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Biomedical subjects

M Gervais

Publications and source records attributed to M Gervais.

At least 19 recordsLinked to original sources

Pharmacological postconditioning with the phytoestrogen genistein.

Estrogens are known to activate the phosphatidyl-inosityl 3-kinase (PI3K)/Akt pathway, which is central in the cardioprotection afforded by ischemic postconditioning. Therefore, our goal was to investigate whether a phytoestrogen, genistein, could induce a pharmacological postconditioning and to investigate potential mechanisms. We used low doses of genistein in order to avoid tyrosine kinases inhibition. Thus, pentobarbital-anesthetized rabbits underwent a coronary artery occlusion followed by 4 h of reperfusion. Prior to reperfusion, they randomly received an i.v. injection of either saline (Control), 100 or 1000 microg/kg of genistein (Geni(100) and Geni(1000), respectively), and 10 or 100 microg/kg of 17beta-estradiol (17beta(10) and 17beta(100), respectively). Infarct size (IS, % area at risk) was significantly reduced in Gen(100), Gen(1000) and 17beta(100) but not in 17beta(10) (6+/-2, 16+/-5, 12+/-3 and 29+/-7%, respectively) vs. Control (35+/-4%). A significant decrease in the percentage of TUNEL-positive nuclei within infarcted area was observed in Gen(100) and 17beta(100) vs. Controls. The estrogen receptor antagonist fulvestrant (1 mg/kg i.v.) and the PI3K inhibitor wortmaninn (0.6 mg/kg) abolished the cardioprotective effect of genistein. Western blots also demonstrated an increase in Akt posphorylation in Gen(100). In the same group, in vitro mitochondrial swelling studies demonstrated a significant inhibition of calcium-induced opening of mitochondrial transition pore vs. Controls. In conclusion, genistein exerts pharmacological postconditioning with a similar potency as 17beta-estradiol through a pathway involving activation of the estrogen receptor, of PI3K/Akt and mitochondrial preservation. Therefore, genistein should not be only considered as an inhibitor of tyrosine kinase but also as a cardioprotective estrogen.

Animals↗

Coronary dilatation reserve in experimental hypertension and chronic heart failure: effects of blockade of the renin-angiotensin system.

1. The aim of the present study was to investigate left and right ventricular (LV and RV, respectively) coronary vasodilatation reserve (CVR; fluorescent microsphere technique) in rats with hypertension (spontaneously hypertensive rats (SHR)) or congestive heart failure (CHF) and the effects of early and chronic renin-angiotensin system (RAS) blockade thereupon. 2. In adult SHR, both LV and RV CVR were impaired, especially in the non-hypertrophied RV, the main factor involved being coronary vascular remodelling. Blockade of the RAS normalized both LV and RV CVR, mainly through the prevention of hypertension and suppression of the resulting pericoronary fibrosis. 3. In postischaemic CHF rats, there was an early and severe degradation of LV and RV CVR that developed before any significant vascular remodelling and appeared to be linked to the deterioration of cardiac hypertrophy and haemodynamics. This degradation in CVR further worsened over the longer term due to late-developing pericoronary fibrosis and endothelial dysfunction. Blockade of the RAS had no early effects on LV and RV CVR, but improved RV CVR over the long term, mainly by limiting RV hypertrophy and by preventing the development of pericoronary fibrosis and coronary endothelial dysfunction. 4. In kallikrein-kinin system-deficient mice, CVR was not different from that of wild-type mice, suggesting that this system is not implicated in normal CVR regulation.

Animals↗

[Psychometric properties of a psychological well-being test for people with physical impairments].

Measuring the psychological well-being of people with physical impairments could provide relevant information to occupational therapists. The aim of this study was to verify psychometric properties of a psychological well-being test called Test de personnalité PER (PER). This test was administered to two samples of people with physical impairments. Two time measurements were collected within a group of 36 individuals and one single measure within another group of 79 individuals. Comparisons between time measurements, between groups and with the normative group of the PER were performed in an attempt to verify the sensitivity, the capacity to discriminate between known groups, and the construct validity of the PER. One section of the Sickness Impact Profile measuring psychological well-being was administered to the same groups to verify the concurrent criterion validity of the PER. The results indicate that the PER has sufficient psychometric qualities.

Persons with Disabilities↗

Regulation of the CYB2 gene expression: transcriptional co-ordination by the Hap1p, Hap2/3/4/5p and Adr1p transcription factors.

