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Biomedical subjects

R B Harris

Publications and source records attributed to R B Harris.

At least 109 records · Page 6Linked to original sources

Determination of enzyme specificity in a complex mixture of peptide substrates by N-terminal sequence analysis.

A method has been developed to determine preferred residue substitutions in the P' position of peptide substrates for proteolytic enzymes. The method has been validated with four different enzymes; the angiotensin I-converting enzyme, atrial dipeptidyl carboxyhydrolase, bacterial dipeptidyl carboxyhydrolase, and meprin A. A mixture of N-acylated potential peptide-substrates for each of the enzymes was prepared in a single synthesis procedure on the same solid-phase synthesis resin. The peptides were identical in all residue positions except the P' position to be studied, into which numerous amino acid residues were incorporated on a theoretical equimolar basis. After cleavage and extraction of the peptides from the resin, no attempt was made to purify them individually; the exact concentration of each peptide in the mixture was determined by quantitative amino acid analysis. Incubation of an enzyme with its peptide-substrate mixture at [S] much less than Km yielded peptide hydrolytic products with newly exposed N-termini. The identity and amount of each hydrolysis product was determined by automated N-terminal sequence analysis. One cycle of sequencing revealed preferred amino acid substitutions in the P'1 position, two cycles the P'2 position, and so forth. Comparison of the rates of production of the various products indicates the preferred substitution in that particular P' position. New information on the substrate specificities of each of the enzymes tested was obtained and it is clear that this approach can be applied to any protease with a defined (or suspected) point of cleavage in a peptide substrate.

Amino Acid Sequence↗

Gender differences in the reliability of reporting symptoms of angina pectoris.

Numerous studies have shown that the symptoms of angina pectoris are more prevalent in women than men, than other manifestations of coronary heart disease, with the greatest discrepancies at younger ages. Variation in symptom reliability between genders could be a potential explanation for these differences. The Lipid Research Clinics Prevalence Study included two standardized Rose Questionnaire interviews, allowing evaluation of the relationship between reliability and prevalence of angina pectoris. Analyses of the results of two interviews in 2348 men and 2085 women who were at least 30 years old in 1972-1976 showed that women generally had lower reliability estimates, but that the differences were minimal for age groups where prevalence differences were greatest. Furthermore, for interviews less than 1 month apart differences in symptom reliability were quite small (kappa = 0.65 for men and 0.58 for women). In addition, if consistently positive interviews were used to define angina, gender differences in prevalence decreased but did not disappear. In the LRC population, reporting unreliability did not explain the higher prevalence of angina pectoris in young women.

Adult↗

Growth measurements in Sprague-Dawley rats fed diets of very low fat concentration.

Young (70 g) male Sprague-Dawley rats were fed one of four diets for 28 d to determine the effects of replacing dietary fat with a noncaloric substitute. Fat contributed 17% of energy in a control diet and 36% in a high fat diet. A fat substitute was used to produce two low fat diets in which essential fatty acid was the only source of lipid. One low fat diet (low fat 1) was similar in texture to the control diet. The other low fat diet (low fat 2) was comparable to the high fat diet. Digestible energy was 92-95% of gross dietary energy in all diets. There was no effect of diet composition on energy intake of the rats. At the end of the study, animals given low fat diets weighed approximately 20 g more than those fed control or high fat diets, due to increased lean body mass. Diet had no significant effect on body fat content, gastrocnemius muscle weight or femur length. This study indicates that increasing the protein:energy ratio of the diet by replacing nonessential fat with a fat substitute may promote deposition of lean tissue rather than fat in growing animals.

Animals↗

Physiological response of mature rats to replacement of dietary fat with a fat substitute.

The effects of replacing dietary fat with a fat substitute on food intake, body composition and lipid metabolism were examined in rats. Female Sprague-Dawley rats (250 g) were fed diets containing between 2 and 63% of energy as fat for 64 d. Inclusion of a substitute resulted in diets of different fat content but similar texture. When 10% corn oil (21% kJ-fat diet) was replaced with the substitute supplemented with linoleic acid (2% kJ-fat diet), rats increased food intake so that there was no effect on energy intake, body weight, body composition or serum lipid profile. Rats fed a diet containing 10% corn oil and 30% Crisco vegetable shortening (63% kJ-fat diet) became obese and hyperinsulinemic. When half (51% kJ-fat diet) or all (30% kJ-fat diet) of the Crisco was replaced with the fat substitute, the rats increased food intake and were fatter than controls but less obese than rats fed the 63% kJ-fat diet. Hepatic lipid oxidation and ketone synthesis were proportional to the percentage of dietary energy as fat. Adipocyte de novo lipid synthesis was inhibited by 51% kJ-fat and 63% kJ-fat diets. Partial or total replacement of Crisco prevented the hyperinsulinemia observed in 63% kJ-fat rats, suggesting a protective effect against the development of insulin resistance with diet-induced obesity.

