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Biomedical subjects

U Schweiger

Publications and source records attributed to U Schweiger.

At least 55 records · Page 3Linked to original sources

Bacteriorhodopsin can function without a covalent linkage between retinal and protein.

Light energy is transferred from retinal to the protein in bacteriorhodopsin after absorption of a photon resulting in changes of protein conformation. To examine whether the covalent bond, formed by the carbonyl group of retinal and the epsilon-amino group of lysine 216, is essential for this process, a mutant with lysine 216 replaced by alanine was expressed in Halobacterium salinarium L33 (BO-, retinal+). Reconstitution of the chromoprotein with varying retinylidene-n-alkylamines was possible in isolated membranes as well as in whole cells. When the protein in membranes with retinylidene Schiff bases of n-alkylamines of different lengths was reconstituted, the most stable chromoprotein was formed with retinylideneethylamine. The absorbance maximum was at 475 nm in alkaline solution and 620 nm in acidic solution. At neutral pH values both species equilibrate with a third one absorbing maximally at 568 nm. Reconstitution of whole cells with retinylideneethylamine led to a specific proton pump activity of 30 mol of protons per mol of BR per minute. This value indicates a lower limit of transport; no light saturation could be reached in these measurements in contrast to wild-type BR where transport activities of 162 mol of protons per mol of BR per minute under identical conditions can be achieved. Action spectra from flash photolysis experiments revealed that only the 568-nm form led to a M-intermediate with a half-time of decay of 17 ms. In summary, it could be shown that the covalent linkage between retinal and the protein is basically not required for the function of bacteriorhodopsin as a light-driven proton pump.

Bacteriorhodopsins↗

Inversion of proton translocation in bacteriorhodopsin mutants D85N, D85T, and D85,96N.

Proton translocation activity of bacteriorhodopsin mutants lacking the proton acceptor Asp-85 was investigated using the black lipid membrane technique. Mutants D85N, D85T, and D85,96N were constructed and homologously expressed in Halobacterium salinarium to yield a membrane fraction with a buoyant density of 1.18 g/cm3, i.e., identical to that of wild-type purple membrane. In all mutants, the absorbance maximum was red-shifted between 27 and 49 nm compared with wild type, and the pKa values of the respective Schiff bases were reduced to between 8.3 and 8.9 compared with the value of > 13 in wild type. Therefore, a mixture of chromophores absorbing at 410 nm (deprotonated form) and around 600 nm (protonated form) exists at physiological pH. In continuous blue light, the deprotonated form generates stationary photocurrents. The currents are enhanced by a factor of up to 50 upon addition of azide in D85N and D85,96N mutants, whereas D85T shows no azide effect. The direction of these currents is the same as in wild type in yellow light. Yellow light alone is not sufficient to generate stationary currents in the mutants, but increasing yellow light intensity in the presence of blue light leads to an inversion of the current. Because all currents are carried by protons, this two-photon process demonstrates an inverted proton translocation by BR mutants.

Bacteriorhodopsins↗

Low lumbar bone mineral density in patients with major depression.

Major depression is associated with hypercorticoidism, a risk factor for osteoporosis. However, it is unknown whether depressive disorders are associated with alterations in bone mineral density. The authors measured the density of trabecular bone from the first to the third lumbar vertebra by quantitative computerized tomography in 80 depressed inpatients older than 40 years and in 57 healthy comparison subjects. An analysis of covariance model with age as a covariate showed a significant effect of diagnosis on the dependent variable spinal bone mineral density: depressed patients had lower values. Other factors could not explain the finding. The authors conclude that major depression is a significant risk factor for osteoporosis.

Age Factors↗

Homologous bacterio-opsin-encoding gene expression via site-specific vector integration.

Homologous recombination in the archaebacterium Halobacterium halobium has been investigated and exploited for the wild-type (wt) level of expression of the bacterio-opsin-encoding gene (bop). The Haloferax volcanii-Escherichia coli shuttle vector, pWL102, was used to construct a shuttle-mutagenesis vector, pEF191, bearing bop and short flanking sequences. Transformation of a bacteriorhodopsin (BR)-negative H. halobium strain with pEF191 resulted in plasmid integration at the homologous bop locus. A model for this site-specific vector integration is presented which has been confirmed by determining the arrangement of the repeated homologous sequences on the chromosome. Two different configurations are obtained after integrative transformation due to the presence of an insertion element in the genomic copy of bop. In one configuration, the functional bop cluster containing the regulatory bat and brp genes was in wt arrangement. In the second configuration, the bop cluster is interrupted by 10 kb of plasmid vector sequences, and the upstream region required for bop expression was limited to 400 bp. The BR production for both configurations was determined and found to be at wt level. These results suggest that the function of the putative bop promoter does not depend on the defined upstream positions of bat and brp. The system presented here can be easily exploited for structure-function studies on BR and introduces homologous gene targeting as a powerful tool in the study of halobacterial genetics.