Expression of the Saccharomyces cerevisiae nuclear gene CYB2 encoding the mitochondrial enzyme L-(+)-lactate-cytochrome c oxidoreductase (EC 1.2.2.3) is subject to several strict metabolic controls at the transcriptional level: repression due to glucose fermentation, derepression by ethanol, induction by lactate and inhibition under anaerobic conditions or in response to deficiency of haem biosynthesis. In this respect, the data obtained from the transcriptional analysis of the CYB2 gene contribute to a better understanding of the control of mitochondrial biogenesis. In this study, we show that Hap1p is the main transcriptional activator involved in the control of CYB2 transcription. We found that Hap1p activity, known to be oxygen dependent, is effected by DNA-protein interaction with two binding sites present in the CYB2 promoter. Control is moreover dependent on carbon sources. This regulation by the carbon substrates is subordinate to the activity of the complex Hap2/3/4/5p, which counteracts the negative effect of the URS1 element. Finally, our results suggest that the Adr1p transcriptional activator is also required in CYB2 transcription control. This work provides new data which allows a better understanding of the molecular mechanisms implicated in the co-regulation at the transcriptional level of the genes encoding proteins involved in various aspects of oxidative metabolism.

Animals↗

Effects of angiotensin II AT1-receptor blockade on coronary dynamics, function, and structure in postischemic heart failure in rats.

Angiotensin II AT1-receptor blockers (AT1-s) prolong survival in experimental postischemic (coronary artery ligation) heart failure (CHF) in rats. The goal of this study was to investigate whether potential beneficial effects of short- and/or long-term treatment with AT1-s on coronary dynamics, function, and structure develop along with the drug-induced survival prolongation in this model. Coronary blood flow was measured (fluorescent microspheres) in conscious sham, untreated, and irbesartan-treated (50 mg/kg daily for 6 weeks or 6 months, starting 8 days after surgery) CHF rats at baseline and at maximal vasodilatation induced by dipyridamole, and coronary dilatation reserve (CDR) was calculated as the ratio of maximal to baseline coronary flow. Coronary endothelial function was assessed in vitro by measuring the coronary relaxant responses to acetylcholine in the three groups of animals. Finally, cardiac hypertrophy and pericoronary fibrosis also were investigated. In CHF rats, left (LV) and right (RV) ventricular CDR were markedly depressed at both 7 weeks and 6 months after ligation, whereas coronary endothelial function was significantly impaired only after 6 months. Short-term AT1-receptor blockade with irbesartan did not prevent CDR deterioration at 7 weeks, nor did it significantly oppose cardiac hypertrophy and pericoronary fibrosis development. Prolonged AT1-receptor blockade prevented both RV CDR deterioration and coronary endothelial function impairment. It also limited significantly the increase in LV end diastolic pressure and the development of cardiac hypertrophy and pericoronary fibrosis. In conclusion, in postischemic CHF in rats, alterations of CDR precede those of coronary endothelial function. Long-, but not short-term AT1-receptor blockade prevents endothelial function degradation, opposes RV CDR impairment, prevents pericoronary fibrosis development, and improves systemic hemodynamics. These effects of AT1-s on coronary dynamics, function, and structure (i.e., on myocardial perfusion) may contribute to the drug-induced survival prolongation in this model.

Angiotensin Receptor Antagonists↗

Fluospheres for cardiovascular phenotyping genetically modified mice.

Assessment of systemic and regional hemodynamic phenotypes in genetically engineered mice by nonradioactive methods is yet an unsolved problem. We therefore investigated whether the reference sample method using fluorescent microspheres (FMs), already validated in rats, might be used for this purpose in C57BL/6 and in apolipoprotein E (ApoE)-deficient mice. FMs were injected into the left ventricle of instrumented anesthetized mice. In 10-week-old C57BL/6, cardiac output was 18-19 ml/min, and its regional distribution under basal conditions was approximately 1.5% (brain), 3.5% (heart), 9. 1% (left kidney), 9.8% (right kidney), 1% (spleen), and 0.8% (stomach) (i.e., values similar to those previously reported with radioactive microspheres). Proper mixing of FMs was achieved as both kidneys had identical flows; distribution of two differently labeled FMs injected simultaneously was shown to be identical by an agreement study, and FM trapping in the capillary bed was demonstrated both histologically and by the recovery in the lungs of 90% of intravenously injected FMs. In addition, identical values for cardiac output and its distribution were obtained in different age-matched groups of C57BL/6. The FM technique also proved to be able to evidence angiotensin II and isoprenaline classic systemic and regional hemodynamic effects. Finally, applied to 30-week-old ApoE-deficient mice and age-matched C57BL/6, the FM technique showed no major hemodynamic difference between the two groups, except for coronary blood flow, which was significantly decreased in ApoE-deficient mice. In conclusion, we demonstrated for the first time the feasibility, accuracy, and reliability of the FM technique at characterizing the cardiovascular phenotype of genetically engineered mice.

