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Biomedical subjects

Y Kohno

Publications and source records attributed to Y Kohno.

At least 109 records · Page 6Linked to original sources

Differential effects of talipexole and bromocriptine on serotonin release from rat intestinal tissues--an in vitro study of the emetic response of antiparkinsonian dopamine agonists.

In order to elucidate the role of emetic action, the effects of talipexole and bromocriptine, two antiparkinsonian dopamine receptor agonists, on serotonin (5-HT) release from enterochromaffin (EC) cells were studied by measuring 5-HT concentrations in the perfusate of the isolated rat ileum. Bromocriptine (10(-8)-10(-6) M), which exerts agonistic effects on D1 and D2 receptors, increased 5-HT release in a concentration-dependent manner. No significant increase in 5-HT release was seen after addition of talipexole, which selectively stimulates D2 receptors and blocks 5-HT3 receptors, even at 10(-6) M. The increase in 5-HT release caused by bromocriptine at 10(-6) M was inhibited by administration of 10(-6) M of D1 receptor antagonist SCH 23390, D2 receptor antagonist spiperone, 5-HT3 receptor antagonist granisetron or tetrodotoxin (TTX). These results showed the involvement of both dopaminergic and serotonergic mechanisms in the 5-HT release from EC cells following the administration of dopamine receptor agonists. Bromocriptine might induce 5-HT release by stimulating D1, D2 and 5-HT3 receptors and depolarizing neurons in the ileum. On the other hand, talipexole might weaken 5-HT release from EC cells elicited by D2 receptor stimulation with its 5-HT3 receptor blocking property. It is suggested that the emetic effect of dopamine receptor agonists involves the peripheral gastrointestinal tract as their site of action.

Administration, Oral↗

Relationship between SCL-90, Maudsley Personality Inventory and CCK4-induced intracellular calcium response in T cells.

This study examined the relationship between the Symptom Checklist 90 (SCL-90), Maudsley Personality Inventory (MPI) and cholecystokinin 4 (CCK4)-induced intracellular calcium response in T cells. Fifty-two normal volunteers were 37 males and 15 females; they ranged in age from 23 to 44 years. Measures included CCK4-induced intracellular calcium response in T cells, SCL-90 scores, and MPI. Paranoid ideation and interpersonal sensitivity in SCL-90 showed a significant negative association with CCK4-induced intracellular calcium response. Absent were sex differences and extroversion and neuroticism correlations. There were no significant differences between men and women in SCL-90 or MPI scores. There was no correlation among extroversion and neuroticism and CCK4-induced intracellular calcium response. CCKB receptor function might play a role in paranoid ideation and interpersonal sensitivity.

Adult↗

Characterization of N93S, I312T, and A333P missense mutations in two Japanese families with mitochondrial acetoacetyl-CoA thiolase deficiency.

Mitochondrial acetoacetyl-CoA thiolase (T2) deficiency is an inborn error of ketone body and isoleucine catabolisms. Japanese patients, GK01 and GK19, were found to be compound heterozygotes of 149delC and A333P, and N93S and I312T, respectively. The latter three missense mutations were individually characterized by analyses of transient expression of the cDNAs and heat stability. A333P and I312T subunits showed aberrant electrophoretic mobility on SDS-PAGE. T2 protein was destabilized by A333P and existed as an insoluble form in the mitochondria. I312T mutation also destabilized T2 protein; however, some T2 protein was retained in soluble form and reduced residual activity was apparent. N93S mutation did not change the heat stability of T2 activity and the reduced residual activity was retained, however a considerable amount was observed in an insoluble form. The effects of mutations were interpreted based on a tertiary structural model of a subunit of the human T2. This model was constructed from the X-ray crystal structure of the homologous peroxisomal 3-ketoacyl-CoA thiolase of Saccharomyces cerevisiae. On the basis of this model, the positions of Ala333 and Ile312 were far from the active site and the mutations would be expected to destabilize the tertiary structure of T2 subunit. By contrast, Asn93 is located near the active site and may function to maintain a local loop structure. The mutation of Asn93 could directly disrupt disposition of the active site.

Acetyl-CoA C-Acetyltransferase↗

Determinant analysis of IgE and IgG4 antibodies and T cells specific for bovine alpha(s)1-casein from the same patients allergic to cow's milk: existence of alpha(s)1-casein-specific B cells and T cells characteristic in cow's-milk allergy.

