• 제목/요약/키워드: External $Ca^{2+}$

검색결과 170건 처리시간 0.023초

심근 Mitochondria의 $Na^+-Ca^{++}$교환에 관한 연구 (The Study on $Na^+-Ca^{++}$ Exchange in Heart Mitochondria)

  • 신상구;김명석;임정규
    • 대한약리학회지
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    • 제18권2호
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    • pp.89-102
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    • 1982
  • The $Na^+-and\;K^+-induced\;Ca^{++}$ release was measured isotopically by millipore filter technique in pig heart mitochondria. With EGTA-quenching technique, the characteristics of mitochondrial $Ca^{++}-pool$ and the sources of $Ca^{++}$ released from mitochondria by $Na^+\;or\;K^+$ were analyzed. The mitochondrial $Ca^{++}-pool$ could be distinctly divided into two components: internal and external ones which were represented either by uptake through inner membrane, or by energy independent passive binding to external surface of mitochondria, respectively. In energized mitochondria, a large portion of $Ca^{++}$was transported into internal pool with little external binding, while in de-enerigzed state, a large portion of transported $Ca^{++}$ existed in the external pool with limited amount of $Ca^{++}$ in the internal pool which was possibly transported through the $Ca^{++}-carrier$ present in the inner membrane. $Na^+$ induced the $Ca^{++}$ release from both internal pool and external pool and external binding pool of mitochondria. In contrast, $K^+$ did not affect $Ca^{++}$ of the internal pool, but, displaced $Ca^{++}$ bound to external surface of the mitochondria. When the $Ca^{++}-reuptake$ was blocked by EGTA, the $Ca^{++}$ release from the internal pool by $Na^+$ was rapid; the rate of $Ca^{++}-efflux$ appeared to be a function of $[Na^+]^2$ and about 8mM $Na^+$ was required to elicit half-maximal velocity of $Ca^{++}-efflux$. So it was revealed that $Ca^{++}-efflux$ velocity was particulary sensitive to small changes of the $Na^+$ concentration in physiological range. Energy independent $Ca^{++}-binding$ sites of mitochondrial external surface showed unique characteristics. The total number of external $Ca^{++}-binding$ sites of pig heart mitochondria was 29 nmoles per mg protein and the dissociation constant(Kd) was $34{\mu}M$. The $Ca^{++}-binding$ to the external sites seemed to be competitively inhibited by $Na^+\;and\;K^+$; the inhibition constant(Ki) were 9.7 mM and 7.1 mM respectively. Considering the intracellular ion concentrations and large proportion of $Ca^{++}$ uptake in energized mitochondria, the external $Ca^{++}-binding$ pool of the mitochondria did not seem to play a significant role on the regulation of intracellular free $Ca^{++}$ concentration. From this experiment, it was suggested that a small change of intracellular free $Na^+$ concentration might play a role on regulation of free $Ca^{++}$ concentration in cardiac cell by influencing $Ca^{++}-efflux$ from the internal pool of mitochondria.

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The Effect of External Divalent Cations on Intestinal Pacemaking Activity