Bacteriorhodopsins↗

Starvation-induced hyperactivity in the rat: the role of endocrine and neurotransmitter changes.

Semistarved rats develop high running wheel activity. This running activity induces increased norepinephrine, dopamine, and serotonin turnover in the hypothalamus. Corticosterone in plasma becomes increased while luteinizing hormone and testosterone are suppressed. In female rats cyclic gonadal function is suppressed. Running activity in the semistarved rats can be suppressed specifically by serotonin 1-c-agonists and by alpha 2-adrenoceptor agonists. This animal model is helpful in the understanding of the combined effects of starvation and hyperactivity, which are observed in many patients with anorexia nervosa. The observation of the serotonergic system might help to develop a pharmacological treatment of hyperactivity in anorectic patients.

Animals↗

Activation of 5-HT1C-receptors suppresses excessive wheel running induced by semi-starvation in the rat.

Male Wistar rats were housed in cages linked to running wheels and fed on a schedule designed to reduce their body weight by 20-30%. During this period of semi-starvation the rats increased their daily running wheel activity (RWA) by up to 30 km/day. RWA could be kept at this level provided that body weight was kept constant. Different serotonin receptor (5-HT) agonists and antagonists were tested for their effects on RWA and it was found that RWA could be suppressed only by agonists with high affinity for the 5-HT1C receptor (TFMPP, mCPP, DOI and quipazine). Serotonin receptor agonists, which do not pass the blood-brain barrier, and 5-HT itself had no effect on RWA. The inhibitory effect of the agonists on RWA was prevented by pretreatment with antagonists that also had high affinity for 5-HT1C receptors (mianserin, metergoline and mesulergine). From these results we conclude that semi-starvation-induced hyperactivity can be blocked by 5-HT1C agonists. Furthermore we suggest that the animal model presented in this study might be a useful tool for in vivo studies on selective 5-HT1C receptor activation.

Animals↗

Activation of alpha 2-adrenoceptors suppresses excessive wheel running in the semistarvation-induced hyperactive rat.

Male Wistar rats were housed in cages linked to running wheels and fed on a schedule designed to reduce their body weight by 20-30%. During this period of semistarvation, rats increased their daily running wheel activity (RWA) by up to 30 km/day. RWA could be kept at this level provided that body weight was kept constant. Different alpha-adrenergic agonists and antagonists were tested for their effects on RWA and it was found that RWA could be suppressed only by agonists that display high affinity for the alpha 2-receptor (clonidine and guanfacine). Neither antagonist had an effect on RWA. Clonidine's inhibiting effect on RWA was prevented by pretreatment with yohimbine, which also has high affinity for alpha 2-receptors. From these results, we conclude that semistarvation-induced hyperactivity can be blocked by alpha 2-agonists. In view of this result and those that were obtained in previous studies, a theoretical model for the development of semistarvation-induced hyperactivity will be presented.

Adrenergic alpha-Agonists↗

Everyday eating behavior and menstrual function in young women.

OBJECTIVE: To examine the association of different types of everyday eating behavior with disturbances of menstrual function. DESIGN: Prospective cohort study with two groups, low dietary restraint (n = 13) and high dietary restraint (n = 9), identified with the Three-Factor Eating Questionnaire by Stunkard and Messick. SETTING: Research clinic. PARTICIPANTS: Normal volunteers (students and young professionals). INTERVENTIONS: None. MAIN OUTCOME MEASURES: Frequent serum and urine samples for determination of estradiol (E2), progesterone (P), and metabolites. Food and behavioral diaries. RESULTS: Eleven of the 13 women with low dietary restraint had menstrual cycles that fulfilled the following standard criteria: Serum E2 maximum of 440 pmol/L or more, P maximum of 19 nmol/L or more, and luteal phase length of 9 days or more. Only 2 of the 9 women with high dietary restraint had cycles that satisfied these criteria. Of the remaining 7, 1 had an anovulatory cycle and 6 had decreased P concentrations (P less than 0.05) and/or a shortened luteal phase (P less than 0.02). CONCLUSIONS: High cognitive restraint in everyday eating behavior may be a risk factor for the development of menstrual disturbance in young women.

Adult↗

Gonadotropin secretion in bulimia nervosa.

