flanking region. Transfection of PC12 cells with a fragment from the 5' flanking region linked to the chloramphenicol acetyltransferase (CAT) gene revealed that it contains an element which imparts an NGF-inducible phenotype to the normally silent CAT gene. Several regions with homologies to recognizable sequence elements are present in this fragment, including a TATA box at nt -27, serum response elements at nt -84, -106, -370, and -408, a cAMP-responsive element at nt -140, and a transcription factor Sp1-binding site at nt -286. These results establish the genomic structure of this mammalian multifinger protein and demonstrate that an NGF-responsive element lies upstream of the NGFI-A gene.

Adrenal Gland Neoplasms↗

Transforming growth factor-beta stimulates meiotic maturation of the rat oocyte.

The effect of transforming growth factor-beta (TGF beta) on meiotic maturation was analyzed in oocytes from immature rats treated with PMSG. TGF beta accelerated the maturation of both follicle-enclosed oocytes and cumulus-oocyte complexes, as measured by an increase in the percentage of oocytes with germinal vesicle breakdown. Concentrations of the growth factor as low as 1 pM (25 pg/ml) increased oocyte maturation by 50% above control values, and 100 pM TGF beta caused a maximal 2-fold rise in the maturation rate. Germinal vesicle breakdown was significantly increased by TGF beta during the first 4 h of incubation, and stimulatory effects were observed as early as 1 h. However, by 8 h over 90% of the oocytes showed maturation in the absence or presence of TGF beta, indicating that the growth factor enhanced the spontaneous rate of oocyte development. TGF beta had no effect in denuded oocytes, demonstrating that the growth factor altered maturation through an action on the surrounding cumulus cells. Oocyte maturation was not accelerated by TGF beta in the presence of inhibitors of germinal vesicle breakdown, such as cAMP and hypoxanthine. Other growth factors, including IGF-I (50 ng/ml) and IGF-II (50 ng/ml), also stimulated oocyte maturation, while platelet-derived growth factor (100 ng/ml) and insulin (1 microgram/ml) had minimal effects on germinal vesicle breakdown. Although epidermal growth factor (EGF; 100 ng/ml) also increased the maturation of oocytes, lower concentrations of TGF beta (1-10 pM) suppressed EGF action by up to 30%. TGF beta, EGF, and insulin-like growth factors had minimal effects on cAMP production by cumulus-oocyte complexes. These results demonstrate that TGF beta and other growth factors are potent in vitro stimulators of oocyte maturation in the rat. Such effects of growth factors in vivo, in the presence of endogenous follicular factors and gonadotropic hormones, may regulate the selection and meiotic maturation of oocytes during follicular development. The rapidity of growth factor action in the oocyte provides a defined model to study signal transduction pathways of growth factors in relationship to their biological activity.

8-Bromo Cyclic Adenosine Monophosphate↗

Hormonal control of epidermal growth factor receptors by gonadotropins during granulosa cell differentiation.

The hormonal induction of epidermal growth factor (EGF) receptor formation was analyzed during the maturation of granulosa cells obtained from diethylstilbestrol-implanted immature rats. In the absence of FSH, EGF receptors (as measured by the binding of [125I]iodo-EGF to the intact cells) rose by 50% at 6 h of culture, but then declined to about 25-40% of their initial levels at 24-96 h of culture. Scatchard analyses demonstrated the presence of high affinity EGF-binding sites in both freshly prepared cells and after FSH treatment. FSH stimulated a dose-dependent increase in the EGF receptor content of granulosa cells during a 96-h culture period. Concentrations of FSH as low as 2.5-5 ng/ml elevated EGF receptor levels 2- to 3-fold compared to those in untreated control cells, and 30 ng/ml FSH caused a maximal 15-fold rise. FSH increased EGF receptor levels approximately 2-fold in the first 6 h of culture and by up to 7-fold at 96 h compared to levels in freshly prepared cells. FSH treatment did not change the binding affinity (Kd = 5-6 X 10(-11) M) of the EGF receptor, but increased the total number of EGF-binding sites. The stimulatory effects of FSH on EGF receptor expression were mimicked by other cAMP-inducing ligands, including 8-bromo-cAMP, forskolin, and choleragen. Ligands known to inhibit granulosa cell function, including GnRH agonists and the phorbol ester 12-O-tetradecanoyl-phorbol 13-acetate, reduced the stimulation of EGF receptors by FSH. However, only 12-O-tetradecanoyl-phorbol 13-acetate suppressed the induction of EGF receptors by 8-bromo-cAMP. In granulosa cells cultured for 48 h with FSH, subsequent treatment with hCG for 24 h reduced EGF receptor content by 25%. Autoradiographic studies with [125I]iodo-EGF in ovarian thin sections demonstrated that EGF-binding sites were uniformly dispersed throughout the ovaries of diethylstilbestrol-implanted rats. Treatment with PMSG markedly increased EGF receptors in the outer walls of the growing follicles, while hCG treatment after PMSG caused a general decline in ovarian labeling. These results indicate that FSH maintains and increases the number of EGF receptors during granulosa cell differentiation, while LH/hCG reduces EGF-binding sites. Such changes in EGF receptors in the presence of endogenous growth factors may influence the number and selection of follicles destined for ovulation.