  • Kim, Byung-Joo;Kim, Ki-Whan
    • The Korean Journal of Physiology and Pharmacology
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    • 제9권4호
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    • pp.203-207
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    • 2005
  • Electrical rhythmicity in the gastrointestinal (GI) muscles is generated by pacemaker cells, known as interstitial cells of Cajal (ICC). In the present study, we investigated the effect of external divalent cations on pacemaking activity in cultured ICC from murine small intestine by using whole-cell patch clamp techniques. ICC generated pacemaker currents under a voltage clamp or electrical pacemaker potentials under a current clamp, and showed a mean amplitude of $-500{\pm}50$ pA or $30{\pm}1$ mV and the frequency of $18{\pm}2$ cycles/min. Treatments of the cells with external 0 mM $Ca^{2+}$ stopped pacemaking activity of ICC. In the presence of 2 mM $Ca^{2+}$, 0 mM external $Mg^{2+}$ depolarized the resting membrane potential, and there was no change in the frequency of pacemaking activity. However, 10 mM external $Mg^{2+}$ decreased the frequency of pacemaking activity ($6.75{\pm}1$ cycles/min, n=5). We replaced external 2 mM $Ca^{2+}$ with equimolar $Ba^{2+}$, $Mn^{2+}$ and $Sr^{2+}$, and they all developed inward current in the sequence of $Ba^{2+}$>$Mn^{2+}$>$Sr^{2+}$. Also the frequency of the pacemaking activity was stopped or irregulated. We investigated the effect of 10 mM $Ba^{2+}$, $Mn^{2+}$ and $Sr^{2+}$ on pacemaking activity of ICC in the presence of external 0 mM $Mg^{2+}$, and found that 10 mM $Ba^{2+}$ and $Mn^{2+}$ induced large inward current and stopped the pacemaking activity of ICC (n=5). Interestingly, 10 mM $Sr^{2+}$ induced small inward current and potentiated the amplitude of pacemaking activity of ICC (n=5). These results indicate that extracellular $Ca^{2+}$ and $Mg^{2+}$ are requisite for the pacemaking activity of ICC.

혈관 및 장관 평활근의 K-경축 발생기전 (Different Mechanisms of K-induced Contracture in Isolated Vascular and Intestinal Smooth Muscles)

  • 김기환;황상익;남기용
    • The Korean Journal of Physiology
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    • 제13권1_2호
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    • pp.41-50
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    • 1979
  • The activation mechanism of K-induced contracture was studied in renal vascular muscle which does not generate an action potential readily and in taenia coli which generates a spike potential spontaneously. Helical strips of arterial muscle from rabbit renal arteries and longitudinal strips of taenia coli from guinea-pig's colons, respectively, were prepared. All experiments were performed in Tris-buffered Tyrode solution which was aerated with 100% $O_2$ and kept $35^{\circ}C$. Renal arterial muscles developed the contracture rapidly, which was composed of a small phasic and a large tonic components, when exposed to a 40 mM K-Tyrode solution. In the absence of external $Ca^{++}$, however, no K-contracture appeared. The contracture induced by K-depolarization was abolished by the treatment with verapamil, which is known to be a selective $Ca^{++}-blocker$ through potential-sensitive $Ca^{++}-channel$. K-contracture of taenia coli showed the contracture composed of a large phasic and a small tonic components. In the $Ca^{++}-free$ Tyrode solution, only the tonic component was abolished and almost no change in the phasic component was observed. The amplitude of tonic component was dependent on the external $Ca^{++}$; The tonic component increased dose-dependently by a stepwise increase of the external $Ca^{++}$, and this component decreased in parallel with the increase of verapamil in the external medium. The results of this experiment suggest that K-contracture of rabbit renal artery is the direct result of the influx of the external $Ca^{++}$, while that of taenia coli is the result of both $Ca^{++}$ influx and the release of sequestered $Ca^{++}$.

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Inhibition of Calcium Transport by $(1R,9S)-\beta-Hydrastine$ Hydrochloride in PC12 Cells

  • Yin, Shou-Yu;Lee, Myung-Koo
    • Natural Product Sciences
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    • 제12권4호
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    • pp.217-220
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    • 2006
  • The effects of $(1R,9S)-\beta-hydrastine$ hydrochloride (BHSH) on $Ca^{2+}$ transport in rat pheochromocytoma PC12 cells were investigated. In the presence of external $Ca^{2+}$, BHSH at $100{\mu}M$ inhibited $K^+$ (56mM)-induced dopamine release, and $K^+-induced$ $Ca^{2+}$ influx and a sustained rise of $[Ca^{2+}]_i$. In addition, BHSH at 100 f.!M reduced the sustained rise of $[Ca^{2+}]_i$ elicited by 20 mM caffeine, but not by $1{\mu}M$ thapsigargin, in presence of external $Ca^{2+}$. These results suggest that BHSH inhibited $K^+-induced$ dopamine release and $[Ca^{2+}]_i$ influx, and store-operated $Ca^{2+}$ channels activated by caffeine, but not by thapsigargin, in PC12 cells.

