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Biomedical subjects

J Soong

Publications and source records attributed to J Soong.

13 recordsLinked to original sources

The source of endogenous carbon monoxide formation in human placental chorionic villi.

Carbon monoxide (CO) is proposed to play a role in placental vascular control, as the placenta produces and responds to CO. The mechanism by which CO is formed by the placenta is unclear but could be through heme oxygenase (HO) degradation of heme, lipid peroxidation, or both. Human placental cotyledons were perfused with Kreb s solution to remove blood. Chorionic villi segments were prepared for measurements of CO production in the absence/presence of an exogenous supply of heme substrate (methemalbumin), inhibitors of HO, or inhibitors of lipid peroxidation. HO inhibitors used were chromium mesoporphyrin (CrMP) (0.1 mM, 0.3 mM), and azalanstat (0.1 mM, 0.3 mM). The lipid peroxidation inhibitors used were EDTA (0.1 mM, 0.3 mM) and deferoxamine (0.1 mM). Incubation of villi segments with methemalbumin (0.15 mM, 0.3 mM, 0.45 mM) resulted in a concentration-dependent increase in CO formation above the basal, endogenous rate. CrMP and azalanstat inhibited basal endogenous CO production, whereas EDTA and deferoxamine enhanced CO formation above basal level. These results demonstrate that endogenous CO was formed by human chorionic villi from heme, primarily through the action of HO, and are consistent with the hypothesis that HO plays a role in the regulation of placental vasculature by the formation of heme-derived CO.

Carbon Monoxide↗

Autosomal mutations affecting adhesion between wing surfaces in Drosophila melanogaster.

Integrins are evolutionarily conserved transmembrane alpha,beta heterodimeric receptors involved in cell-to-matrix and cell-to-cell adhesions. In Drosophila the position-specific (PS) integrins mediate the formation and maintenance of junctions between muscle and epidermis and between the two epidermal wing surfaces. Besides integrins, other proteins are implicated in integrin-dependent adhesion. In Drosophila, somatic clones of mutations in PS integrin genes disrupt adhesion between wing surfaces to produce wing blisters. To identify other genes whose products function in adhesion between wing surfaces, we conducted a screen for autosomal mutations that produce blisters in somatic wing clones. We isolated 76 independent mutations in 25 complementation groups, 15 of which contain more than one allele. Chromosomal sites were determined by deficiency mapping, and genetic interactions with mutations in the beta PS integrin gene myospheroid were investigated. Mutations in four known genes (blistered, Delta, dumpy and mastermind) were isolated. Mutations were isolated in three new genes (piopio, rhea and steamer duck) that affect myo-epidermal junctions or muscle function in embryos. Mutations in three other genes (kakapo, kiwi and moa) may also affect cell adhesion or muscle function at hatching. These new mutants provide valuable material for the study of integrin-dependent cell-to-cell adhesion.

Animals↗

Disperse versus compact elements for the regulation of runt stripes in Drosophila.

The segmented body pattern of the Drosophila embryo is established through a hierarchical network of interacting genes. At each successive step in this pathway, transcriptional regulation is used to convert coarse positional information into finer patterns of gene expression. Central to this process are the cis-regulatory regions that drive the dynamic spatial expression of the different segmentation genes. Here we describe the cis-regulatory region of the runt gene. As found for both other primary pair-rule genes, hairy and even-skipped, there are stripe-specific elements which mediate the initial regulation of runt stripes by gap genes. We did not find autoregulatory elements as described for even-skipped and fushi tarazu. The regulation of runt by other pair-rule genes is mediated by a large region, extending over 5 kb upstream and downstream of the transcription start site. This "disperse" element cannot be subdivided into functionally independent subelements or minimal elements. Such disperse elements mediating pair-rule gene interactions may have escaped detection in other segmentation genes and may involve molecular mechanisms different from those mediating regulation by gap genes.

Animals↗

The Hin dimer interface is critical for Fis-mediated activation of the catalytic steps of site-specific DNA inversion.

BACKGROUND: Hin is a member of an extended family of site-specific recombinases--the DNA invertase/resolvase family--that catalyze inversion or deletion of DNA. DNA inversion by Hin occurs between two recombination sites and requires the regulatory protein Fis, which associates with a cis-acting recombinational enhancer sequence. Hin recombinase dimers bind to the two recombination sites and assemble onto the Fis-bound enhancer to generate an invertasome structure, at which time they become competent to catalyze DNA cleavage and strand exchange. In this report, we investigate the role of the Hin dimer interface in the activation of its catalytic functions. RESULTS: We show that the Hin dimer is formed at an interface that contains putative amphipathic alpha-helices in a manner that is very similar to gamma delta resolvase. Certain detergents weakened cooperative interactions between the subunits of the Hin dimer and dramatically increased the rate of the first chemical step of the reaction--double-strand cleavage events at the center of the recombination sites. Amino-acid substitutions within the dimer interface led to profound changes in the catalytic properties of the recombinase. Nearly all mutations strongly affected the ability of the dimer to cleave DNA and most abolished DNA strand exchange in vitro. Some amino-acid substitutions altered the concerted nature of the DNA cleavage events within both recombination sites, and two mutations resulted in cleavage activity that was independent of Fis activation in vitro. Disulfide-linked Hin dimers were catalytically inactive; however, subsequent to the addition of the Fis-bound enhancer sequence, catalytic activity was no longer affected by the presence of oxidizing agents. CONCLUSIONS: The combined results demonstrate that the Hin dimer interface is of critical importance for the activation of catalysis and imply that interactions with the Fis-bound enhancer may trigger a conformational adjustment within the region that is important for concerted DNA cleavage within both recombination sites, and possibly for the subsequent exchange of DNA strands.