Angiotensin II↗

Productivity outcomes of individuals with spinal cord injury.

STUDY DESIGN: Cross-sectional study by mail survey of participation in productive activities of individuals who sustained a spinal cord injury (SCI) in Quebec from 1970 to 1993. OBJECTIVES: To determine the level of productivity outcomes of a representative sample and to determine the relationship between the productivity outcomes and some personal and environmental variables. SETTINGS: Quebec, Canada. METHODS: Four hundred and eighteen subjects (mean of age=42.1+/-11. 8) were included in this study. Overall productivity was assessed by the participation into five categories of activities (gainful employment, studies, homemaking and family activities, community organizations and leisure activities). RESULTS: Depending on the severity of injury, 30% to 51% of the variance in productivity outcomes can be explained by a set of ten variables: education, ability to drive a car vehicle, other transportation indices, age related variables and type of locomotion. A discriminant analysis was undertaken to classify the subjects into three levels of productivity (low, moderate and high). The percentage of subjects correctly classified was moderate (54% to 71%) to high (72% to 81%) depending on the productivity levels. CONCLUSION: The results confirm the significant contribution of education and transportation to explain the productivity outcomes. SPONSORSHIP: This project was funded by the 'Société d'Assurance Automobile du Québec', the 'Commission de la Santé et de la Sécurité du Travail' and the 'Fondation André Senécal'.

Adolescent↗

Systemic and regional hemodynamics assessment in rats with fluorescent microspheres.

The aim of this study was to validate in rats an alternative to the radioactive microspheres (RM) reference technique, the fluorescent microspheres (FM), for the simultaneous determination of cardiac index (CI) and regional blood flows (RBF). Validation of the FM method was performed in three steps: (a) comparison of CI and RBF values obtained simultaneously by FM and RM, (b) determination of the repeatability of the measurements by using two successive injections of FM, and (c) evaluation of the ability of the FM method to assess vasodilating effects (by using dipyridamole). CI values (range, 242-513 ml/min x kg; n = 20) obtained with FM correlated with those obtained with RM (r = 0.82: p<0.001), and agreement was found between FM and RM (error 95% confidence interval for one pair, +/-125 ml/min x kg). FM RBF values, although smaller than corresponding RM RBF values, were correlated with the latter (range, 0.1-7 ml/min x g; n = 71; r = 0.99; p< 0.001). Agreement was dependent on RBF values, e.g., error 95% confidence intervals for one pair were 0.08-0.13 and 3.86-6.48 for 0.1 and 5 ml/min x g, respectively. Two successive FM injections at a 10-min interval (conscious rats) provided similar values (n = 14) for CI (306+/-24 vs. 346+/- 18 ml/min x kg), and renal (5.1+/-0.2 vs. 6.2+/-0.3 ml/min x g), left (6.1+/-0.3 vs. 5.8+/-0.4 ml/min x g) and right (4.8+/-0.4 vs. 4.7+/-0.3 ml/min x g) myocardial RBF. Corresponding error 95% confidence intervals were +/-187 ml/min x kg, +/-2.8, +/-2.2, and +/-2.0 ml/min x g, respectively. Dipyridamole (2, 4, 6, and 8 mg/kg x min for 10 min, i.v.; n = 9-13 per group, conscious rats) significantly and dose dependently increased left and right myocardial blood flows, whereas renal blood flow was not affected. We conclude that the FM technique (a) is reliable and in agreement with the RM method, (b) provides repeatable measurements of systemic and regional hemodynamics, and (c) allows detection and quantification of vasodilating effects in rats.

Animals↗

Combined selective angiotensin II AT1-receptor blockade and angiotensin I-converting enzyme inhibition on coronary flow reserve in postischemic heart failure in rats.