In an effort to clarify the etiology of milk allergy from the standpoint of allergen-specific immune reactions, we investigated the determinants of IgE, IgG4, and T cells specific for bovine alpha(s)1-casein from the same individual patients by using its synthetic peptides and cyanogen bromide-digested fragments. Alpha(s)1-casein is a major allergen in cow's milk, and its unique conformation enabled us to investigate the determinants of antibodies without consideration about missing the reactivities because of conformational changes. Nine patients were selected as subjects from among 129 milk-sensitive infants screened by ELISA to assess the anti-alpha(s)1-casein IgE levels in their sera. By using ELISA for epitope mapping, a C-terminal region of alpha(s)1-casein was identified as a common binding site for IgE from all of these patients, whereas those for anti-alpha(s)1-casein IgG4 were located in multiple regions of alpha(s)1-casein. We determined the specificities of seven alpha(s)1-casein-specific T-cell lines established from peripheral blood mononuclear cells of two of the patients. These T cells have been shown to secrete IL-4. All of the T-cell lines had different specificities to alpha(s)1-casein. However, a common amino acid residue use was found among the determinants of various T-cell lines from each patient. The results suggest that patients allergic to cow's milk have characteristic B cells recognizing a limited region of alpha(s)1-casein and secreting alpha(s)1-casein-specific IgE. These B cells may interact particularly with T cells recognizing determinants with a common structure.

Amino Acid Sequence↗

Effect of rush immunotherapy on airway inflammation and airway hyperresponsiveness after bronchoprovocation with allergen in asthma.

BACKGROUND: Rush immunotherapy (RIT) has been shown to be effective in allergic asthma. OBJECTIVE: We investigated the mechanisms of RIT on the basis of cytokine production by T-cell lines and airway inflammation and responsiveness. METHODS: Subjects were 8 patients with house dust mite-allergic asthma treated with dust mite extract RIT for 6 months and 6 RIT-untreated control patients. IL-5 production by Dermatophagoides farinae -specific T-cell lines, eosinophil percentages, and eosinophil cationic protein (ECP) in induced sputum and airway responsiveness to allergen and histamine were evaluated before and after treatment. Changes in eosinophil percentages and ECP in induced sputum and responsiveness to histamine 24 hours after allergen inhalation were also studied. RESULTS: After 6 months of RIT, percentages of total eosinophils (43. 0% +/- 6.90% to 16.8% +/- 2.48%; P <.01), percentages of EG2(+ ) eosinophils (32.6% +/- 6.39% to 19.7% +/- 4.68%; P <.01) and ECP (362.7 +/- 125.3 ng/mL to 26.2 +/- 5.15 ng/mL; P <.05) decreased in induced sputum, and IL-5 production by T-cell lines decreased (617 +/- 93.2 pg/mL to 200.0 +/- 34.1 pg/mL; P <.01). RIT decreased both early- and late-phase bronchoconstriction (early phase: 33.2% +/- 3. 46% to 25.4% +/- 1.42%; P <.03; late phase: 16.2% +/- 3.52% to 6.2% +/- 1.96%; P <.03) and suppressed increases in the percentages of total (61.8% +/- 4.89% to 42.0% +/- 4.67%; P <.01) and EG2-positive eosinophils (55.54% +/- 7.21% to 36.5% +/- 6.43%; P <.01) and ECP (685.6 +/- 217.0 ng/mL to 85.4 +/- 23.4 ng/mL; P <.05) in induced sputum after allergen inhalation. RIT also decreased airway responsiveness to dust mite (1:303.7 +/- 123.7 wt/vol to 1:65.0 +/- 13.2 wt/vol; P <.03) and to histamine before (397.1 +/- 206.9 microgra/mL to 1391.3 +/- 283.3 microgram/mL; P <.03) and after allergen inhalation (139.2 +/- 36.5 microgram/mL to 629.1 +/- 196.3 microgram/mL; P <.03). CONCLUSION: RIT decreases airway inflammation and airway hyperresponsiveness before and after bronchial provocation with allergen, possibly by inhibiting both allergen-specific T-cell- and mast cell-dependent pathways. RIT is an effective antiinflammatory treatment in allergic asthma.

Adult↗

The formation of thyrotropin receptor (TSHR) antibodies in a Graves' animal model requires the N-terminal segment of the TSHR extracellular domain.