Animals↗

Pro-gonadotropin-releasing hormone protein is processed within hypothalamic neurosecretory granules.

Peptide-hormones are synthesized as higher-molecular-weight precursor proteins which must undergo numerous posttranslational modifications to yield the bioactive peptide(s) which may include limited endoproteolysis, limited exopeptidase digestion, and C-terminal amidation. Three different enzymes which are likely to be the physiologically relevant processing enzymes of bovine pro-gonadotropin-releasing hormone (pro-GnRH) precursor protein have been colocalized to, and purified from, hypothalamic neurosecretory granules. Gonadotropin-releasing-hormone-associated-peptide-releasing enzyme initiates processing by endoproteolysis of the pro-hormone exclusively at the Arg 13-Asp 14 bond in the sequence, -Gly6-Leu-Arg-Pro-Gly 10-Gly-Lys 12-Arg 13-Asp-, which overlaps the sequence for GnRH (1-10) and GAP(14-69) within the pro-protein. Hypothalamic carboxypeptidase E then sequentially removes the -Lys12-Arg13- doublet from the newly formed peptide before peptidyl glycine alpha-amidating monooxygenase catalyzes the formation of amidated GnRH. Carboxypeptidase E activity is stimulated in vitro by cobalt ion and removes the Lys and Arg residues with equal facility. The residue which acts as the amide nitrogen donor for the alpha-amidating enzyme must be present as the free C-terminal residue of a substrate; the enzyme does not recognize peptide substrates with C-terminal extensions. Based on the mandatory ordered events for processing pro-GnRH and the relative pH profiles displayed by these enzymes, our results are consistent with the idea that endoproteolysis of the pro-hormone occurs upon formation of the secretory granule at the Golgi apparatus and that the processed peptides are the storage form within the secretory vesicles.

Amino Acid Sequence↗

Solution phase conformation studies of the prekallikrein binding domain of high molecular weight kininogen.

High molecular weight kininogen is a cofactor of the surface-dependent phase of the blood-clotting cascade. Unique sequence-binding sites are exposed on the surface of this glycoprotein which complex prekallikrein or factor XI with high affinity and specificity (Tait and Fujikawa, 1987). A sequence comprising 31-residues (residues 565-595 of the mature kininogen molecule) retains full binding activity for prekallikrein but the sequence 569-595 (27 residues) shows only 25% of this binding affinity (Vogel et al., 1990). Thus, the key structural features required for protein recognition reside in the 31-residue sequence but these features are likely compromised (or absent) in the 27-residue sequence. To determine the conformation of the prekallikrein-binding domain, peptides comprising the 31- and 27-residue sequences were prepared by solid-phase methods and their structures determined by circular dichroism, fluorescence polarization, and 2D-NMR techniques. Fluorescence emission spectra, polarization, and anisotropy measurements of the single Trp residue present in both peptides show that the 31-residue peptide contains an ordered microenvironment at its amino terminus, which is not present in the 27-residue peptide. This structural ordering is characterized by movement of the Trp residue into a more polar environment. Further, the 31-residue peptide possesses a higher limit anisotropy, longer rotational relaxation time, and shows a higher polarization value even at elevated temperatures. Circular dichroic spectra of both peptides in the far UV region are essentially identical and indicate that both peptides contain predominantly beta-turn elements, but also contain some alpha-helix, beta-sheet, and random coil character. The structural elements of both peptides are unchanged in urea solution, but the negative ellipticity absorption band in the near UV region assignable to Trp is eliminated in acid solution upon protonation of the neighboring-Asp-Asp-Asp- triplet. In the two peptides, the spin system of each amino acid has been assigned through 2D-1H scalar coupling correlated experiments; pure absorption NOESY experiments were used to determine through-space connectivities. The results are entirely consistent with the previous experiments in that both peptides contain predominantly beta-turn elements and the amino terminus of the 31-residue peptide is highly ordered in comparison with the 27-mer; in fact, this region is likely to be helical in nature.(ABSTRACT TRUNCATED AT 400 WORDS)

Amino Acid Sequence↗

Role of set-point theory in regulation of body weight.