시호 Saponin의 혈소판 활성화 작용에 관한 연구 (Studies on Platelet Activation of Saikosaponin Isolated From Bupleuri Radix)

  • 박영현;송민주;김남수
    • 한국식품위생안전성학회지
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    • 제13권4호
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    • pp.355-359
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    • 1998
  • 식물중에서 배당체 일종인 saponins을 다량 함유한 시호(Bupleurum falcatum)로부터 생체 조절 기능을 갖는 유효성분을 분리하여 혈소판 활성화 작용을 통하여 뇌심혈관계 질환 연구에 이용하고자 시호 용매 분획물에서 분리 및 동정한 Saikosapini을 thronbin, collagen, arachidonic acid 등의 효능제(agonist)와 세포의 $Ca^{2+}$ 의존성을 비교연구하였다. 시호 용매추출물 중에 acetone 추출물이 혈소판 응집작용이 강하며, 그 유효성분을 분리 및 동정한 saikosaponin a와 d는 C16 위치에 각각 ${\alpha}와\;{\beta}$형의 OH기를 갖는 이성체로, saikosapnin d가 a보다 강한 응집작용을 갖는 구조활성관계를 나타내고 있다. 각 효능제에 따라서 혈소판 활성화에 대한 세포의 $Ca^{2+}$ 의존성은 thrombin > colagen $\geq$ PAF>PMA> arachidonic acid $\geq$ Ionophore A23187순으로 나타났다. 시호 추출물 및 saikosaponin의 혈소판 활성화 작용은 기존 효능제와 다른 세포의 $Ca^{2+}$의존성을 나타내는 것으로 사료된다.

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혈관 평활근의 수축기전에 관한 연구 (Different Mechanisms for the Activation of Vascular Smooth Muscle by Norepinephrine and Depolarization)

  • 홍용우;고광욱;김기환
    • The Korean Journal of Physiology
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    • 제21권2호
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    • pp.191-200
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    • 1987
  • The activation mechanism of the sustained contractions induced by norepinephrine and K-depolarization was studied in renal vascular muscle. Helical strips of arterial muscle were prepared from rabbit renal arteries. All experiments were performed in Tris-buffered Tyrode solution which was aerated with 100% $O_2$ and kept at $35^{\circ}C$. Renal arterial muscles developed a contracture rapidly when exposed to a 40 mM K-Tyrode solution. In the absence of external $Ca^{2+}$, however, no K-contracture appeared. The contracture induced by K-depolarization was abolished by the treatment with $Ca^{2+}-antagonist\;(verapamil)$ or lanthanum $(La^{3+})$. From these results, it is obvious that K-contracture of renal arterial strip required $Ca^{2+}$ in the medium and this contracture was developed by the increased $Ca^{2+}-influx$ due to K-depolarization. Noradrenaline (5 mg/l) induced also a similar sustained contraction rapidly in all strips. Even on the K-contracture and in $Ca^{2+}-free$ Tyrode solution and also in the Tyrode solution pretreated with verapamil or $La^{3+}$, noradrenaline produced a contraction. However, the contraction in $Ca^{2+}-free$ Tyrode solution was not sustained and decreased gradually. The amplitude of noradrenaline-induced contracture was dependent on external $Ca^{2+}$; The contracture increased dose-dependently, but over 3 mM $Ca^{2+}$, decreased. The results of this experiment suggest that K-contracture was developed by an increased $Ca^{2+}-influx$ due to membrane depolarization, while noradrenaline-induced contracture was developed by both transmembrane $Ca^{2+}-influx$ and the mobilizaiton of cellular $Ca^{2+}$