We investigated whether angiotensin I-converting enzyme inhibition (ACEI) and angiotensin II AT1-receptor blockade (AT1-) would exert beneficial additive effects on coronary hemodynamics and on cardiac remodeling in post-myocardial infarction (MI) heart failure in rats. Wistar rats with MI were treated daily for 6 weeks with either trandolapril (0.1 mg/kg), losartan (3 mg/kg), or their combination, after which coronary hemodynamics (basal and at maximal vasodilation, fluospheres), systemic hemodynamics, and cardiac remodeling were investigated. Neither trandolapril nor losartan (both in nonantihypertensive doses) nor their combination (which significantly decreased blood pressure) proved to be effective at improving MI-induced impairments of basal coronary hemodynamics and of coronary flow reserve, and at preventing cardiac fibrosis development. In contrast, both trandolapril and losartan significantly improved the hemodynamic status [e.g., left ventricular end diastolic pressure: -27% and -39%, urinary cyclic guanosine monophosphate (GMP): -37%, and -26%, respectively] and slightly limited cardiac hypertrophy (-5% and -3%, respectively), and, in their combination, tended to exert additive effects on these three parameters (-49, -42, and -10%, respectively). Thus whereas the ACEI/AT1- combination tended to exert additive effects on systemic hemodynamics and cardiac hypertrophy in post-MI heart failure rats, no such effect was found for coronary hemodynamics, probably in relation to the lack of prevention of cardiac fibrosis. We conclude that an early (6 weeks) drug-induced improvement in coronary hemodynamics does not contribute to the long-term survival prolongation observed in this experimental model after either ACEI or AT1-.

Angiotensin Receptor Antagonists↗

Valsartan and coronary haemodynamics in early post-myocardial infarction in rats.

Angiotensin II AT1 receptor blockade (AT1-) has been shown to prolong survival in post-myocardial infarction (MI) heart failure in rats. In this study, we investigated whether an early AT1-induced improvement in coronary vasodilatation reserve (CVR) might be involved in this beneficial effect. Wistar rats with MI were treated daily and orally for 6 weeks with valsartan, 5 (MI-V5) or 50 mg/kg (MI-V50). MI-controls and sham-operated rats (S-controls) received no treatment. Subsequently, systemic and coronary haemodynamics (at baseline and at maximal vasodilatation, CVR fluospheres) were investigated in the conscious state, and cardiac remodelling (hypertrophy and fibrosis) was assessed. As compared to MI-controls. valsartan (5 mg/kg), had no effect on systemic haemodynamics or myocardial hypertrophy and fibrosis development, gave slightly improved basal left and right ventricular coronary flow and resistance values, but decreased left and right CVR values. Valsartan (50 mg/kg), decreased blood pressure (-11%) and left ventricular end diastolic pressure (-32%), limited the development of cardiac hypertrophy (19%) but not that of fibrosis, slightly improved basal left ventricular flow and resistance values but only the right ventricular CVR value was increased. We conclude that in rats with post-MI. an early AT1-induced improvement in coronary haemodynamics is not responsible for the long-term survival prolongation observed. Furthermore. that cardiac hypertrophy was prevented whereas fibrosis was not, suggests that the latter is a pivotal determinant of CVR.

Administration, Oral↗

Evidence of an overlap between the two half-sites of UAS1-B/CYC1--a new model for Cyp1p (Hap1p) DNA binding.

Cyp1p (Hap1p) is a yeast transcriptional regulator belonging to the zinc-cluster family. CGGNNNTANCGG was identified by PCR selection as the DNA sequence allowing its optimal binding. Nevertheless, this sequence is not a consensus sequence, the simultaneous presence of the two CGGs and the TA generally not being found in the known natural Cyp1p targets. In fact, our previous studies showed that the mechanism of Cyp1p DNA binding was target dependent. Data concerning the binding of Cyp1p to the UAS1-B/CYC1 are presented here. This target, containing the CGGGGTTTACGG sequence, was found to present the particular ability of stabilizing the binding of only one molecule of some monomeric Cyp1p fragments. This property was used to investigate the actual contribution of the TT and CGG sequences in the binding of Cyp1p. Our results indicate that each CGG belongs to a different half-site and, in contrast to a previous hypothesis, that the T nucleotide located four bases downstream from the left CGG is essential for the binding of one monomer to each half-site. The two half-sites of the UAS1-B/CYC1 thus overlap.

Carbon-Oxygen Lyases↗

NMR analysis of CYP1(HAP1) DNA binding domain-CYC1 upstream activation sequence interactions: recognition of a CGG trinucleotide and of an additional thymine 5 bp downstream by the zinc cluster and the N-terminal extremity of the protein.