8-Bromo Cyclic Adenosine Monophosphate↗

Bifunctional role of transforming growth factor-beta during granulosa cell development.

Regulatory actions of transforming growth factor-beta (TGF beta) on granulosa cell function were analyzed in cells cultured from the ovaries of diethylstilbestrol-implanted rats. In the presence of a suboptimal concentration of FSH (5 ng/ml) that increased LH receptors by 100-fold during a 72-h culture, TGF beta augmented this response in a dose-dependent manner with a maximal effect at 16 pM. In contrast, the growth factor inhibited the LH receptor response to an optimal dose of FSH (50 ng) by up to 50% and was inactive in the absence of gonadotropin. TGF beta also enhanced the formation of cAMP by 5 ng FSH and partially inhibited the effects of higher FSH concentrations. However, the actions of TGF beta were more prominent on LH receptor induction than on cAMP production with either low or high amounts of FSH. In addition, TGF beta had little effect on cAMP production stimulated by cholera toxin or forskolin, but amplified the actions of these ligands as well as that of 8-bromo-cAMP on LH receptor expression. TGF beta also modulated the steroidogenic activity of the granulosa cells, with increased production of progesterone in response to 5-100 ng FSH. The bifunctional actions of TGF beta on FSH-induced LH receptor formation were observed throughout a 96-h culture period. However, the presence of the growth factor was not required for the first 24 h of culture, indicating that TGF beta alters the later events involved in LH receptor formation. TGF beta augmented the stimulatory actions of 5 ng FSH on LH receptors in the absence or presence of insulin, but its inhibitory effect on these receptors was only observed in cells treated with insulin. These results indicate that TGF beta modifies FSH action during granulosa cell development in a biphasic manner. TGF beta can exert stimulatory or inhibitory effects depending upon the concentration of FSH and the presence of insulin, and these are due to alterations in cAMP action as well as cAMP production. Autocrine and/or endocrine actions of TGF beta during granulosa cell differentiation may be involved in the processes of follicle selection and development.

8-Bromo Cyclic Adenosine Monophosphate↗

Transforming growth factor beta regulates the inhibitory actions of epidermal growth factor during granulosa cell differentiation.

The effects of transforming growth factor beta (TGF-beta) on epidermal growth factor (EGF) receptor content and EGF action were studied in cultured granulosa cells from immature diethylstilbestrol-implanted rats. During follicle-stimulating hormone (FSH)-induced differentiation in vitro, EGF receptors increased by 20-fold as measured by the binding of 125I-EGF to the intact cells. Addition of TGF-beta during the 48-h culture period amplified the stimulatory effects of FSH on EGF receptors up to 2-fold, with ED50 and maximal concentrations of 2.5 and 8 pM, respectively. Also TGF-beta alone in amounts from 1.6 to 16 pM increased EGF receptor content 4-fold. The stimulatory effects of TGF-beta were due to increased numbers of EGF receptors/cell, since the growth factor had no effect on the Kd (3-5 X 10(-11) M) of the high-affinity EGF binding site. TGF-beta action was observed within 20 h of granulosa cell culture and was maximal by 48 h of a 96-h culture. The stimulatory actions of TGF-beta in gonadotropin-induced cells were exerted through the cAMP effector system of the granulosa cell, since the growth factor also amplified the induction of EGF receptors by cholera toxin, forskolin, and 8-bromo-cAMP. The augmentation of EGF receptors by TGF-beta resulted in a parallel 2-fold increase in the inhibitory effects of EGF on FSH-induced cAMP production and luteinizing hormone receptor expression during granulosa cell development. TGF-beta did not increase granulosa cell numbers during culture although it elevated [3H]thymidine incorporation into DNA by 2-fold over that of FSH-treated cells. These results indicate that TGF-beta regulates the effects of both FSH and EGF during granulosa cell differentiation and provides evidence that ovarian function may be controlled by the combined actions of gonadotropins and multiple growth factors.

8-Bromo Cyclic Adenosine Monophosphate↗

Transforming growth factor-beta regulates the expression of luteinizing hormone receptors in ovarian granulosa cells.

In cultured granulosa cells, addition of 1 to 50 ng follicle-stimulating hormone induced a 350-fold rise in luteinizing hormone receptors, while larger amounts of gonadotropin up to 200 ng reduced these receptors to approximately 50% of peak levels. Transforming growth factor-beta (16 pM) enhanced the stimulatory actions of low levels of gonadotropin (2.5-10 ng) by 2 to 3-fold, and inhibited the induction of luteinizing hormone receptors by higher levels of follicle-stimulating hormone (greater than or equal to 50 ng) by 30-50%. The actions of the growth factor were concentration-dependent over the range from 0.8 to 16 pM and included a similar biphasic effect upon gonadotropin-induced cAMP production. Modulation of cAMP formation and luteinizing hormone receptor expression by transforming growth factor-beta could influence the ability of the granulosa cell to respond to luteinizing hormone during ovarian follicular maturation and ovulation.

Animals↗