• 제목/요약/키워드: Mammalian heart

검색결과 27건 처리시간 0.025초

Characterization of the Ryanodine Receptor and SERCA in Fetal, Neonatal, and Adult Rat Hearts

  • Ramesh, Venkat;Kresch, Mitchell J.;Park, Woo-Jin;Kim, Do-Han
    • BMB Reports
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    • 제34권6호
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    • pp.573-577
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    • 2001
  • The mammalian heart is known to undergo significant mechanical changes during fetal and neonatal development. The objective of this study was to define the ontogeny of the ryanodine receptor/$Ca^{2+}$ release channel and SERCA that play the major roles in excitation-contraction coupling. Whole ventricular homogenates of fetal (F) (19 and 22 days in gestation), postnatal (N) (1 and 7 days postnatal), and adult (A) (5 weeks postnatal) Sprague-Dawley rat hearts were used to study [$^3H$]ryanodine binding and oxalate-supported $^{45}Ca^{2+}$ uptake. For the ryanodine receptor, the major findings were: (1) The ryanodine receptor density, as determined by maximal [$^3H$]ryanodine binding ($B_{max}$), increased 3 fold between the F22 and A periods ($0.26{\pm}0.1$ vs. $0.73{\pm}0.07$ pmoles/mg protein, p<0.01), whereas there was no significant change during the F22 and N1 development phases ($0.26{\pm}0.1$ vs. $0.34{\pm}0.01$). (2) Affinity of the ryanodine receptor to ryanodine did not significantly change, as suggested by the lack of change in the $K_d$ during the development and maturation. For SERCA, changes started early with an increased rate of $Ca^{2+}$ uptake in the fetal periods (F19: $8.1{\pm}1.1$ vs. F22: $19.3{\pm}2.2$ nmoles/g protein/min; p<0.05) and peaked by 7 days (N7) of the postnatal age ($34.9{\pm}2.1$). Thus, we conclude that the quantitative changes occur in the ryanodine receptor during myocardial development. Also, the maturation of the $Ca^{2+}$ uptake appears to start earlier than that of the $Ca^{2+}$ release.

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Pseudogobio esocinus (Cypriniformes) 젖산수소이탈효소 동질사량체들의 정제, 역학 및 면역화학 (Purification, Kinetics and Immunochemistry of Two Homotetrameric Lactate Dehydrogenase Isozymes in Pseudogobio esocinlus (Cypriniformes))

  • 김명옥;염정주
    • 한국동물학회지
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    • 제32권4호
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    • pp.420-428
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    • 1989
  • Pseudogobio esocinus의 심장, 신장 및 간 조직은 하부단위체 C를 함유하는 젖산수소이탈효소를 갖고 있음이 확인되었다. 하부단위체 A 및 B에 대한 유전자들의 조직 발현은 다른 포유동물의 것과 유사하였으며 분자량은 140,000 정도로 추정되었다. Oxamate gel을 사용한 chromatography결과 A4 동위효소는 NAD+보다는 column buffer에 의해 용출되었다. B4 동위효소는 CM-Sepharose column을 사용하여 부붙 정제되었다. B4 동위효소는 물론 A4 동위효소도 고농도의 Pyruvate에 의해 저해되었다. A4 동위효소의 affinity chromatography 상 행동과 Pyruvate 저해 정도로 보아 A4 등위효소는 B4 동위효소 두 역학적으로 유사하다고 사료된다. P. esainus A4 동위효소에 대한 항체는 mouse A4 등위효소와 반응하지만 동종의 B4 동위 효소와는 반응하지 않는 특성으로 보아 하부단위체 B는 진화과정에서 보존성이 낮은 것으로 사료된다. Three tissues of heart, kidney and liver of a primitive cvprinid Pseudogobio esocinus were found to have lactate dehydrogenase isozyme(5) containing subunit C. Tissue expressions of genes for subunits A and B were similar to those of mammalian species. Molecular weight of the isozymes were estimated to be 140,000 approximately. Affinity chromatography of the isozymes on the immobilized oxamate gel revealed that A4 isozyme was not elected in NAD+ but in column buffer. B4 isozune was isozpnatically purified by subjecting kidney extract to a CM-Sepharose column. Ae isozvme as well as B4 isozvme was inhibited by high concentrations of pyruvate. The affinity chromatographic behavior and susceptibility to pyruvate inhibition of the A4 isorpne suggest that A4 isozwne is similar to B4 isozyme kinetically. Antibodies against p. esocinus A4 isogyme reacted with mouse At isozyme but not with p. esocinus B4 isogyme, reflecting that subunit B is less conservative in its evolution.

