• 제목/요약/키워드: Ca2-ATPase activity

검색결과 126건 처리시간 0.025초

치수에서 $Ca^{++}$-ATPase와 $Mg^{++}$-ATPase의 활성도에 관한 실험적 연구 (A BIOCHEMICAL STUDY OF $Ca^{++}$-ATPASE AND $Mg^{++}$-ATPASE ACTIVITY IN HUMAN DENTAL PULP)

  • 황인성;이종갑
    • 대한소아치과학회지
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    • 제10권1호
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    • pp.139-147
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    • 1983
  • This study was undertaken to evaluate the physiological roles & mechanism of $Ca^{++}$-ATPase & $Mg^{++}$-ATPase in human dental pulp. Each specimen of dental pulp was obtained from the freshly extracted, freeze-dried 242 teeth. $Ca^{++}$-ATPase & $Mg^{++}$-ATPase activity were measured by the release of inorganic phosphate & protein with Spectrophotometer. The results were as follows; 1. The $Ca^{++}$-ATPase & $Mg^{++}$-ATPase activity were significantly increased in developing teeth. 2. The $Ca^{++}$-ATPase & $Mg^{++}$-ATPase activity were significantly decreased in nonvital teeth. 3. The $Ca^{++}$-ATPase & $Mg^{++}$-ATPase activity were significant decreased in deciduous teeth. 4. The $Ca^{++}$-ATPase & $Mg^{++}$-ATPase activity didn't have relation with dental caries. 5. The $Ca^{++}$-ATPase & $Mg^{++}$-ATPase were activated by either $Ca^{++}$ alone or $Mg^{++}$ alone.

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Vanadate가 골격근 sarcoplasmic reticulum의 $Ca^{++}-ATPase$$Ca^{++}\;uptake$에 미치는 영향 (Effects of Vanadate on Activity of $Ca^{++}$Activated ATPase and $Ca^{++}$ Uptake of Sarcoplasmic Reticulum in Rat Skeletal Muscle)

  • 주순재;한경희;임중우;강두희
    • The Korean Journal of Physiology
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    • 제20권2호
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    • pp.157-164
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    • 1986
  • Since it has been reported that vanadate inhibits $Ca^{++}-ATPase$ activity without affecting $Ca^{++}$ uptake, this study was undertaken to investigate the effects of vanadate on $Ca^{++}-ATPase$ activity and $Ca^{++}$ uptake in the sarcoplasmic reticulum of rat skeletal muscle. The following results were obtained. 1) $Ca^{++}$ activated ATPase activity of the intact sarcoplasmic reticulum was significantly inhibited when vanadate was added to the incubation medium at concentration greater than $10^{-6}\;M$. However $Mg^{++}$-ATPase activity of the intact SR was not affected by vanadate at concentrations ranging from $10^{-7}\;to\;10^{-4}\;M.$ Similarly, $Ca^{++}-ATPase$ activity in sonicated sarcoplasmic reticulum was significantly reduced by vanadate at a concentration $10^{-7}$ M or higher. 2) The uptake of $Ca^{++}$ by isolated sarcoplasmic reticulum was also inhibited by vanadate under the conditions where the turnover rate of $Ca^{++}-ATPase$ was made to increase. These results suggest that the inhibition of $Ca^{++}$ uptake by vanadate may be correlated with that of $Ca^{++}-ATPase$ if experimental conditions are properly set.

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이진탕 분획엑스가 synaptosomal NaK ATPase와 Ca ATPase의 활성도에 미치는 영향 (Effects of Ijingtang fractions on activities of NaK ATPase and Ca ATPase in rat brain synaptosome)