The DNA binding domain of the yeast transcriptional activator CYP1(HAP1) contains a zinc-cluster structure. The structures of the DNA binding domain-DNA complexes of two other zinc-cluster proteins (GAL4 and PPR1) have been studied by X-ray crystallography. Their binding domains present, besides the zinc cluster, a short linker peptide and a dimerization element. They recognize, as homodimers, two rotationally symmetric CGG trinucleotides, the linker peptide and the dimerization element playing a crucial role in binding specificity. Surprisingly, CYP1 recognizes degenerate forms of a direct repeat, CGGnnnTAnCGGnnnTA, and the role of its linker is under discussion. To better understand the binding specificity of CYP1, we have studied, by NMR, the interaction between the CYP1(55-126) peptide and two DNA fragments derived from the CYC1 upstream activation sequence 1B. Our data indicate that CYP1(55-126) interacts with a CGG and with a thymine 5 bp downstream. The CGG trinucleotide is recognized by the zinc cluster in the major groove, as for GAL4 and PPR1, and the thymine is bound in the minor groove by the N-terminal region, which possesses a basic stretch of arginyl and lysyl residues. This suggests that the CYP1(55-126) N-terminal region could play a role in the affinity and/or specificity of the interaction with its DNA targets, in contrast to GAL4 and PPR1.

Amino Acid Sequence↗

Resonance Raman study on the oxidized and anionic semiquinone forms of flavocytochrome b2 and L-lactate monooxygenase. Influence of the structure and environment of the isoalloxazine ring on the flavin function.

The oxidized and semiquinone anion radical forms of flavin mononucleotide carried by flavocytochrome b2 and L-lactate monooxygenase have been studied by resonance Raman (RR) spectroscopy. The RR spectra of their oxidized forms are compared with previously published RR data on various flavins and flavoproteins. Taking as a support available X-ray crystallographic data on flavoproteins, we have found correlations between the frequencies of RR bands II (1575-1588 cm-1), III (1534-1557 cm-1), and X (1244-1266 cm-1) and the H-bonding environment and/or the structure of the flavin ring. The present RR data provide strong evidence that the electron density, the conformation, and the H-bonding environment of the oxidized flavin mononucleotide of flavocytochrome b2 and L-lactate monooxygenase are different. As far as the anionic semiquinone form of flavoproteins is concerned, the behavior of two bands observed at 1280-1300 and 1320-1350 cm-1 suggests that they have vibrational origins similar to those of RR bands II and III of oxidized compounds. On this basis, the differences in conformation and H-bonding environment of the isoalloxazine ring, observed for the oxidized form of flavocytochrome b2 and L-lactate monooxygenase, appear to be preserved upon one-electron reduction of the flavin. For both flavoproteins, the RR spectra of the semiquinone form are affected by pyruvate binding. The data are interpreted in the frame of a change in H-bonding interaction of the C4&dbd;O carbonyl group of the flavin without significant alteration of the isoalloxazine conformation. This modification in electrostatic interaction quantitatively accounts for the pyruvate-induced changes of the oxidized/semiquinone and semiquinone/reduced redox potentials of the flavoproteins. Considering the high homology in the flavin catalytic sites of flavocytochrome b2 and L-lactate monooxygenase, the observed differences in H-bonding environment and conformation of the FMN ring are related to the different biological functions of the two flavoproteins.

Benzoquinones↗

Some DNA targets of the yeast CYP1 transcriptional activator are functionally asymmetric--evidence of two half-sites with different affinities.

CYP1 protein is a yeast transcriptional regulator which contains a zinc cluster in its DNA-binding domain. It was recently shown by selecting random CYP1 binding sites that CYP1 protein recognizes with a higher affinity targets containing the CGGNNNTANCGG consensus sequence. Notably, this ideal sequence is however not found in wild-type CYP1 target sites. In order to investigate how CYP1 protein actually binds to its targets, mutations were introduced in three of them (UAS1-A/CYC1, UAS1-A/CYB2, UAS/CYC7) and the consequences towards the binding of purified CYP1-(1-200)-peptide were analyzed. Our data support the following conclusions: (a) When the sequence element contains two CGGs and no TA, both CGGs are essential for binding. (b) If the sequence element contains only the right CGG and the TA, both are sufficient but indispensable for the binding of CYP1. (c) When two CGCs and the TA are present, the right CGC, and not the left one, is essential for the binding of CYP1. (d) CYP1-(1-200)-peptide is usually a monomer in solution but binds DNA as a dimer. Finally, we found evidence for the presence of two half-sites with different measured affinities in the asymmetric sequences of some CYP1 targets.