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Genistein Prevents Ethanol-Induced Teratogenesis in Mouse Embryos

  • Yon, Jung-Min;Lin, Chunmei;Jung, A-Young;Lee, Jong-Geol;Jung, Ki-Youn;Baek, In-Jeoung;Lee, Beom-Jun;Yun, Young-Won;Nam, Sang-Yoon
    • 한국수정란이식학회지
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    • 제26권2호
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    • pp.129-133
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    • 2011
  • Drinking of excessive ethanol during pregnancy induces a fetal alcohol syndrome. Genistein is one of naturally occurring isoflavones at relatively high levels in soybeans. In this study, we investigated the effects of genistein ($1{\times}10^{-8}$ and $1{\times}10^{-7}\;{\mu}g$/ml) on the ethanol (1 ${\mu}l$/ml)-induced teratogenesis of developing mouse embryos during the critical period (embryonic days 8.5~10.5) of organogenesis using a whole embryo culture system and then morphological scoring analysis. Ethanol-treated embryos exhibited a variety of developmental abnormalities. However, the total morphological scores for ethanol plus genistein groups were significantly higher than those of ethanol alone group (p<0.05). In particular, there were significant increases in the ethanol plus $1{\times}10^{-8}\;{\mu}g$/ml of genistein group on the scores for heart, optic system, branchial bar, mandibular process, and caudal neural tube and further in the ethanol plus $1{\times}10^{-7}\;{\mu}g$/ml of genistein group on the scores for heart, hind-, mid-, and forebrains, optic system, branchial bars, maxillary and mandibular processes, caudal neural tube, forelimb, hindlimb, and somites as compared with those of ethanol alone group (p<0.05). These results indicate that genistein has a preventive effect against ethanol-induced teratogenesis.

흰쥐에서 Divalent Metal Transporter 1의 조직내 분포와 Iron에 의한 조절 (Tissue Distribution of Divalent Metal Transporter 1 and Regulation by Dietary Iron in Rats)

  • 최재혁;박정덕
    • Environmental Analysis Health and Toxicology
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    • 제19권4호
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    • pp.359-366
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    • 2004
  • Iron (Fe) is an essential metal in biological processes, which maintains a homeostasis in the human body. Divalent metal transporter 1 (DMT1) has been known as an iron transporting membrane protein, which is involved in the uptake Fe at the apical portion of intestinal epithelium, and may transport Fe across the membrane of acidified endosome in peripheral tissues. In this study, we studied the tissue distribution of DMT1 in the Fe supplemented (FeS) diet fed rats, and the regulation of DMT1 expression by depleting body Fe. Sprague-Dawley rats were divided into two groups, and fed FeS (120 mg Fe/kg) diet or Fe deficient (FeD, 2∼6 mg Fe/kg) diet for 4 weeks. The evaluation of body Fe status was monitored by measuring sFe, UIBC and tissue Fe concentration. Additionally, DMT1 mRNA levels were analyzed in the peripheral tissues by using the quantitative real time RT-PCR method. In the FeS diet fed rats, the tissue Fe was maintained at a relatively high level, and DMT1 was eventually expressed in all tissues studied. DMT1 was highly expressed in the testis, kidney and spleen, while a moderate levels of DMT1 expression was detected in the brain, liver and heart. In the digestive system, the highest level of DMT1 was found in the duodenum. Feeding the FeD diet caused a reduced body weight gain and depletion of body Fe with finding of decreased sFe, increased UIBC and decreased tissue Fe concentration. The depletion of body Fe upregulated DMT1 expression in the peripheral tissue. The expression of DMT1 was very sensitive to the body Fe depletion in the small intestine, especially in the duodenum, showing dramatically higher levels in the FeD rats than those of the FeS group. In the FeD diet fed animals, the expression of DMT1 was low significantly in other tissues compared with the duodenum. The expression of DMT1, however, was 60∼120% higher in the testis, kidney and spleen, and 30∼50% higher in the lung, liver and heart, compared to the FeS diet fed rats. In summary, DMT1 expression was ubiquitous in mammalian tissue, and the level of expression was the organ-dependent. The expression of DMT1 in peripheral tissues was upregulated by depletion of body Fe. Duodenum was the most sensitive tissue among organs studied during Fe depletion, and expressed the greatest level of DMT1, while other tissues were less higher than in duodenum. This study supports that DMT1 plays a role in maintaining the body Fe level through intestinal uptake as well as homeostasis of Fe in the peripheral tissue.