Binding Sites↗

The Drosophila segmentation gene runt has an extended cis-regulatory region that is required for vital expression at other stages of development.

The Drosophila runt gene functions in several developmental pathways during embryogenesis. This gene was initially characterized due to the pivotal role that it plays in the genetic regulatory network that establishes the segmented body pattern. Recently it was found that this X-chromosome-linked gene is one of several dosage-sensitive, X-linked components that is involved in activating the Sex-lethal gene in blastoderm stage female embryos. Finally, this gene is also extensively re-expressed in later stages of embryogenesis in the developing nervous system where it plays an important role in the development of specific neural lineages. We have initiated an analysis of the runt cis-regulatory region in order to investigate runt's roles in these (and other) developmental pathways. Analysis of both the function and the expression patterns of runt genes with truncated cis-regulatory regions indicates that there are multiple elements that make quantitative contributions to runt regulation during segmentation. We find that sequences that are more than 8.5 kb upstream of the runt promoter are necessary for normal expression during the post-blastoderm stages of embryogenesis. Genetic experiments indicate that the post-blastoderm expression of runt is vital to the organism.

Alleles↗

The expression of C-jun and junB mRNA in renal cell cancer and in vitro regulation by transforming growth factor beta 1 and tumor necrosis factor alpha 1.

The proto-oncogene C-jun acts as a transcriptional activator or repressor for numerous cellular genes, and the overexpression of these genes may cause malignant transformation. JunB inhibits c-jun's transforming activities. We investigated the expression of jun genes in renal cell cancer (RCC) and their regulation by cytokines and transforming growth factor beta 1 (TGF-b1). The constitutive expression of c-jun was detected in 39 of 43 fresh frozen RCC, 5 of 10 normal kidneys, and the expression of junB detected in 28 of 34 RCC, 5 of 6 normal kidneys. C-jun was also found expressed in all 10 RCC tumor lines examined and junB was expressed at low levels in 6 of 10 renal tumor lines. TGF-b1 and tumor necrosis factor alpha (TNF-a) have been shown to alter the expression of jun genes in other tissue types. Additionally, TGF-b1, TNF-a, and gamma interferon (g-IFN) were shown to inhibit the growth of RCC. We found that TGF-b1 highly augmented the expression of junB (mean of 34 folds, p less than .05), but did not significantly alter the expression of c-jun, the transforming gene. In contrast, TNF-a significantly enhanced the expression of both c-jun (mean fold enhancement of 2.1, p less than .05) and junB (2.2 folds, p less than .05). Interleukin-2 (IL-2), interleukin-4 (IL-4) and g-IFN did not significantly alter jun expression. The findings presented suggest that c-jun may have a role in inducing malignant transformation in RCC and a novel mechanism by which TGF-b1 may exert its anti-tumor effects, via the activation of junB. Additionally, although TGF-b1, TNF-a, and g-IFN all have anti-proliferative actions on RCC in vitro, they were found to have different effects in altering jun expressions.

Carcinoma, Renal Cell↗

Enhanced stimulatory effect of high density lipoproteins (HDL) and other agonists on vascular prostacyclin production in rats fed alcohol-containing diets.

Chronic administration of liquid diets containing 36% of energy as ethanol to rats increased the serum level of high density lipoproteins (HDL) by 40% and potentiated 2 to 3-fold the stimulatory effect of these lipoproteins on the production of prostacyclin by aortic rings, as compared to pair-fed controls given isocaloric carbohydrate instead of ethanol. Cross-incubations between aortic rings and HDL from either alcohol-fed or pair-fed control rats revealed two factors operating in opposite directions. On the one hand, the predominant mechanism for the potentiation was increased reactivity of the vessel to these lipoproteins. This increased reactivity was also apparent with other agonists of prostacyclin formation. On the other hand, for equal amounts of either cholesterol or protein, the HDL from alcohol-fed rats were less stimulatory than those from controls. This was associated with a smaller content of arachidonate in the HDL of alcohol-fed rats. These ethanol effects on prostacyclin, a potent vasodilator and platelet antiaggregator, may contribute to the decreased incidence of ischemic heart disease observed in moderate alcohol drinkers.

Alcohol Drinking↗

Percutaneous cholecystostomy.

Percutaneous cholecystostomy was performed in 13 patients; five patients had suspected acute cholecystitis and eight patients had suspected obstruction of the common bile duct. An anterior abdominal wall approach was used in nine patients, right anterior axillary line puncture in four. One patient developed peritonitis and fatal septic shock after inadvertent cholecystostomy catheter removal. None of the other patients became septic, developed peritonitis, or had any other complication related to cholecystostomy. Two of the patients had external drainage as outpatients for more than 6 months without complication. Technical and clinical points are reviewed.

Adolescent↗

Fibrolipomatosis of the transplanted kidney.

Fibrolipomatosis of varying degree was observed in 24 transplanted kidneys. In 8 patients there was no history of urinary tract obstruction or multiple infections, leaving earlier rejection periods as the probable factor responsible for development of fibrolipomatosis after transplantation.

Diagnosis, Differential↗

Yersinia colitis.

A 2-year-old child with a febrile, non-bloody diarrheal illness of acute onset with repeatedly negative stool and blood cultures for pathogenic bacteria is presented. Sigmoidoscopic and roentgenographic studies revealed an inflammatory colitis. Unfortunately, diagnostic perserverance and a high index of suspicion resulted in a positive stool culture for Yersinia enterocolitica. Serologic study and clinical course provided data consistent with the diagnosis of an infectious colitis due to Yersinia enterocolitica. This case demonstrates the necessity to consider Yersinia enterocolitica in the radiographic differential diagnosis of Crohn's disease of the colon or ulcerative colitis, as well as intractable diarrhea of childhood.

Biopsy↗