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Ca2+-regulated ion channels

  • Cox, Daniel H.
    • BMB Reports
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    • 제44권10호
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    • pp.635-646
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    • 2011
  • Due to its high external and low internal concentration the $Ca^{2+}$ ion is used ubiquitously as an intracellular signaling molecule, and a great many $Ca^{2+}$-sensing proteins have evolved to receive and propagate $Ca^{2+}$ signals. Among them are ion channel proteins, whose $Ca^{2+}$ sensitivity allows internal $Ca^{2+}$ to influence the electrical activity of cell membranes and to feedback-inhibit further $Ca^{2+}$ entry into the cytoplasm. In this review I will describe what is understood about the $Ca^{2+}$ sensing mechanisms of the three best studied classes of $Ca^{2+}$-sensitive ion channels: Large-conductance $Ca^{2+}$-activated $K^+$ channels, small-conductance $Ca^{2+}$-activated $K^+$ channels, and voltage-gated $Ca^{2+}$ channels. Great strides in mechanistic understanding have be made for each of these channel types in just the past few years.

Forward-Mode $Na^+-Ca^{2+}$ Exchange during Depolarization in the Rat Ventricular Myocytes with High EGTA

  • Kim, Eun-Gi;Ko, Chang-Mann
    • The Korean Journal of Physiology and Pharmacology
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    • 제5권6호
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    • pp.487-494
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    • 2001
  • During depolarization, extrusion of $Ca^{2+}$ from sarcoplasmic reticulum through forward-mode $Na^+-Ca^{2+}$ exchange was studied in the rat ventricular myocytes patch-clamped in whole-cell configuration. In order to confine the $Ca^{2+}$ responses in a micro-domain by limiting the $Ca^{2+}$ diffusion time, rat ventricular myocytes were dialyzed with high (14 mM) EGTA. $K^+$ current was suppressed by substituting KCl with 105 mM CsCl and 20 mM TEA in the pipette filling solution and by omitting KCl in the external Tyrode solution. $Cl^-$ current was suppressed by adding 0.1 mM DIDS in the external Tyrode solution. During stimulation roughly mimicking action potential, the initial outward current was converted into inward current, $47{\pm}1%$ of which was suppressed by 0.1 mM $CdCl_2.$ 10 mM caffeine increased the remaining inward current after $CdCl_2$ in a cAMP-dependent manner. This caffeine-induced inward current was blocked by $1\;{\mu}M$ ryanodine, $10\;{\mu}M$ thapsigargin, 5 mM $NiCl_2,$ or by $Na^+\;and\;Ca^{2+}$ omission, but not by $0.1\;{\mu}M$ isoproterenol. The $I{\sim}V$ relationship of the caffeine-induced current elicited inward current from -45 mV to +3 mV with the peak at -25 mV. Taken together, it is concluded that, during activation of the rat ventricular myocyte, forward-mode $Na^+-Ca^{2+}$ exchange extrudes a fraction of $Ca^{2+}$ released from sarcoplasmic reticulum mainly by voltage-sensitive release mechanism in a micro-domain in the t-tubule, which is functionally separable from global $Ca^{2+}{_i}$ by EGTA.

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사람 및 흰쥐의 자궁근에서 Vanadate에 의한 수축에 미치는 외부 Calcium 및 Na-pump억제의 영향 (Effects of External $Ca^{2+}$ ana the Inhibition of Na-pump on the Vanadate-induced Contraction in the Isolated Human and Rat Uterine Smooth Muscle)