Twenty-two normal weight women with bulimia nervosa (BN) were studied (mean age, 25 +/- 5 yr; body mass index, 20.2 +/- 2.6 kg/m2). Sixteen of them reported menstrual cycles in the range of 21-42 days, and 6 had experienced absence of menstruation for at least 3 months. Twenty-one healthy women with regular menstrual cycles (mean age, 23 +/- 2 yr; body mass index, 20.7 +/- 1.4) served as the control subjects. Frequent morning blood samples for estradiol (E2) and progesterone (P4) determinations were obtained for the duration of 1 menstrual cycle or for 6 weeks in the case of amenorrhea. LH, FSH, cortisol, and insulin secretion were studied on day 3, 4, or 5 after the onset of a menstrual cycle or on a random day in the 6 BN women with amenorrhea. Blood samples were collected at 15-min intervals from 1800-0600 h for LH and FSH and at 30-min intervals from 2400-0600 h for cortisol and insulin. Nineteen of the 21 controls, but only 10 of the 22 BN women, fulfilled the following standard criteria: maximum E2 above 440 pmol/L, maximum P4 above 19 nmol/L, and luteal phase length of 9 days or more. The 10 BN women with normal menstrual cycles had lower mean insulin concentrations than the controls (70 +/- 20 vs. 120 +/- 30 pmol/L; P less than 0.01), but gonadotropin secretion, cortisol, and T3 concentrations were similar. The 8 BN women with amenorrhea or ovulatory dysfunction (maximum E2, less than 440 pmol/L; maximum P4, less than 6 nmol/L) displayed decreased mean LH pulse frequency (2.6 +/- 2.4 vs. 5.7 +/- 2.0 pulses/12 h; P less than 0.01), increased mean cortisol (120 +/- 40 vs. 80 +/- 20 nmol/L; P less than 0.01), decreased mean insulin (90 +/- 40 vs. 120 +/- 30 pmol/L; P less than 0.05), and decreased mean T3 concentrations (1.5 +/- 0.3 vs. 1.8 +/- 0.2 nmol/L; P less than 0.01). The data suggest that BN in normal weight women is associated with an increased rate of ovarian dysfunction; decreased pulsatile LH secretion seems to be an important mechanism. Increased cortisol in the disturbed subgroup indicates that activation of the hypothalamic-pituitary-adrenal axis may play a role in the pathogenesis of gonadal dysfunction in bulimia nervosa.

Adult↗

Circadian pattern of large neutral amino acids, glucose, insulin, and food intake in anorexia nervosa and bulimia nervosa.

Insulin, glucose, and large neutral amino acids (LNAA) were studied in 10 patients with anorexia nervosa, 13 patients with bulimia nervosa, and 15 healthy controls. Blood samples were collected at hourly intervals during the day and at two-hour intervals during the night over a 24-hour period. Ad libitum caloric and relative carbohydrate intake was significantly reduced in the anorectic and bulimic patients. Elevated concentrations of beta-hydroxybutyric acid (BHBA) were seen in the bulimic group, and low triiodothyronine (T3) concentrations in the anorectic group. Mean plasma glucose and insulin concentrations were significantly lowered in both groups. The tryptophan (Trp) to LNAA ratio was reduced in anorectic, but not in bulimic patients. These findings suggest that Trp influx into the brain is reduced in anorectic patients, possibly impairing central serotonergic function.

Amino Acids↗

The influence of semistarvation-induced hyperactivity on hypothalamic serotonin metabolism.

Male rats kept in a running wheel developed hyperactivity when food was restricted. Highest activity occurred around noon when food was given. Semistarved sedentary and ad lib fed sedentary and running rats served as controls. Five-hydroxyindole-acetic acid (5-HIAA) in the medial basal hypothalamus was lowest in the sedentary ad lib fed group. Running significantly increased 5-HIAA. Starvation likewise increased 5-HIAA. This effect was further enhanced by hyperactivity. When the circadian rhythm of serotonin (5-HT) and 5-HIAA was studied in the hypothalamus, a minimum of 5-HT as seen in semistarved sedentary and running rats around feeding time (noon). At this time 5-HIAA reached a maximum in the semistarved running rats while semistarved sedentary and ad lib fed rats showed no circadian pattern of 5-HIAA. These data indicate that serotonin turnover in the medial basal hypothalamus is increased as a consequence of semistarvation and hyperactivity.

Animals↗

Endocrine findings in restrained eaters.

Restrained (n = 9) and unrestrained eaters (n = 13) were selected from a group of healthy young women. Blood samples were collected overnight at half-hour intervals. Levels of cortisol, growth hormone, and glucose in both groups did not differ, while restrained eaters had significantly lower insulin values. After a standardized test meal of 500 kcal, restrained eaters had significantly lower norepinephrine values while insulin and glucose values did not differ from those of the unrestrained group. These findings indicate that restrained eating may have a biological basis.

Adolescent↗

Hyperactivity aggravates semistarvation-induced changes in corticosterone and triiodothyronine concentrations in plasma but not luteinizing hormone and testosterone levels.

