Search PubMed⌕ Search

Biomedical subjects

J Ho

Publications and source records attributed to J Ho.

At least 163 records · Page 9Linked to original sources

Cyclic nucleotides, cyclic nucleotide phosphodiesterase, and development in Myxococcus xanthus.

Exogenous cyclic nucleotide phosphodiesterase (PD) accelerated fruiting body (FB) formation and increased territory size of aggregates in Myxococcus xanthus. Both guanosine 3'5'-monophosphate (cGMP) and guanosine 5'-monophosphate (GMP) were antagonistic to the PD effect. Adenosine 3'5'-monophosphate (cAMP) increases FB numbers twofold in the absence but not in the presence of PD. PD induction is not affected by methionine or isoleucine, which inhibit, or by threonine, which stimulates, FB formation. There is an increase and subsequent decrease in cAMP levels during early glycerol-induced microcyst development but 10 mM theophylline or caffeine not only inhibited microcyst development but induced germination in the presence of glycerol. On the basis of these results and the reports of other investigators a tentative model is proposed based on a dual role for cyclic nucleotides in the development in M. xanthus.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Bile acid synthesis in isolated rat hepatocytes.

Normal adult rat hepatocytes were incubated for 48h and the concentration of total and individual bile acids in homogenized samples of the culture was measured at intervals during the incubation, using radiogas chromatography and isotope derivative assay. The net increase in bile acids over the value observed at the start of the culture was taken as synthesis. The results showed that bile acid synthesis was linear up to 24h of incubation, at a rate of 20nmol/g hepatocytes per hour, and that 85% of the newly synthesized bile acid was cholic acid. The bile acid synthesized was mainly conjugated with taurine. These results suggest that isolated hepatocytes cultured in the way described could be a useful in vitro model for the study of bile acid synthesis.

Bile Acids and Salts↗

Effects of hormones on the synthesis of alpha 1 (acute-phase) glycoprotein in isolated rat hepatocytes.

Hormone effects on the synthesis of alpha(1) (acute-phase) glycoprotein and of albumin by isolated rat hepatocytes in suspension were examined. Insulin, glucagon, cortisol, somatotropin (bovine growth hormone) and tri-iodothyronine were added to achieve physiological concentrations in the medium [Jeejeebhoy, Ho, Greenberg, Phillips, Bruce-Robertson & Sodtke (1975) Biochem. J.146, 141-155]. After periodic additions, there were increases (compared with values for non-hormone-treated suspensions) in the concurrent absolute syntheses of alpha(1) (acute-phase) glycoprotein and of albumin. Trends were detectable after 24h, and significant increases were demonstrated after 48h of incubation (219 and 119% respectively of control values). Manipulation of hormones, by omission from the mixture or by addition of only one or two hormones in various combinations, indicated that for alpha(1) (acute-phase) glycoprotein (which may be representative of some other acute-phase proteins), cortisol was one of the most important hormones involved in the stimulation of synthesis, with glucagon enhancing the effect of cortisol but not being stimulatory by itself. Addition of actinomycin D inhibited this stimulation, suggesting that cortisol might have acted through promotion of RNA synthesis. For albumin, cortisol alone did not stimulate synthesis, but its absence from a hormone mixture significantly decreased synthesis compared with that observed with the complete hormone mixture. Our findings support the possibility that following tissue injury, synthesis of alpha(1) (acute-phase) glycoprotein may be stimulated by the hormonal response to this injury (which response includes elevated blood concentrations of cortisol and glucagon).

Albumins↗

Synthesis of hemopexin with and without hormonal supplementation in rat hepatocyte suspensions: comparison with that of albumin and of fibrinogen.

The rate of hemopexin synthesis in adult rat hepatocyte suspension (0.17 +/- 0.019 (6)) (mean +/- SEM (n) mg/g hepatocytes per hour) was found to be linear for 48 h. By contrast, the rate of synthesis of albumin and fibrinogen was close to linear for only 12 h after which it continued at a diminished rate. Supplementation of the incubation medium with insulin, cortisol, glucagon, triiodothyronine, and growth hormone affected no significant increase in the synthesis rate of hemopexin but by contrast did do so in that of albumin (22%) and of fibrinogen (123%) (although not to the point of causing these last to become linear). The pattern of hemopexin synthesis and its response to hormones is clearly different from that observed with other plasma proteins studied in this hepatocyte system. Hempoexin synthesis appeared to be at its maximum and to be independent of hormone supplementation, and it was continuing linearly at a time when the synthesis of other plasma proteins was falling.

Albumins↗

Albumin, fibrinogen and transferrin synthesis in isolated rat hepatocyte suspensions. A model for the study of plasma protein synthesis.