  • 정진섭;한복기;우재석;이상호
    • The Korean Journal of Physiology
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    • 제18권2호
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    • pp.125-137
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    • 1984
  • Vanadate의 수축에 이용되는 $Ca^{2+}$의 동원 경로와 Na-Pump억제가 vanadate의 수축에 어떤 영향을 미치는 지를 밝히기 위해 본 실험을 시행하여 다음과 같은 곁과를 얻었다. 1) 흰쥐의 자궁근에서는 vanadate는 수축을 일으켜 $5{\times}10^{-4}M$에서 최대수축을 나타내었으며 사람의 자궁근이 흰쥐의 자중근에 비해 vanadate에 더 민감한 반응을 보였다. 2) Vanadate에 의한 수축은 $Ca^{2+}$제거에 의해 완전히 억제되지 않았고 사람의 자궁근이 외부 $Ca^{2+}$의 농도변화에 더 민감한 반응을 보였다. 3) Vanadate에 의한 수축은 verapamil농도를 증가시킴에 따 억제되었으며 100k에 극한 수축을 완전 억제시키는$3{\times}10^{-5}M$ verapamil 존재하에서도 최대수의 40%정도가 남아있었고, 이 크기는 $Ca^{2+}$없는 용액에서의 수축의 크기와 유사하였다. 4) Na-pump억제시 vanadate의 수축은 증가하였고 이 현상은 $3{\times}10^{-5}M$ verapamil 존재하에서도 나타났다. 5) $Ca^{2+}$없는 ouabain용액에서 전처치후에 vanadate에 의한 수축은 증가하지 않았으나 외부내 $Ca^{2+}$을 부가할 나타나는 반음은 대조군에 비해 현저히 증가하였다. 6) Verapamil 존재시 vanadate에 의한 $Ca^{45}$유입은 완전히 억제되었으나 ouabain으로 처리한 후는 verapamil 존재하에서도 vanadate가 현저히 $Ca^{45}$유입을 일으켰다. 7) Ouabain이나 K 없는 용액으로 치리시간이 증가함에 따라 vanadate에 의한 수축의 증가정도는 더욱 더 현저하였다. 8) Ouabain 전처치시 증가된 vanadate에 의한 수축은 $10^{-4}M$ papaverine에 의해 현저히 억제되었다. 9) Acetylcholine에 의한 수축은 verapamil 존재하에서도 Na-pump억제 시간이 증가함에 따라 증가하였다. 이상의 결과로 볼 때 vanadate에 대해 사람의 자궁근이 흰쥐의 자궁근에 비해 더 민감한 반응을 보이고 vanadate에 의한 수축에는 외부와 내부 $Ca^{2+}$이 모두 이용되며 Na-pump 억제시 여러가지 근수축물질이 verapamil에 의해 억제되지 않는 $Ca^{2+}$유입을 일으키며 이 유입경로의 성질은 확실히 알 수 없으나 Papaverine에 의해 억제되며 막전위의 변화와 관련이 있는 것으로 생각된다.

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Role of $Ca^{2+}$ and Calmodulin on the Initiation of Sperm Motility in Salmonid Fishes

  • Kho, Kang-Hee;Morisawa, Masaaki;Choi, Kap-Seong
    • Journal of Microbiology and Biotechnology
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    • 제14권3호
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    • pp.456-465
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    • 2004
  • $K^+$ efflux through a certain type of $K^+$ channels causes the change of membrane potential and leads to cAMP synthesis in the transmembrane cell signaling for the initiation of sperm motility in the salmonid fishes. The addition of $Ca^{2+}$ conferred motility to the trout sperm that were immobilized by external $K^+$ and other alkaline metals, $Rb^+$ and $Cs^{2+}$, suggesting the participation of external $Ca^{2+}$ in the initiation of sperm motility. L-type $Ca^{2+}$ channel blockers such as nifedipine, nimodipine, and FS-2 inhibited the motility, but N-type $Ca^{2+}$ channel blocker, w-conotoxin MvIIA, did not. On the other hand, the membrane hyperpolarization and cAMP synthesis were suppressed by $Ca^{2+}$ channel blockers, nifedipine, and trifluoroperazine. Furthermore, these suppressions were relieved by the addition of $K^+$ ionophore, valinomycin. Inhibitors of calmodulin, such as W-7, trifluoperazine, and calrnidazol-C1, inhibited the sperm motility, membrane hyperpolarization, and cAMP synthesis. The results suggest that $Ca^{2+}$ influx through $Ca^{2+}$ channels that are sensitive to specific $Ca^{2+}$ channel blockers and calmodulin participate in the changes of membrane potential, leading to synthesis of cAMP in the cell signaling for the initiation of trout sperm motility.