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Biomedical subjects

Q J Song

Publications and source records attributed to Q J Song.

7 recordsLinked to original sources

Single-nucleotide polymorphisms in soybean.

Single-nucleotide polymorphisms (SNPs) provide an abundant source of DNA polymorphisms in a number of eukaryotic species. Information on the frequency, nature, and distribution of SNPs in plant genomes is limited. Thus, our objectives were (1) to determine SNP frequency in coding and noncoding soybean (Glycine max L. Merr.) DNA sequence amplified from genomic DNA using PCR primers designed to complete genes, cDNAs, and random genomic sequence; (2) to characterize haplotype variation in these sequences; and (3) to provide initial estimates of linkage disequilibrium (LD) in soybean. Approximately 28.7 kbp of coding sequence, 37.9 kbp of noncoding perigenic DNA, and 9.7 kbp of random noncoding genomic DNA were sequenced in each of 25 diverse soybean genotypes. Over the >76 kbp, mean nucleotide diversity expressed as Watterson's theta was 0.00097. Nucleotide diversity was 0.00053 and 0.00111 in coding and in noncoding perigenic DNA, respectively, lower than estimates in the autogamous model species Arabidopsis thaliana. Haplotype analysis of SNP-containing fragments revealed a deficiency of haplotypes vs. the number that would be anticipated at linkage equilibrium. In 49 fragments with three or more SNPs, five haplotypes were present in one fragment while four or less were present in the remaining 48, thereby supporting the suggestion of relatively limited genetic variation in cultivated soybean. Squared allele-frequency correlations (r(2)) among haplotypes at 54 loci with two or more SNPs indicated low genome-wide LD. The low level of LD and the limited haplotype diversity suggested that the genome of any given soybean accession is a mosaic of three or four haplotypes. To facilitate SNP discovery and the development of a transcript map, subsets of four to six diverse genotypes, whose sequence analysis would permit the discovery of at least 75% of all SNPs present in the 25 genotypes as well as 90% of the common (frequency >0.10) SNPs, were identified.

DNA Primers↗

Role of calcitonin gene-related peptide in prostaglandins-mediated ischemic preconditioning in guinea pig hearts.

AIM: To examine the role of calcitonin gene-related peptide (CGRP) in ischemic preconditioning induced by prostaglandins in isolated guinea pig hearts. METHODS: The isolated guinea pig hearts were perfused in a Langendorff model. The heart rate, coronary flow, left ventricular pressure, and its first derivatives (+/-dp/dt(max)) were recorded and the calcitonin gene-related peptide-like immunoreactivity (CGRP-LI) and 6-keto-PGF(1 alpha) were measured. RESULTS: Endothelin-1 (200 pmol in 1 mL K-H buffer) reduced the left ventricular developed pressure and its first derivatives (+/-dp/dt(max)), heart rate, and coronary flow. Preconditioning with two cycles of 5-min global ischemia and 5-min reperfusion attenuated endothelin-1 induced myocardial injury, and concentrations of both CGRP and 6-keto-PGF(1alpha) in the coronary effluent were markedly raised in the preconditioning periods. Pretreatment with capsaicin, which depletes endogenous CGRP, abolished the elevated level of CGRP concomitantly with loss of the cardioprotection induced by ischemic preconditioning. CGRP(8-37) (100 nmol/L), a selective CGRP1 receptor antagonist, also abolished the protective effects of ischemic preconditioning. After pretreatment with indometacin (10 micromol/L), an inhibitor of cyclooxygenase, the protective effects of ischemic preconditioning were abolished and the release of 6-keto-PGF1alpha was no longer elevated. Pretreatment with indometacin abolished the elevated level of CGRP in the coronary effluent. CONCLUSION: Endogenous prostaglandins are involved in the protective effects of ischemic preconditioning, and the beneficial effects of prostaglandins are mediated by CGRP in the guinea pig heart.

6-Ketoprostaglandin F1 alpha↗

Protective effects of calcitonin gene-related peptide on guinea-pig cardiac anaphylaxis.

Anaphylactic events occurring in cardiac tissues can result in cardiac dysfunction via vasoconstriction and arrhythmias. Calcitonin gene-related peptide (CGRP) is the most potent vasodilator and possesses anti-arrhythmic action. We examined the influence of CGRP on cardiac anaphylaxis in guinea-pigs. In the Langendorff-perfused heart of passively sensitized guinea-pigs, antigen challenge evoked a decrease in coronary flow, left ventricular pressure and its maximum first derivatives (+/-dP/dtmax) and an increased heart rate. Antigen challenge also induced atrioventricular conduction block. Treatment with CGRP (1 or 3 nM) significantly improved the recovery of cardiac function and reduced the incidence and duration of atrioventricular block without influencing the increased heart rate. Pretreatment with capsaicin caused effects similar to those of CGRP and markedly elevated the content of CGRP in coronary effluent. Ischaemic preconditioning, induced by two cycles each of 5 min global ischaemia and 5 min reperfusion, also improved cardiac function and raised the level of CGRP in coronary effluent. The protective effects of ischaemic preconditioning were abolished in the presence of the CGRP receptor antagonist CGRP8-37. Histamine release did not differ significantly during any of the interventions. The findings of the present study indicate that, in guinea-pig hearts, CGRP protects against cardiac anaphylaxis and that the cardioprotection by CGRP is independent of histamine release.