기니픽 심장과 심근세포에서 Phenylephrine에 의한 PKC 활성화가 Mg2+ 유리에 미치는 영향 (Effects of phenylephrine-induced PKC activation on Mg2+ release in guinea pig heart and isolated ventricular myocytes)

  • 장성은;강형섭;김진상
    • 대한수의학회지
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    • 제38권1호
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    • pp.29-42
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    • 1998
  • $Mg^{2+}$ is one of the most abundant divalent cations in mammalian body(0.2~1.0mM) and the important physiological roles are : first, the cofactor of many enzyme activities, second, the regulator of glycolysis and DNA synthesis, third, the important role of bioenergetics by regulating of phosphorylation, fourth, the influence of cardiac metabolism and function. In this work we have investigated the regulation of the $Mg^{2+}$ induced by ${\alpha}_1-adrenoceptor$ stimulation in perfused guinea pig hearts and isolated myocytes. The $Mg^{2+}$ content of the perfusate or the supernatant was measured by atomic absorbance spectrophotometry. The elimination of $Mg^{2+}$ in the medium increased the force of contraction of right ventricular papillary muscles, and the left ventricular pressure. Phenylephrine also enhanced the force of contraction in the presence of $Mg^{2+}-free$ medium. ${\alpha}_1-Agonists$ such as phenylephrine and methoxamine were found to induce $Mg^{2+}$ efflux in both perfused hearts and myocytes. These effects were blocked by prazosin, an ${\alpha}_1-adrenoceptor$ antagonist. The $Mg^{2+}$ influx could also be induced by phenylephrine and R59022, a diacylglycerol kinase inhibitor. In the presence of protein kinase C(PKC) inhibitors, phenylephrine produced an increase in $Mg^{2+}$ efflux from perfused hearts. Furthermore, $Mg^{2+}$ efflux by phenylephrine was amplified by phorbol 12-myristate 13-acetate(PMA). This enhancement of $Mg^{2+}$ efflux by PMA was blocked by prazosin in perfused hearts. By contrast, the $Mg^{2+}$ influx could be induced by verapamil, nifedipine, ryanodine in perfused hearts, but not in myocytes. $W^7$, a $Ca^{2+}$/calmodulin antagonist, completely blocked the phenylephrine-induced $Mg^{2+}$ efflux in perfused hearts. In conclusion, $Mg^{2+}$ is responsible for the cardiac activity associated with ${\alpha}_1-adrenoceptor$ stimulation. The mobilization of $Mg^{2+}$ is decreased or increased by ${\alpha}_1-adrenoceptor$ stimulation in guinea pig hearts. These responses may be related specifically to the respective pathways of signal transduction. A decrease in $Mg^{2+}$ efflux by ${\alpha}_1-adrenoceptor$ stimulation in hearts can be through PKC dependent and intracellular $Ca^{2+}$ levels.

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Toxoplasma gondii와 Sarcocystis 원충(原蟲)의 증식형(增殖型)에 대(對)한 주사전자현미경적(走査電子顯微鏡的) 관찰(觀察) (Scanning electron microscopy on proliferative forms of Toxoplasma gondii and Sarcocystis species)

  • 강영배
    • 대한수의학회지
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    • 제28권2호
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    • pp.379-385
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    • 1988
  • 포유류(哺乳類)의 주요(主要) 기생원충(寄生原蟲)인 Toxoplasma gondii와 Sarcocystis species의 증식형(增殖型)에 대(對)한 표면미세구조(表面微細構造)를 비교(比較)하기 위하여 주사전자현미경(走査電子顯微鏡)으로 관찰(觀察)하였다. 동(同) 시료(試料)는 인공감염(人工感染)된 마우스로부터 분리(分離)된 T gondii와 자연감염(自然感染)된 도축우(屠畜牛)로부터 분리(分離)된 Sarcocystis species의 증식형(增殖型)이었다. 관찰결과(觀察結果) 마우스 복강(腹腔)으로부터 채취(採取)된 T gondii의 증식형(增殖型)인 tachyzoites는 초승달모양(crescent-like feature)을 나타냈고, 계측결과(計測結果) 길이 $5.57{\mu}m$, 폭 $2.33{\mu}m$이었으며 도축우(屠畜牛)의 심근(心筋)에서 채취(採取)된 Sarcocystis species의 증식형(增殖型)인 bradyzoites는 바나나모양으로 길이 $14.18{\mu}m$, 폭 $2.85{\mu}m$이었다. 특(待)히 Sarcocystis species 증식형(增殖型)의 표면관찰(表面觀察)에 있어서 높은 확대배율(擴大倍率)(60,000X)의 관찰계측(觀察計測) 결과(結果), 길이 $0.35{\mu}m$, 폭 $0.18{\mu}m$의 미세공(微細孔)(micropore)이 확인(確認)되었다.