Immunization of AKR/N mice with murine fibroblasts, transfected with the TSH receptor (TSHR) and a murine major histocompatibility complex class II molecule having the same H-2k haplotype (but not either alone), induces immune thyroid disease with the humoral and histological features of human Graves', including the presence of two different TSHR antibodies (TSHRAbs): stimulating TSHRAbs, which cause hyperthyroidism; and TSH-binding-inhibiting immunoglobulins. The primary functional epitope for both types of antibodies in Graves' patients is on the N-terminal portion of the extracellular domain of the TSHR, residues 25 to 165; most require residues 90-165 to express TSHRAb activity, as evidenced in studies using chimeras of the TSHR and lutropin-choriogonadotropin receptor (LH-CGR). To evaluate the role of this region of the TSHR in the formation of Graves' TSHRAbs, we immunized AKR/N mice with fibroblasts transfected with three human TSHR chimeras with residues 9-165 (Mc1+2), 90-165 (Mc2), or 261-370 (Mc4) substituted by equivalent residues of the rat LH-CGR. Mice immunized with the Mc1+2 and Mc2 chimeras, with the N-terminal portion of the extracellular domain of the TSHR substituted by LH-CGR residues, did not develop TSHRAbs. Mice immunized with the Mc4 chimera, having a major portion of the C-terminal portion of the extracellular domain of the TSHR replaced by comparable LH-CGR residues, can develop TSHRAbs. The results suggest that the N-terminal segment of the TSHR extracellular domain is not only a critical functional epitope for Graves' TSHRAbs, but it is important also in their formation in a mouse model of Graves' disease.

Animals↗

Retention mechanism of imidazoles in connective tissue. IV. Identification of a nucleophilic imidazolone metabolite in rats.

Formation of a nucleophilic 4(5H)(or 5(4H))-imidazolone structure has been postulated from in vitro studies to be one of the causative elements involved in the retention of drugs with imidazole moiety in connective tissue. To confirm this, we searched for the imidazolone-related metabolite in rats after intravenous dosing of 2-methylimidazole (2MI; 14C-labeled and unlabeled form, 3 and 300 micromol/kg body weight) as a model compound. The excreted urine, the major route of elimination of the compound, was collected and analyzed using the HPLC/MS system with a counterion effect for metabolite separation. 2-Methyl-4(5H)(or 5(4H))-imidazolone (2MIone) was identified as a urinary metabolite by chromatographic and mass-spectral inspection with the corresponding authentic standard. Pretreatment of rats with either SKF-525A (50 mg/kg, i.p.) or cimetidine (200 mg/kg, i.p.) significantly increased the excreted amount of 2MIone in urine and the irreversible binding of 2MI equivalents in the aortic tissue, whereas both factors were reduced by pretreatment with triethylenetetramine dihydrochloride (150 mg/kg/d for 5 d, s.c.). These results support the aforementioned deduction, and also raise the possibility that a cytochrome P450-independent, copper-related metabolic reaction might be involved in the imidazolone formation in vivo.

Animals↗

Retention mechanism of imidazoles in connective tissue. II. Activation of imidazoles in cupro-ascorbate system for irreversible binding formation with aortic tissue in vitro.

In order to obtain an insight into the retention mechanism of drugs with imidazole moiety in the connective tissue, the in vitro characteristics of the interaction between 14C-labeled imidazoles (imidazole and its 2-methyl derivative) and slices of dog aorta were studied. We found that cupro-ascorbate-catalyzed oxidative reactions for the imidazoles led to their irreversible binding with connective tissue, and that, from a study using protein modifiers, the aldehydic function intrinsic to the tissue protein was involved in the binding formation. This characteristic in vitro was observed under physiological conditions, hence it can be extrapolated to the in vivo situation and could also give a clue to the nature of the retention of imidazole-containing drugs in connective tissue.

Animals↗

Retention mechanism of imidazoles in connective tissue. III. Aldehyde adduct formation of a 4(5H)(or5(4H))-imidazolone product in vitro.