Base Sequence↗

[The rehabilitation of the psychiatric hospital. A question of audacity and synergy].

Using a mode of psychodynamic analysis, this article exposes some similarities between the factors that hinder the social reintegration of the "patient" and the social and political forces opposing the "rehabilitation" of the social institution represented by the psychiatric hospital. In support to this analogy, the article outlines the transformations realized over the last few years at the Centre hospitalier psychiatrique Sainte-Thérèse of Shawinigan and suggests that, in order to make such changes, the development of rehabilitation services can serve as a catalyst. The authors also propose a perceptual analysis of human, political and social reactions created by the metamorphosis of the traditional role attributed to the psychiatric hospital.

Attitude to Health↗

1H, 15N resonance assignment and three-dimensional structure of CYP1 (HAP1) DNA-binding domain.

CYP1(HAP1) is a transcriptional activator involved in the aerobic metabolism of the yeast Saccharomyces cerevisiae. The amino acid sequence of its DNA-binding domain suggests that it belongs to the "zinc cluster" class. This region is indeed characterized by a pattern known to form a bimetal thiolate cluster where two zinc ions are coordinated by six cysteine residues. Structures of two such domains, those from GAL4 and PPR1, have been solved as complexes with DNA. These domains consist of the zinc cluster connected to a dimerization helix by a linker peptide. They recognize, as a dimer, an inverted repeat of a CGG motif that is separated by a specific number of bases. Interestingly, the specificity of that interaction seems not to be due to the interaction between the cluster region and the DNA but rather to a fine tune between the structure of the linker peptide and the number of base-pairs separating the two CGGs. However, the CYP1 target sites fail to display such a consensus sequence. One of the two CGG sites is poorly conserved and some experiments suggest a direct rather than an inverted repeat. Using 1H, 15N and 113Cd NMR spectroscopy, we have undertaken the analysis of the structural properties of the CYP1(56-126) fragment that consists of the zinc-cluster region, the linker peptide and a part of the dimerization helix. We have demonstrated that the six cysteine residues of the peptide chelate two cadmium ions as in GAL4 and PPR1. Fifteen structures of the zinc-cluster region (residues 60 to 100) were calculated, the linker peptide and the dimerization helix being unstructured under the conditions of our study. This region possesses the same overall fold as in GAL4 and PPR1, and most of the side-chains involved in the interaction with DNA are structurally conserved. This suggests that the CYP1 zinc-cluster region recognizes a CGG triplet in the same way as GAL4 and PPR1. In this case, the particular properties of CYP1 seem to be due to the structure of the linker peptide and/or of the dimerization helix.

Amino Acid Sequence↗

The DNA-binding domain of the yeast Saccharomyces cerevisiae CYP1(HAP1) transcription factor possesses two zinc ions which are complexed in a zinc cluster.

Various fragments of the N-terminal, DNA-binding domain of the yeast Saccharomyces cerevisiae transcriptional activator CYP1(HAP1) have been cloned and expressed in Escherichia coli. The corresponding polypeptides have been analysed biochemically and we have undertaken a more extensive physical study of a fragment consisting of amino acids 49-126 [CYP1(49-126)]. We show that this CYP1(49-126) peptide requires zinc or cadmium in the growth medium in order to maintain a stable structure. A method to purify CYP1(49-126) is presented. We demonstrate that the purified CYP1(49-126) fragment contains two zinc ions/fragment or two cadmium ions/fragment, which are necessary for DNA binding. 113Cd one-dimensional NMR data suggest that CYP1(HAP1) has a tetrahedral coordination, and that it forms a zinc-cluster complex like GAL4.

Amino Acid Sequence↗

Expression in Escherichia coli of the flavin and the haem domains of Hansenula anomala flavocytochrome b2 (flavodehydrogenase and b2 core) and characterization of the recombinant proteins.

The flavin and haem domains of Hansenula anomala flavocytochrome b2 have been independently expressed in Escherichia coli. The flavin domain activity, studied only in the total cellular extract, owing to its instability, has characteristics very similar to those of the flavin domain obtained by proteolysis. The haem domain (r-core) has been purified to homogeneity and characterized in detail from spectroscopic and functional points of view. Spectral differences with respect to the domain produced by proteolysis (p-core) were found using resonance Raman and c.d. spectroscopy and have been interpreted in terms of changes in haem-protein interactions. However, this structural difference is functionally silent, since the r-core is able to reduce cytochrome c with the same efficiency as the proteolytic domain.

Base Sequence↗