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허혈양상화와 KATP 통로가 허혈후 재관류된 흰쥐의 골격근육에서 SOD 활성 및 apoptosis에 미치는 영향 (Effects of ischemic preconditioning, KATP channel on the SOD activation and apoptosis in ischemic reperfused skeletal muscle of rat)

  • 안동춘;백두진;양홍현
    • 대한수의학회지
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    • 제39권5호
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    • pp.878-895
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    • 1999
  • Ischemic preconditioing (IPC), i.e., a preliminary brief episode of ischemia and reperfusion, has been shown to reduce the cell damage induced by long ischemia and reperfusion. Superoxide radical which is produced during reperfusion after ischemia was recognized as a factor of the ischemic injury and it is dismutated into $H_2O_2$ and $O_2$ by two types of intracellular superoxide dismutase (SOD), Cu,Zn-SOD in cytoplasm and Mn-SOD in mitochondria. Recently oxygen free radicals are suggested to induce the apoptosis, however mechanism of the reduced apoptosis by ischemic preconditioing was unknown, while many studies performed in mammalian heart indicated that ATP-sensitive $K^+$ ($K_{APT}$) channel activation related with the protective effects. The aim of present study is to investigate 1) whether IP upregulate the Cu,Zn-SOD and Mn-SOD activities, and 2) whether ischemic preconditioning decreases apoptosis via $K_{APT}$ channel activation in timely reperfused skeletal muscle after long ishemia. The experimental animals, Sprague-Dawley rats weighing 250~300g, were divided into 8 groups; 1) control group, 2) ischemic preconditioning only groups, 3) pinacidil, a $K_{APT}$ channel opener, treatment only groups, 4) glibenclamide, a $K_{APT}$ channel blocker, treatment only groups, 5) ischemia groups, 6) ischemia after IPC groups, 7) ischemia and pinacidil treatment groups, and 8) IP and ischemia after glibenclamide pretreatment groups. Animals of the control group were administered with the vehicle (DMSO) alone. Pinacidil (1mg/kg) was administered intravenously 5 minutes after initiation of ischemia, and glibenclamide (0.5mg/kg) was injected intravenously 20 minutes before IPC. In rats that were ischemic preconditioned, the left common iliac artery was occluded for 5 minutes followed by 5 minutes of reperfusion by three times using vascular clamp. Ischemia was done by occlusion of the same artery for 4 hours. The specimens of left rectus femoris muscle were obtained immediately (0 hour), 12 hours, 24 hours after drug administrations, IP or ischemia and reperfusion. The immunoreactivities of SOD and its alterations were observed by use of sheep antihuman Cu,Zn-SOD and Mn-SOD antibodies on the $10{\mu}m$ cryosections. The incidencies of apoptosis were observed by TUNEL methods with in situ apoptosis detection kit on $6{\mu}m$ paraffine section. The results obtained were as follows : 1. After IPC, immunoreactivities of Cu,Zn-SOD mainly in the small-sized fibers were increased by 24 hours, that of Mn-SOD at 0 hour and 24 hours. 2. No significant changes in immunoreactivities of SOD was observed in the pinacidil and in the glibenclamide treatment only groups, and in the ischemia only groups. 3. The immunoreactivities of the Cu,Zn-SOD were increased in the ischemia after IPC groups and the ischemia and pinacidil treatment groups. 4. The immunoreactivities of the Cu,Zn-SOD in the IPC and ischemia after glibenclamide pretreatment groups were not increased except for the 12 hours reperfusion group. But, Mn-SOD immunoreactivities were increased in the 0 hours, 12 hours and 24 hours after reperfusion. 5. In the control group, the IPC only groups, and the pinacidil treatment only groups, negative or trace apoptotic reactions were observed, but the positive apoptotic reaction occured in the glibenclamide treatment groups. 6. Moderate or many number of apoptosis were revealed in the ischemia groups, and also the IPC and ischemia after glibenclamide pretreatment group except for 12 hours and 24 hours after reperfusion. However, the incidence of apoptosis was decreased in the ischemia after IPC groups and in the ischemia and pinacidil treatment groups. 7. There is a coincidence between the increase of Cu,Zn-SOD immunoreactivities and the decrease of apoptosis in the presence of ischemia and reperfusion. These results suggest that the protective effects of ishemic preconditioing may related to the SOD activation, and the ischemic preconditioning decreases the apoptosis partially via $K_{APT}$ channel activation in timely reperfused rat skeletal muscle. It is also suggested that inhibition of apoptosis by IPC may related with the SOD activation.

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