2-Methylimidazole (2MI), as well as imidazole, has been thought to undergo cupro-ascorbate (Cu-VC)-catalyzed oxidative transformation in vitro to become a reactive species capable of combining with aldehydes intrinsic to connective-tissue proteins. We attempted to seize the essence of the above reaction through obtaining the structural information of an aldehyde-bonding species. As major products from 2MI in the in vitro Cu-VC system, 2-hydroxymethylimidazole (2(OH)MI) and 2-methyl-4(5H)(or 5(4H))-imidazolone (2MIone) were identified by mass-spectral and chromatographic comparison with the corresponding authentic standards synthesized. The in situ addition of acetaldehyde or propionaldehyde as a simple protein-aldehyde model to the system resulted in the deducible formation of an aldol condensate, 2-methyl-4(or 5)-ethylidene-4(5H)(or 5(4H))-imidazolone (2MEIone) or its possible analogue with a propylidene moiety, respectively. The authentic compound of 2MIone directly reacted with acetaldehyde and easily afforded the products assignable to the isomers of 2MEIone through the ethylidene moiety at physiological pH and temperature, whereas neither 2MI or 2(OH)MI reacted at all. These results suggest that a 4(5H)(or 5(4H))-imidazolone product, although simply a monooxygenated form, is sufficiently reactive to give aldol condensation-typed covalent adducts with aldehydes, even under physiological conditions, probably having an activated methylene moiety in the ring structure. Based on the present results, we discussed the mechanism of the retention of imidazole-containing drugs in connective tissue.

Acetaldehyde↗

[Comparative studies on antiparkinsonian agents, talipexole and bromocriptine, evaluated by contralateral rotational behavior in unilaterally nigral-lesioned rats].

The stimulating effect of antiparkinsonian drugs, talipexole and bromocriptine, on the striatal postsynaptic dopamine receptors were studied by measuring contralateral rotational behavior in rats. The nigro-striatal dopamine system of rats was degenerated by unilateral injection of 6-hydroxydopamine (6-OHDA, 8 micrograms/rat) into substantia nigra. By subcutaneous administration, talipexole at 0.16 mg/kg and bromocriptine at 10.24 mg/kg induced significantly increased rotational behavior to the contralateral direction to the lesioned side. The onset of the effect was 30 min for talipexole and 90 min for bromocriptine. By intragastric administration, talipexole at 0.4 mg/kg and bromocriptine at 20.48 mg/kg significantly increased the rotational behavior, and the onset of the effect was 60 min for talipexole and 180 min for bromocriptine. Rotational behavior induced by talipexole was suppressed by a D2 antagonist, sulpiride (40 mg/kg, s.c.), but not by a D1 antagonist, SCH23390 (1 mg/kg, s.c.). In contrast, rotational behavior induced by bromocriptine was suppressed by both sulpiride and SCH23390. These results indicated that when the nigrostriatal dopaminergic functions are disrupted, talipexole stimulates the striatal postsynaptic dopamine receptors at much lower doses than bromocriptine. Also it was indicated that the stimulating effect of talipexole is solely mediated by dopamine D2 receptors, whereas the effect of bromocriptine is mediated by both D1 and D2 receptors.

Administration, Oral↗

Effects of talipexole on contraversive rotation and functional impairment in MPTP-induced chronic hemiparkinsonian monkeys.

The effects of talipexole on functional motor improvement in comparison with contraversive circling were studied in five chronic (5-7 years post MPTP-lesioned) hemiparkinsonian Macaca nemestrina monkeys. Talipexole induced contraversive rotations in a dose of 32 microg/kg for about 1 hr after i.m. injection. Larger doses (56 and 100 microg/kg, i.m.) produced less effect due to sedation. Three different rating scales were used to assess functional improvement, including a clinical parkinsonism rating scale, volitional responses to fruit presentations, and number of significant hand movements. The optimal dose of talipexole was 32 microg/kg, i.m. Functional improvement by talipexole, including clinical parkinsonian rating scales and significant hand movements, as well as contraversive circling in hemiparkinsonian monkeys, confirm that this chronic animal model is useful in preclinical testing of drugs for the treatment of human parkinsonism.

Animals↗

[Allergen-induced cytokine messenger RNA expression of peripheral blood mononuclear cells in active and remission of food allergy].

Substantial part of patients who suffer from food allergy outgrow their allergic reaction. Moreover the mechanisms of this phenomenon are poorly understood. We studied cytokine mRNA expression in peripheral blood mononuclear cells (PBMC) from children with egg allergy, nine patients on active stage and eight were outgrown, and four healthy controls, by use of reverse transcription polymerase chain reaction. Following ovalbumin (OVA) stimulation in vitro, active patients demonstrated increasing IL-5 mRNA. In comparison, no increasing expression of IL-5 mRNA was observed in outgrown and healthy children. IL-4 and IFN-gamma mRNA expression has no tendency either to increase or to decrease in all three groups. There was no difference of proliferative responses for OVA among these groups suggesting that outgrown patients' PBMC did not fall into anergy or clonal deletion. These data suggested the change in balance of cytokine production of PBMC which were stimulated by allergen is a trigger for "outgrow" of food allergy.