In adult individuals body weight is maintained at a relatively stable level for long periods. The set-point theory suggests that body weight is regulated at a predetermined, or preferred, level by a feedback control mechanism. Information from the periphery is carried by an affector to a central controller located in the hypothalamus. The controller integrates and transduces the information into an effector signal that modulates food intake or energy expenditure to correct any deviations in body weight from set-point. Evidence for involvement of various factors and physiological systems in the control of food intake and regulation of body weight and fat are reviewed within the context of a control model. Current working hypotheses include roles for nutrients, dietary composition and organoleptic properties, hormones, neural pathways, various brain nuclei, and many neurotransmitters in the regulation of food intake. It is concluded that regulation of body weight in relation to one specific parameter related to energy balance is unrealistic. It seems appropriate to assume that the level at which body weight and body fat content are maintained represents the equilibria achieved by regulation of many parameters.

Adipose Tissue↗

Site of action of putative lipostatic factor: food intake and peripheral pentose shunt activity.

Obesity due to overfeeding in one parabiotic rat results in mild hypophagia and specific loss of fat from its partner. Studies were conducted to determine whether the changes in body composition were reversible and whether the nonsignificant reduction in food intake was a primary response to a humoral lipostatic factor. Tube feeding partners of overfed rats 0.5 g more food per day than eaten voluntarily prevented loss of fat, although hepatic and adipose glucose-6-phosphate dehydrogenase activities were depressed. Glucose flux through the pentose phosphate pathway was inhibited in both adipose and hepatic tissue from thin partners of obese rats, although fatty acid synthesis was depressed only in adipose tissue. Response to insulin by adipocytes from ad libitum partners of obese rats appeared to be blunted, but insulin sensitivity was normal. When overfeeding stopped, both partners returned to control body composition, suggesting that the changes observed in parabiotic partners of obese rats were physiological responses to a putative circulating lipostatic factor rather than a nonspecific consequence of parabiosis.

Animals↗

Are women using postmenopausal estrogens? A community survey.

Self-reported estrogen and progestin use in a California community was determined in 1986-87 from a telephone survey of postmenopausal women (n = 954) ages 50-65 years. Current use of hormones was reported by 32 percent; 26 percent took estrogens alone while 6 percent used estrogen + progestin. Comparisons pointed to significant social network and medical care utilization differences. Women who used estrogen therapy were younger, thinner, lived in smaller household units, and were less likely to be widowed.

Aged↗

Recombinant tumor necrosis factor-alpha chronically administered in rats: lack of cachectic effect.

Recombinant human tumor necrosis factor-alpha (rHuTNF) was injected into rats to test its reported cachectic effects. Rats were subcutaneously injected daily at 1730 hr with either saline or rHuTNF (0.25 mg/kg body wt) for either 5 or 14 days. Daily food intakes were significantly depressed only for the first day and first two days of rHuTNF injection in animals treated for 5 days and 14 days, respectively. There were no significant differences in daily body weights among the groups. Analysis of carcass composition revealed no significant differences in percentage of lipid or protein. Liver and inguinal pad weights were not significantly different. In vitro determination of lipogenesis showed it was enhanced in the inguinal pad and depressed in the liver only after 14 days of treatment. These results demonstrate that although in vivo rHuTNF may specifically alter tissue metabolism, it does not, by itself, result in a sustained cachectic effect.

Adipose Tissue↗

Processing of pro-hormone precursor proteins.

Peptide-hormones and other biologically active peptides are synthesized as higher molecular weight precursor proteins (pro-proteins) which must undergo post-translational modification to yield the bioactive peptide(s). These post-translational enzymatic events include limited endoproteolysis and may include other modifications of the generated peptide such as limited exopeptidase digestion, N-terminal acetylation, C-terminal amidation, and formation of N-terminal pyroglutamyl residues (pyrrolation). The secretory vesicle hypothesis, one of the major hypotheses regarding processing, states that the initial endoproteolytic event occurs upon formation of the secretory vesicle (or granule) or within the secretory vesicle from which the bioactive peptides are released. Two different endoproteinases which are likely to be physiologically relevant processing enzymes of pro-atrial natriuretic factor and pro-gonadotropin releasing hormone precursor protein, respectively, have recently been discovered in our laboratory and are discussed as model enzymes in the context of this hypothesis. The results indicate that the precursor protein and its complement of processing enzymes are co-packaged into the secretory granule. Evidence is presented to support the idea that the specific sequence and conformation (secondary structural features) of the processing recognition site within the precursor protein likely contribute in large part to the basis for limited endoproteolysis. In the pro-hormones studied, the recognition site is an extended sequence of five to seven residues which likely exists as a beta-turn at the surface of the precursor protein. By extending our results to appropriate protein sequences in the National Biomedical Research Foundation database, we are suggesting that in addition to the doublet of basic amino acids, the primary processing recognition site in pro-hormone precursor proteins often contains a monobasic amino acid or a strongly polar residue (Glu or Asp) in close sequence proximity to the doublet of basic residues.