A system using hepatocyte suspensions in vitro was developed for studying the synthesis of albumin, fibrinogen and transferrin. Conditions for optimum survival of the hepatocyte and for synthesis of these plasma proteins were defined for this system. These conditions included the use of horse serum (17.5 percent, v/v, heat-inactivated), an enriched medium (Waymouth's MB 752/1), an O2 tension of between 18.7 times 10(3) and 26.7 times 10(3) Pa and constant stirring. Albumin, fibrinogen and transferrin synthesis rates were obtained of 0.32 p 0.094(10), 0.12 p 0.030(11) and 0.097 p 0.017(10) [mean p S.D. (n)]mg/h per g of hepatocytes respectively. These rates were maintained for the first 12h of study and synthesis continued at a diminished rate up to 48h. The synthesis of albumin was decreased in a medium containing less amino acids and glucose, but that of fibrinogen was substantially unaffected. ATP concentrations up to 12h and RNA/DNA ratios up to 24h were comparable with values in vivo. The ability to study cells up to 48h permitted us to find that the addition of a mixture of hormones consisting of glucagon, cortisol, tri-iodothyronine and growth hormone enhanced fibrinogen synthesis. Addition of insulin to the above mixture resulted in increased synthesis for albumin and transferrin but not for fibrinogen.

Adenosine Triphosphate↗

A plasma protein fractionation procedure for use in studies of protein metabolism.

A two-step method for the separation of five different plasma proteins on a preparative scale, which is capable of being extended to allow the separation of other plasma proteins, is described. The proteins separated were fibrinogen, two alpha(1)-glycoproteins, albumin and transferrin. The alpha(1)-glycoproteins were characterized in terms of electrophoretic mobility, ultracentrifugal and immunological characteristics. By using this method, it was shown that a single sample of plasma could be fractionated to yield purified proteins in sufficient quantity to simultaneously measure the synthesis of the two alpha(1)-glycoproteins, albumin and transferrin in the rat with McFarlane's technique (McFarlane, 1963; Reeve et al., 1963; McFarlane et al., 1965).

Animals↗

The acute effect of ethanol on albumin, fibrinogen and transferrin synthesis in the rat.

Decrease of absolute synthesis of albumin and fractional synthesis of transferrin was observed within 3h of orally administering ethanol (4ml/kg) to rats maintained on a 40%-protein diet. In contrast, absolute synthesis of fibrinogen was unaffected. With this ethanol intake, the changes in protein synthesis occurred without significant ultrastructural change in the liver. When the ethanol intake was greater (8ml/kg) ultrastructural disruption was observed. However, both the decrease of plasma protein synthesis and the ultrastructural alterations could be prevented by the simultaneous administration of a mixture of amino acids with the ethanol. The latter findings, not reported hitherto, suggest that ethanol may interfere with hepatic plasma protein synthesis and ultrastructure more through a disturbance of amino acid metabolism than through direct physical damage to the hepatocyte. An Appendix outlines the deconvolutional method used to correct for losses of labelled protein in the period during which measurements were made. The principle may also be applied to labelled plasma urea. The details of the calculations are given in a supplementary paper that has been deposited as Supplementary Publication 50007 at the National Lending Library for Science and Technology, Boston Spa, Yorks. LS23 7BQ, U.K., from whom copies can be obtained on the terms indicated in Biochem. J. (1972) 126, 5.

Administration, Oral↗

The effect of cortisol on the synthesis of rat plasma albumin, fibrinogen and transferrin.

A decrease of absolute synthesis of albumin, no change in that of fibrinogen and an increased fractional synthesis of transferrin were observed 3h after intraperitoneal administration of a pharmacological dose of 5 mg of cortisol to 220g rats in the post-absorptive state and previously kept on a diet with 40% protein. The concentration in liver of total free amino acids was practically unchanged at this time. Intraperitoneal administration of a mixture of amino acids with the cortisol raised this concentration and was accompanied by an almost complete de-repression of the synthesis of albumin, with no real effect on that of fibrinogen. In considerable contrast, in rats studied at 24h after intraperitoneal administration of cortisol, and who had been fed once in the interim (but who had received no amino acids intraperitoneally), there was a marked increase in the absolute synthesis of albumin and fibrinogen, with an increase in fractional synthesis that was less proportionately but still very significant and which included transferrin. The amino acid concentrations had risen above the supplemented values at 3h but not as much proportionately as the fractional synthesis rates, and of course not as much as the absolute synthesis rates, of albumin and fibrinogen. These time-dependent effects of cortisol suggest to us that our studies resolve the apparently conflicting results of the effect of cortisol on the synthesis of albumin reported by others.

Amino Acids↗

Prednisolone in HBsAg-positive chronic active hepatitis: histologic evaluation in a controlled prospective study.

To study the value of corticosteroids in HBsAg-positive chronic active hepatitis, 18 pairs of liver histology comprising 36 liver biopsies from a prospective, randomized, controlled trial were evaluated. The median interval between the initial and follow-up histology was 8 1/2 months in 8 patients given prednisolone and 8 1/4 months in 10 patients given placebo tablets. Following medication, there was significantly greater erosion of the limiting plate in the prednisolone group (p = 0.039) accompanied by a larger quantity of HBsAg (p = 0.045) and HBcAg (p = 0.006) in the liver. We conclude that prednisolone causes immunosuppression permitting enhanced viral multiplication and leads to increased erosion of the limiting plate. Our result also indicates that progression to cirrhosis is unhalted by prednisolone therapy. The histologic findings support clinico-biochemical conclusion that the use of prednisolone is deleterious to patients with HBsAg-positive chronic active hepatitis.

Biopsy↗