Allergens↗

Effect of theophylline withdrawal on airway inflammation in asthma.

Theophylline has been used as a bronchodilator in acute and chronic asthma management, although there is accumulating evidence that it may have anti-inflammatory effects. We have investigated the effect of theophylline withdrawal for 6 weeks in asthmatic subjects whose peak expiratory flow (PEF) readings were more than 80% of the predicted value and its variability was less than 20% (Green Zone) by treatment with both a moderate dose of inhaled corticosteroids (BDP), 400-800 microg/day) and low dose theophylline (400 mg/day) for more than 3 months. In 38 asthmatic subjects, changes in clinical symptoms, respiratory function and airway inflammation detected with hypertonic saline induced sputum, and airway reactivity to histamine were investigated. One half of the patients were randomly withdrawn from theophylline, while the other half continued to take the same dose of theophylline for a period of 6 weeks. Mean steady state plasma theophylline concentrations when receiving treatment with theophylline were 8.08 microg/mL in the theophylline withdrawal group and 7.64 microg/mL in the control theophylline group, respectively. Although a significant increase in asthma symptoms emerged in the theophylline group, there were no significant changes in the theophylline administration group. In the theophylline withdrawal group, there were small but significant falls in PEF in the morning, FEV1 and V50 at the end of the study period. Analysis of induced sputum showed that there was also a significant increase in the percentage of total and activated (EG2+) eosinophils only in those patients who withdrew from theophylline. These results indicate that chronic treatment with low dose theophylline exerts an anti-inflammatory effect and that the additional use of theophylline with inhaled corticosteroids provides an effective treatment for moderate asthma. Taken together, we conclude that theophylline has long-term beneficial effects on the chronic asthma management.

Administration, Oral↗

Protective effects of the antiparkinsonian drugs talipexole and pramipexole against 1-methyl-4-phenylpyridinium-induced apoptotic death in human neuroblastoma SH-SY5Y cells.

Treatment of human neuroblastoma SH-SY5Y cells with 1 mM 1-methyl-4-phenylpyridinium (MPP+) for 3 days induced production of reactive oxygen species (ROS), followed by caspase-3 activation, cleavage of poly(ADP-ribose) polymerase (PARP), and apoptotic cell death with DNA fragmentation and characteristic morphological changes (condensed chromatin and fragmented nuclei). Simultaneous treatment with 1 mM talipexole slightly inhibited the MPP+-induced ROS production and apoptotic cell death. In contrast, pretreatment with 1 mM talipexole for 4 days markedly protected the cells against MPP+-induced apoptosis. However, this protective effect might not be mediated by dopamine receptors. The talipexole pretreatment induced an increase in antiapoptotic Bcl-2 protein level but had no effect on levels of proapoptotic Bax, Bak, and Bad. It also inhibited MPP+-induced ROS production, p53 expression, and cleavages of caspase-3 and PARP. Similarly, pramipexole pretreatment increased Bcl-2 and inhibited MPP+-induced apoptosis. Although pretreatment with bromocriptine also had a protective effect against MPP+-induced apoptosis, it had no effect on the protein levels of Bcl-2 family members. On the other hand, N6,2'-O-dibutyryl cAMP or calphostin C induced a decreased Bcl-2 level and enhanced MPP+-induced cell death. These results suggest that talipexole has dual actions: (1) it directly scavenges ROS, affording slight protection against MPP+-induced apoptosis, and (2) it induces Bcl-2 expression, thereby affording more potent protection, if it is administrated before MPP+. Pramipexole has similar effects, whereas bromocriptine seems to exhibit the former but not the latter effect.

1-Methyl-4-phenylpyridinium↗

Effects of pramipexole on contraversive rotation and functional motor impairments in 1-methyl-4-phenyl1,2,3, 6-tetrahydropyridine-induced chronic hemiparkinsonian monkeys.

Rotational and functional motor behavioral changes were studied in five MPTP lesioned chronic hemiparkinsonian Macaca nemestrina monkeys after i.m. pramipexole, a predominant D2 subfamily agonist. Pramipexole induced contraversive rotations in a dose-dependent manner with an optimal dose of 56 microg/kg for approximately 2 to 4 hr after injection. Three different rating scales were used to determine drug-induced functional improvement. They included a monkey parkinsonism rating scale, volitional responses to fruit presentations, and number of hand movements that appeared volitional. A dose of 56 microg/kg of pramipexole produced functional improvements on hand disability, and on a parkinsonian rating scale for monkeys in a dose-dependent manner from 32 to 100 microg/kg. These doses produced an increase in significant hand movements in the affected (contralateral) as well as in the normal (ipsilateral) hand to the side of the brain lesion compared with 5% dextrose in water vehicle control. With a dose of 100 microg/kg, the therapeutic effects of pramipexole on hand movements were less than with 56 microg/kg, due to side effects such as scratching.