Amino Acid Sequence↗

The effect of increased adiposity on food intake of juvenile rats.

The regulation of feeding by body adiposity, as proposed by the lipostatic theory, has been well demonstrated in adult animals. However, mechanisms controlling long-term feeding in juvenile animals have not been well defined. In this study, increased adiposity was induced in young rats through oral gavage. Four-week-old rats were divided into three groups; ad lib feeding (100%-AL), tubefed 100% (100%-TF) or 150% (150%-TF) of ad lib intake. Animals were tube-fed these levels for one week. At the end of this period, one third of each group were killed and all remaining animals were returned to ad lib feeding for either 4 or 29 days later. During this recovery period, the 150%-TF group had significantly depressed food intakes for the first 4 days in comparison to the 100%-TF group. Afterwards, there were no significant differences between these two groups for the remainder of study. Overfeeding induced significant increases in total body fat in the 150%-TF group (24.8 grams) in comparison to the 100%-AL group (11.0 grams) and the 100%-TF group (14.0 grams). By day five of recovery, only the 150% group exhibited a significant loss of body fat. Total carcass protein and ash were not different between groups at any period. At day 29 of recovery, there were no treatment differences in carcass weight or fat content. Loss of body fat from the 150%-TF rats was associated with the decline in caloric intake. It appears that food intake is affected by relative adiposity during the dynamic phase of growth.

Adipose Tissue↗

Reviewing nursing stress according to a proposed coping-adaption framework.

Is stress a common problem for nurses who work in intensive care units (ICUs)? Stress-coping theory is useful in analyzing ineffective coping and its outcome, burnout. This article compares stress among nurses in ICUs to stress in non-ICU nurses. Effects of stresses, such as nursing dissatisfaction and the loss of nurses to the profession, will be discussed. Research and commentaries regarding stress in ICU nurses v non-ICU nurses will be reviewed. Areas for future research will be presented.

Adaptation, Psychological↗

Site of action of putative lipostatic factor: hypothalamic metabolism of parabiotic rats.

Studies were conducted to determine whether metabolic adaptation occurred in the hypothalamus of overfed parabiotic rats and their partners to distinguish between the adaptations caused by increased caloric intake and those caused by the production of a "lipostatic factor." The induction of overfed obesity in one parabiotic partner was employed to test the hypothesis that a putative lipostatic factor produced in the obese parabiotic elicited the hypophagic-lipid-mobilizing effect observed in the lean parabiotic via alterations in hypothalamic fatty acid and glucose metabolism. Fatty acid oxidation in the ventrolateral hypothalamus (VLH) of overfed parabiotic rats and their partners was lower than in ad libitum parabiotic rats. Net flux of glucose through the VLH gamma-aminobutyric acid (GABA) shunt was elevated in overfed parabiotic rats compared with the net flux observed in their partners and ad libitum parabiotic rats, the levels being similar in these last two groups. Net flux of glucose through the ventromedial hypothalamic (VMH) pentose shunt in overfed parabiotic rats and their partners was elevated relative to ad libitum parabiotic rats. The putative lipostatic factor may act to regulate energy balance through modification of VLH fatty acid oxidation and/or glucose flux via the VMH pentose shunt.

Animals↗

In vitro evidence for an inhibitor of lipogenesis in serum from overfed obese rats.