  • 조영욱;한승호;김창주;민병일;이태희;윤상협;오수명
    • 대한한의학회지
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    • 제18권1호
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    • pp.198-207
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    • 1997
  • To explore the action mechanism of Ijintang in the brain, the authors investigated the effects of Ijintang fractions on MgNaK ATPase and MgCa ATPase in rat brain synaptosomes prepared from cerebral cortex. The activities of MgNaK ATPase and MgCa ATPase were assayed by the level of inorganic phosphate liberated from the hydrolysis of ATP. Fraction WH-95-7 at the concentration of $10^{-2}%$ decreased the activity of MgNaK ATPase about 34.1% and also reduced the activity of MgCa ATPase about 49.3% But, other fractions (WB-95-7, WC-95-7, MB-95-7, MC-95-7, MH-95-7) did not significantly changed the activities of the MgNaK ATPase and MgCa ATPase The decreased activity of MgNaK ATPase by WH-95-7 will decrease the rate of $Ca^{2+}$ efflux, probably via an Na-Ca exchange mechanism and will increase the rate of $Ca^{2+}$ entry by the depolarization of nerve terminals. The reduced activity of MgCa ATPase by WH-95-7 will result in the decreased efflux of $Ca^{2+}$. As a conclusion, it can be speculated that lithium elevates the intrasynaptosomal $Ca^{2+}$ concentration via inhibition of the activities of MgNaK ATPase and MgCa ATPase. and this increased $[Ca^{2+}]i$ will cause the release of neurotransmitters.

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Inositol 1,4,5-Trisphosphate-induced Increase in $Ca^{2+}-ATPase$ Activity in the Microsomes of Tracheal Epithelial Cells

  • Cho, Hyoung-Jin;Park, Sung-Shin;Kim, Young-Kee
    • The Korean Journal of Physiology
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    • 제29권2호
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    • pp.269-277
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    • 1995
  • Membrane vesicles were prepared by differential centrifugation from epithelial cells of porcine trachea. Total activity of microsomal ATPases was measured spectrophotometrically by a coupled enzyme assay. The steady-state activity of the enzyme was $329{\pm}10$ nmol/min mg protein. Thapsigargin, a specific antagonist of intracellular $Ca^{2+}-ATPase$, inhibited about 50% of the activity, leaving $178{\pm}18\;nmol/min .mg$ protein (n=6), indicating that the $Ca^{2+}-ATPase$ is one of the major microsomal ATPases. The microsomes used in this study appeared to be tight-sealed vesicles since they showed saturation in $^{45}Ca^{2+}$ uptake experiments. Inositol 1,4,5-trisphosphate $InsP_{3}, 4\;{\mu}M$, an agonist of $InsP_{3}$-sensitive $Ca^{2+}$ release channel ($InsP_{3}$, receptor), and Ca-ionophore A23187 $(10\;{\mu}M)$ induced $^{45}Ca^{2+}$ releases of 20% and 50% of stored $^{45}Ca^{2+}$, respectively. The addition of $(10\;{\mu}M\;InsP_{3}$ also increased the microsomal ATPase activity from $282{\pm}8$ nmol/min mg protein to $334{\pm}21$ nmol/min . mg protein in the intact vesicles. Similar increase in the activity was observed by making microsomes leaky (uncoupling) using the Ca-ionophore A23187. ;$InsP_{3}-induced$ effects were blocked by either thapsigargin or heparin suggesting that: 1) the $InsP_{3}-induced$ increase in ATPase activity is mediated by microsomal $Ca^{2+}-ATPase$, and 2) dissipation of $Ca^{2+}$ gradient across the microsomal membrane is responsible for the $InsP_{3}-induced$ effect. In order to test the dependence of the $Ca^{2+}-ATPase$ activity on the activity of $InsP_{3}-induced$ the activity of ATPases was monitored in various concentrations of free $Ca^{2+}$ using $EGTA-Ca^{2+}$ buffers. The $Ca^{2+}$-dependent biphasic change is the well-known character of $InsP_{3} receptor but not of microsomal $Ca^{2+}-ATPase$ in non-excitable cells; however, the activity of microsomal ATPase appeared biphasic and a maxim진 activity of $397{\pm}36nmol/min\;.mg$ protein was obtained in the solution containing 100 nM free $Ca^{2+}$. Below or above this concentration, the activity of ATPases was lower. These results strongly support a positive correlation of microsomal $Ca^{2+}-ATPase$ to the $InsP_{3}$ receptors in epithelial microsomes.