1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine↗

Different element ratios of red cosmetics excavated from ancient burials of Japan.

Marker elements of red cosmetics, collected from ancient burials of Matsuyama, Tokushima and Nara Japan, were determined by emission spectrometry (ICP/AES). The mass ratios of Hg, Fe, Cu, and Zn were different between samples. Element levels were compared with reference to relative amounts of sulfur. Of the possible contaminants from the bone and sand of burials, the relative amounts of Hg and Fe to S were most commonly available to evaluate the difference between the cosmetics. The cosmetics were divided into four groups; type I (high Hg with less Fe), type II (both moderate Hg and Fe), type III (moderate Hg with high Fe) and type IV (less Hg with high Fe). The main constituents of cosmetics are mercury sulfide (cinnabar) or ferric oxide mixed with trace metals. Zinc contents differ between the Fe and Hg amounts for the three areas. Cosmetic compositions varied with each burial site, suggesting that they were derived from different mines of ancient Japan.

Anthropology↗

Talipexole or pramipexole combinations with chloro-APB (SKF 82958) in MPTP-induced hemiparkinsonian monkeys.

The effects of two predominant dopamine D2-like receptor agonists, talipexole (6-allyl-2-amino-5,6,7,8-tetrahydro-4H-thiazolo [4,5-d]-azepine dihydrochloride, B-HT 920 CL2) and pramipexole (S(-)2-amino-4,5,6,7-tetrahydro-6-propyl-aminobenzothiazole dihydrochloride, SND 919 CL2Y), were studied alone and in combination with the selective dopamine D1-like receptor agonist chloro-APB ((+/-)6-chloro-7-8-dihydroxy-3-allyl-1-phenyl-2,3,4,5-tetrahydro-1H-benz azepine hydrobromide, SKF 82958) in five chronic 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) lesioned hemiparkinsonian Macaca nemestrina monkeys. Talipexole induced contraversive rotation in a dose-dependent manner up to 32 microg/kg, i.m. Talipexole was more potent than pramipexole (10 vs. 32 microg/kg, i.m.), but pramipexole was more efficacious in producing contraversive rotational behavior and significant hand movements in the afflicted limb. Larger doses of chloro-APB also produced contraversive rotation. Combinations of each dopamine D2-like receptor agonist in a median effective dose with chloro-APB (23.4 and 74.8 microg/kg, i.m.) had synergistic effects, producing either addition or potentiation, depending upon the dose used. The effects noted with these combinations were less than the effect of a large dose (100 microg/kg) of pramipexole. Talipexole, in the largest dose studied (100 microg/kg, i.m.), produced sedation which was not seen with the same dose of pramipexole. No significant extrapyramidal side effects were noted with either agent.

Animals↗

RecQ DNA helicase is a suppressor of illegitimate recombination in Escherichia coli.

Bloom syndrome and Werner syndrome are genetic disorders in which an increased rate of chromosomal abnormality is observed. The genes responsible for these diseases, BLM and WRN, have been cloned and identified as homologs of the Escherichia coli recQ genes. We studied the effect of recQ mutations on illegitimate recombination, which is an aberrant biological event related to the chromosomal abnormality in humans, and found that a variety of recQ mutations increased spontaneous illegitimate recombination by 20- to 300-fold and increased UV light-induced illegitimate recombination by 10- to 100-fold. Most lambda bio or lambda pro transducing phages are formed by the recombination events at several hot spots, which are enhanced by the recQ mutation. The analysis of nucleotide sequences at the recombination junction in the transducing phages indicates that recombination at the hot spot sites as well as the non-hot spot sites takes place between short homologous sequences. Enhancement of the recombination in the recQ mutants also occurs in the recA, recBC sbcBC, or recBC sbcA backgrounds, indicating that these recombination events are mediated by none of the known recombination pathways, RecBC, RecF, and RecE. We therefore concluded that the RecQ function suppresses illegitimate recombination that depends on short homologous regions. We discuss a model, based on the 3'-to-5' helicase activity of RecQ, to explain the role of this protein as a suppressor of illegitimate recombination.

Adenosine Triphosphatases↗