Involvement of a humoral agent in regulation of energy balance has been demonstrated by parabiosis experiments. Overfed obese rats produce a blood-borne factor that inhibits adipose fatty acid synthesis in their partners, resulting in loss of body fat without significant inhibition of food intake. An in vitro bioassay was developed to test small serum samples for antilipogenic activity. Epididymal adipocytes from ad libitum-fed rats were preincubated for 12 h with 2% serum. Basal adipocyte fatty acid synthesis, measured in a subsequent serum-free incubation, was inhibited by obese serum. Insulin response was not changed. Characterization studies indicated that the factor was probably a protein, larger than 30 kDa, but not a protease or a low-density lipoprotein and was not associated with serum albumin. Physiological experiments demonstrated that the agent was produced when body weight was raised substantially above "set-point." Inhibitory activity was neither species specific nor pituitary dependent. Structure, origin, and physiological significance of the factor are unknown, but it may be involved in the control of body fat content.

Adipose Tissue↗

Level of satiety: in vitro energy metabolism in brain during hypophagic and hyperphagic body weight recovery.

Rates of in vitro glucose and fatty acid oxidation were examined in four brain sites during hypophagic and hyperphagic recovery of normal body weight. Rats were fed 40, 100, or 160% of normal intake, via gastric intubation, for 3 wk. Another group of rats was starved until body weight loss was equivalent to weight loss in 40%-fed rats. Groups of rats were killed at the conclusion of tube feeding or fasting and at specific periods during recovery of body weight. Brain sites examined were the ventrolateral hypothalamus (VLH), ventromedial hypothalamus (VMH), a caudal brain stem site encompassing the area postrema-nucleus of the solitary tract (AP-NTS), and cortex. During recovery, rats previously fed 160% of normal intake (anorectic) maintained low rates of VLH fatty acid oxidation and were hypophagic until most excess fat was depleted. Conversely, rats previously fed 40% of normal intake (hungry) maintained high rates of VLH fatty acid oxidation and were hyperphagic until most deficient fat was repleted. Rats previously starved maintained high rates of VLH fatty acid oxidation during hyperphagic recovery, although levels of VLH fatty acid oxidation and food intake were initially low on refeeding. Rates of glucose oxidation in the brain sites examined did not relate well to energy balance status and the needed adjustments in food intake. The results indicated that the level of glucose oxidation in the VLH and AP-NTS responded to the level of energy immediately coming into the system (food intake).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Changes in lipogenesis and lipolysis associated with recovery from reversible obesity in mature female rats.

Reversible obesity provides a model for demonstration of weight regulation in mature animals. Changes in body composition and in vitro adipose and hepatic lipid synthesis and adipose lipolysis of rats recovering from enforced weight gain were examined to determine whether correction of weight was facilitated by metabolic changes independent of those resulting from hypophagia and negative energy balance. Female Sprague-Dawley rats (200 g) were divided into three groups. Controls ate ad libitum, tube-fed control rats were weight matched to controls. Two-hundred percent-fed rats were tube-fed twice control intake. After 26 days tube feeding stopped and a subgroup from each treatment was killed for determination of body composition and in vitro tissue metabolism. Further subgroups were examined 5, 10, 15, and 36 days later. At the end of overfeeding 200%-fed rats were hypophagic and had high rates of adipose and hepatic lipid synthesis, which soon returned to normal. Gross changes in body fat mass were corrected by hypophagia and increased adipose lipolysis. The remaining small excess in body fat appeared to be corrected by decreased basal and insulin-stimulated adipose fatty acid synthesis when food intake had returned to normal.

Adipose Tissue↗

Body composition and in vitro lipid metabolism of overfed hypophysectomized rats.

Hypophysectomized (hypox) rats were fed ad libitum or were tube-fed increasing levels of their normal food intake. Sham operated (sham) rats were tube-fed to maintain their normal rate of growth or were fed 150 percent of their ad libitum food intake. This was equivalent to the highest intake of hypox rats. Overfeeding continued for 20 days. Overfeeding hypox rats increased body weight almost entirely by hypertrophy and hyperplasia of body fat depots. Overfeeding did not promote growth of lean tissue in hypox rats. Serum insulin increased with higher levels of food intake and extreme overfeeding resulted in hyperinsulinemia and hyperglycemia in hypox rats. Serum thyroid hormones and corticosterone were lower in hypox than sham rats and were not significantly changed by overfeeding. Adipose and hepatic fatty acid synthesis and esterification and adipose glycerol release were measured in vitro. Although serum insulin increased, peripheral tissue of overfed hypox rats remained insulin resistant. Rates of hepatic and adipose lipid synthesis and adipose lipolysis appeared to be determined by nutrient availability rather than being dependent upon pituitary factors.

Animals↗