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Caffeine Indirectly Activates Ca2+-ATPases in the Vesicles of Cardiac Junctional Sarcoplasmic Reticulum

  • Kim, Young-Kee;Cho, Hyoung-Jin;Kim, Hae-Won
    • BMB Reports
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    • 제29권1호
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    • pp.22-26
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    • 1996
  • Agents that activate or inhibit the $Ca^{2+}$ release channel in cardiac sarcoplasmic reticulum (SR) were tested for their abilities to affect the activity of the SR $Ca^{2+}$-ATPase. Vesicles of junctional SR (heavy SR, HSR) from terminal cisternae were prepared from porcine cardiac muscle by density gradient centrifugation. The steady-state activity of $Ca^{2+}$-ATPases in intact HSR vesicles was/$347{\pm}5\;nmol/min{\cdot}mg$ protein (${\pm}$ SD). When the HSR vesicles were made leaky, the activity was increased to $415{\pm}5\;nmol/min{\cdot}mg$ protein. This increase is probably due to the uncoupling of HSR vesicles. Caffeine (10 mM), an agonist of the SR $Ca^{2+}$ release channel, increased $Ca^{2+}$-ATPase activity in the intact HSR vesicle preparation to $394{\pm}30\;nmol/min{\cdot}mg$ protein. However, caffeine had no significant effect in the leaky vesicle preparation and in the purified $Ca^{2+}$-ATPase preparation. The effect of caffeine on SR $Ca^{2+}$-ATPase was investigated at various concentrations of $Ca^{2+}$. Caffeine increased the pump activity over the whole range of $Ca^{2+}$ concentrations, from $1\;{\mu}M$ to $250\;{\mu}M$, in the intact HSR vesicles. When the SR $Ca^{2+}$-ATPase was inhibited by thapsigargin, no caffeine effect was observed. These results imply that the caffeine effect requires the intact vesicles and that the increase in $Ca^{2+}$-ATPase activity is not due to a direct interaction of caffeine with the enzyme. We propose that the activity of SR $Ca^{2+}$-ATPase is linked indirectly to the activity of the $Ca^{2+}$ release channel (ryanodine receptor) and may depend upon the amount of $Ca^{2+}$ released by the channels.

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膜 ATPase 活性과 Ca 透過性에 관한 硏究 (Studies on the ATPase Activity and Calcium Transport of Fragmented Sarcoplasmic Reticulum)

  • Ha, Doo-Bong
    • 한국동물학회지
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    • 제20권2호
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    • pp.101-107
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    • 1977
  • 토끼의 골격근 小胞體의 ATPase 活性과 Ca 輸送에 대한 sodium azide, cAMP, G-strophanthin 및 dicumarol의 영향을 측정하였다. Sodium azide(0.05mM)와 G-strophanthin(0.25nM)은 ATPase活性과 Ca 輸送能에 아무런 영향도 미치지 아니하였다. cAMP$(1 \\times 10^-6 M \\sim 5 \\times 10^-4 M)$는 ATPase 活性에는 아무런 영향도 미치지 않았으나 Ca 輸送은 억제하였다. Dicumarol(0.05mM)도 ATPase 活性에는 영향이 없었으나 小胞體의 $8,000 \\sim 12,000 \\times G$分劃에서의 Ca 輸送을 억제하였다.

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가토자궁근(家兎子宮筋)에서 분리(分離)한 Microsome 분획내(分劃內) Adenosinetriphosphatase 활성도(活性度)에 미치는 $Mg^#$, $Ca^#$, $Na^+$, $K^+$ 및 Creatine phosphate의 영향(影響) (The Effect of $Mg^#$, $Ca^#$, $Na^+$, $K^+$ and Creatine Phosphate on the ATPase Activity of Microsomal Fraction from Rabbit Uterus)

  • 최신정
    • 대한약리학회지
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    • 제2권2호
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    • pp.35-42
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    • 1966
  • The author investigated the effect of $Mg^#$, $Ca^#$, $Na^+$, $K^+$ and creatine phosphate on the ATPase activity of microsomal fraction isolated from rabbit uterus and obtained the following results : 1) The uterine microsomal fraction contained the $Na^+-$ and $K^+-$ activated ATPase in the presence of $Mg^#$. The ATPase activity increased with protein content in the fraction. 2) The maximum ATPase activity was obtained at $Na^+$ and $K^+$ concentraction of 100 mM respectively. 3) In the absence of $Mg^#$, the ATPase was not activated by $Na^+$ and $K^+$, but inhibited. 4) Car stimulated the $Na^+-$ and $K^+-$ activated ATPase in the presence of $Mg^#$. However, in the absence of $Mg^#$, the ATPase was not activated by $Ca^#$. 5) The $K^+-$ activated ATPase activity was greater than the $Na^+-activated$ ATPase under all conditions. 6) The $Na^+-$ and $K^+$ activated ATPase activity was increased by addition of creatine phosphokinase and creatine phosphate to the reaction mixture.