Semistarvation over a ten-day period resulted in a weight loss of 30% in male Wistar rats, which had continuous access to a running wheel. The animals increased their activity up to 20 km per day. Controls fed ad lib increased activity only slightly (up to 2.3 km on day ten). Groups of semistarved and ad lib-fed sedentary rats were studied as controls. The circadian pattern of corticosterone (B), triiodothyronine (T3), luteinizing hormone (LH) and testosterone (T) was studied. Corticosterone was synergistically increased by semistarvation and exercise. The reduction of triiodothyronine by semistarvation was significantly greater in the running wheel group. Both luteinizing hormone and testosterone were significantly decreased by semistarvation. Hyperactivity did not result in additional suppression of LH and testosterone.

Animals↗

Mood changes and physical complaints during the normal menstrual cycle in healthy young women.

Significant emotional and physical symptoms have been linked to hormonal changes during the menstrual cycle. A critical evaluation of the available studies questions the commonly held belief in menstrual-cycle-related complaints in the majority of normal women. The present study investigated changes in mood, somatic complaints and vegetative variables during the menstrual cycle in 30 healthy young women. Normal cycle function was evaluated and cycle phases were defined according to endocrine data. For all subjects, blood samples were taken at least three times a week to measure estradiol and progesterone. Daily ratings of psychological variables revealed no significant changes in global mood or depression over the cycle. Somatic complaints such as abdominal pain and breast tenderness were significantly related to the luteal, premenstrual, and menstrual phases. Appetite increased in the periovulatory and premenstrual phases. There was a tendency for sexual interest to be highest in the post-menstrual period. Affect and vegetative variables showed no association with hormone levels but were significantly correlated with subjective stress ratings. We conclude that in most healthy young women, cycle-related hormone fluctuations are not accompanied by marked affective changes. Specific physical complaints, however, do occur, particularly in the luteal, premenstrual, and menstrual phases.

Adult↗

Luteinizing hormone and follicle stimulating hormone secretion patterns in female athletes with and without menstrual disturbances.

Thirty-one young female athletes and 13 age-matched sedentary controls were studied throughout one menstrual cycle or over a 6 week period. Blood was sampled on 5 days per week. Episodic gonadotrophin secretion was measured in the early follicular phase and in the late luteal phase by blood sampling over a 12-h period at 15-min intervals. Eight athletes had anovulatory cycles, nine had impaired progesterone (P4) secretion during the luteal phase and 14 had normal cycles as judged from oestradiol (E2) and P4 plasma levels. Athletes with normal cycles had shorter cycles, lower E2 maxima at midcycle, and lower E2 and P4 concentrations during the luteal phase than had sedentary controls. Episodic luteinizing hormone (LH) secretion in the early follicular phase was significantly impaired in the anovulatory athletes: the average LH values over 12 h and the number of secretion episodes were significantly reduced. No significant changes were seen in follicle stimulating hormone secretion.

Adult↗

Gonadotrophin secretion in the second half of the menstrual cycle: a comparison of women with normal cycles, luteal phase defects and disturbed follicular development.

In order to study the relationship between episodic gonadotrophin secretion and alterations of ovarian hormone secretion, we examined women with normal menstrual cycles (n = 26), luteal phase defects (n = 10) or disturbed follicular oestradiol secretion (n = 8) as established by daily (except weekends) determinations of oestradiol and progesterone. Pulsatile gonadotrophin secretion was studied during the luteal phase or the second half of the menstrual cycle sampling at 15 min intervals for 12 h. LH and FSH mean concentrations and LH pulse frequency were significantly (P less than 0.01) increased in the group with disturbed follicular development in the presence of decreased oestradiol (E2) and progesterone (P4) levels. In women with luteal phase defects mean LH and FSH concentrations and pulsatile LH secretion showed a nonsignificant trend to lower values in the presence of significantly decreased P4 concentrations during the luteal phase.

Estradiol↗

Cyclic ovarian function in recreational athletes.

In 17 female recreational athletes, ovarian function was monitored using daily hormone measurements and serial ultrasound determinations. Whereas 11 out of 13 women of a control group showed estradiol (E2) maxima beyond 470 pmol/l, progesterone (P4) maxima of 19 nmol/l or more, and a luteal phase length of 9 days or more, only 10 out of 17 athletes satisfied these criteria. Six athletes showed disturbed follicular development, and one athlete showed luteal phase disturbance. Both athletes with disturbed menstrual function (n = 7) and athletes fulfilling the above-mentioned minimal criteria (n = 10) had lower E2 concentrations in all phases of the menstrual cycle (P less than 0.05). P4 concentrations were significantly decreased in the group with disturbed menstrual function (P less than 0.05). Maximal aerobic capacity in the two athlete groups was similar. Neither athlete group showed the expected increase in caloric intake compared with the sedentary controls. It is concluded that recreational running is associated with altered ovarian function. Inadequate nutritional adaptation may be a contributing factor.

Adult↗