Anaphylaxis↗

Calcitonin gene-related peptide: an endogenous mediator of preconditioning.

Preconditioning of the heart induced by a brief ischemia or hyperthermia is exerted in two phases, early and delayed protection. The cardioprotection of ischemic preconditioning is related to the release of endogenous mediators. Calcitonin gene-related peptide (CGRP), a principal transmitter of capsaicin-sensitive sensory nerves, is involved in the mediation of ischemic preconditioning, and CGRP-mediated ischemic preconditioning has been shown to protect the endothelial cells. The cardioprotection mediated by endogenous CGRP is also found in heat stress reaction. Drug-induced preconditioning, such as by nitroglycerin, may be related to stimulated release of CGRP. These findings suggest that CGRP may be an endogenous myocardial protective substance and plays an important role in the mediation of preconditioning.

Animals↗

Improvement of preservation with cardioplegia induced by heat stress is mediated by calcitonin gene-related peptide.

Previous studies have shown improvement of preservation with cardioplegia by calcitonin gene-related peptide (CGRP)-induced preconditioning. Therefore we examined the hypothesis that endogenous CGRP may be involved in the protection of heat stress against myocardial damages after prolonged cardioplegic arrest in isolated rat heart. Reperfusion after 4 h of hypothermic ischemia caused a decline of cardiac function and an increase of creatine kinase (CK) release. Heat stress induced by pretreatment with whole body hyperthermia (rectal 42 degrees C) for 15 min produced a significant increase in the plasma content of CGRP, an improvement of cardiac function and a decrease in the release of CK. However, after pretreatment with capsaicin (50 mg/kg, s.c.) to deplete CGRP in cardiac sensory nerves, the plasma concentration of CGRP was no longer increased and the cardioprotection afforded by heat stress was abolished. These findings suggest that improvement of preservation with cardioplegia by heat stress may be mediated by endogenous CGRP in the rat.

Animals↗

Early and delayed cardioprotection by heat stress is mediated by calcitonin gene-related peptide.

Brief ischaemia or heat stress protects the myocardium against ischaemia-reperfusion injury. Heat stimulus evokes release of sensory nerve transmitters, including calcitonin gene-related peptide (CGRP). Since CGRP has been shown to play an important role in the mediation of ischaemic preconditioning, the present study examined whether early or delayed preconditioning induced by retrograde hyperthermic perfusion in vitro or by whole-body hyperthemia in vivo also involves endogenous CGRP. Isolated rat hearts were perfused in the Langendorff mode and subjected to 30 min global ischaemia and 30 min reperfusion. Heart rate, coronary flow, left ventricular pressure and its first derivatives (+/-dp/dt) were recorded and the CGRP-like immunoreactivity (CGRP-LI) content and the release of creatine kinase (CK) during reperfusion were measured. Retrograde hyperthermic perfusion (42 degrees C) for 5 min improved the recovery of cardiac function, decreased the release of CK and elevated the content of CGRP-LI in the coronary effluent. CGRP(8-37) (10(-7 mol/l), a selective CGRP receptor antagonist, abolished the cardioprotection by heat stress. Pretreatment with capsaicin (50 mg/kg s.c.), which specifically depletes sensory nerve transmitter content, abolished both the cardioprotection and the increased release of CGRP-LI. Whole-body hyperthermia (42 degrees C for 15 min) caused an increase in the plasma concentration of CGRP-LI. Early or delayed protection was shown in the hearts obtained from the animals subjected to whole-body hyperthermia 10 min or 48 h before the experiments. The early or delayed protection by heat stress was also abolished by pretreatment with capsaicin. The present study suggests that, in the rat, the early and delayed cardioprotection induced by heat stress involves endogenous CGRP.

Animals↗

Cardioprotective effect of bradykinin-induced preconditioning mediated by calcitonin gene-related peptide in isolated rat heart.

AIM: To study the mediation of calcitonin gene-related peptide (CGRP) in the cardioprotective effect of bradykinin-induced preconditioning in heart. METHODS: The isolated rat hearts were perfused in a Langendorff mode. The cardiac function and creatine kinase (CK) were measured. RESULTS: Pretreatment with bradykinin for 5 min caused an improvement of heart function and a decrease of CK release during reperfusion [CK was (0.18 +/- 0.06), (1.07 +/- 0.14), and (0.37 +/- 0.15) U.min-1.g-1/(wet wt) for control, ischemia-reperfusion, and bradykinin, respectively, P < 0.01], and the effect of bradykinin was abolished in the presence of icatibant acetate (Hoe140 1 mumol.L-1) or CGRP8-37 (0.1 mumol.L-1) [CK was (0.37 +/- 0.15), (1.01 +/- 0.23), and (1.07 +/- 0.23) U.min-1.g-1 (wet wt) for bradykinin, Hoe140, and CGRP8-37, respectively, P < 0.01]. Pretreatment with capsaicin also abolished the protection of bradykinin [CK was (0.30 +/- 0.04) and (1.14 +/- 0.12) U.min-1.g-1 (wet wt) for vehicle and capsaicin, respectively, P < 0.01]. CONCLUSION: The cardioprotective effect of bradykinin-induced preconditioning was related to stimulation of CGRP release in the rat.

Animals↗