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콩 뿌리조직에서의 $Ca^{2+}$에 의한 마이크로솜 이온펌프 활성저해 ($Ca^{2+}-induced$ Inhibition of Microsomal ATPases in Soybean Roots)

  • 조광현;조경수;이은형;김영기
    • Applied Biological Chemistry
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    • 제40권3호
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    • pp.202-208
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    • 1997
  • 콩 뿌리조직의 이온 흡수와 관련된 생리활성을 조사하기 위하여 뿌리조직으로부터 마이크로솜을 분리하였고, 마이크로솜 ATPase (이온점프) 활성을 분광학적 방법인 enzyme-coupled 분석방법에 따라 측정하였다. 마이크로솜 ATPase의 활성에 미치는 여러 가지 이온의 효과 또는 ATPase의 이온선택성을 조사하기 위하여 $10mM\;Na^+$$120mM\;K^+$을 포함하는 대조용액에서의 평균활성을 측정한 결과 190 nmol/min/mg protein으로 나타났다. 대조활성에 비하여 $Na^+$을 포함하지 않은 $130mM\;K^+$ 용액에서는 활성이 150%로 증가하였고, $K^+$을 포함하지 않은 $130mM\;Na^+$ 용액에서는 활성이 63%로 감소되었다. 반응용액의 $K^+$ 농도에 따른 활성변화를 측정한 결과, ATPase의 활성은 외부용액의 $K^+$ 농도 증가에 따라 활성이 증가됨을 알 수 있었다. 또한 마이크로솜 ATPase 활성은 반응용액의 pH 감소에 따라 증가되어 $pH\;6{\sim}7$에서는 비교적 높은 활성을 보였으나, pH 8 이상에서는 급격히 활성이 감소되었고, pH 9에서는 80%이상의 활성이 저해되었다. $Ca^{2+}$에 의한 이온펌프의 활성조절 여부를 평가하기 위해서 마이크로솜 내부 및 외부의 $Ca^{2+}$에 의한 ATPase 활성변화를 측정하였다. 마이크로솜 ATPase의 활성은 반응액의 $Ca^{2+}$ 농도가 낮아질수록 증가하여 $10^{-9}M$ 이하에서 최대활성이 관측되었고, $Ca^{2+}$ 농도가 증가할수록 활성은 감소하여 $500\;{\mu}M$ 전후에서 50%의 활성이 감소하였다. 또한 ATPase의 활성은 마이크로솜 내부의 $Ca^{2+}$ 농도증가에 의해서 저해되어, $Ca^{2+}\;ionophore\;A23187$처리에 의한 외부의 $Ca^{2+}$ 유입에 의해서 약30%의 활성감소를 보였으며, EGTA 처리에 의한 $Ca^{2+}\;chelation$에 의해서 마이크로솜 내부의 $Ca^{2+}$ 농도가 감소되었을 때, ATPase 활성은 증가하였다. 위의 조건에서 실제 마이크로솜 내부로의 $Ca^{2+}$ 유입 여부는 $‘Ca^{2+}’$를 이용하여 확인하였다. 이상의 결과는 마이크로솜 막에 위치한 ATPase의 내부 및 외부에 $Ca^{2+}$에 의한 효소활성 조절부위가 각각존재함을 시사한다.

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Novel $Ca^{2+}$-ATPase Found in the Human Milk Membrane Fraction

  • Cho, Jin-Kook;Kanno, Choemon
    • 한국유가공학회:학술대회논문집
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    • 한국유가공기술과학회 1997년도 춘계 제44회 유가공 심포지움
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    • pp.23-34
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    • 1997
  • Calcium-stimulated ATPase ($Ca^{2+}$-ATPase) which has optimal pH value at 7.0 was found in the membrane fraction of human milk, and its enzymatic properties were studied. The purified $Ca^{2+}$-ATPase required 0.45 mM Ca ion for maximal activity. Among the nucleosides, $Ca^{2+}$-ATPase showed a higher substrate specificity to ATP and UTP than to CTP and GTP. $Ca^{2+}$-ATPase had apparent Km value of 0.065, and V max of 7.63 mol ATP hydrolyzed/mg pro-tein per min, respectively. $Ca^{2+}$-ATPase was potently inhibited by lanthanide, vanadate, and p-chloromercuribenzoate, and inactivated by EDTA, and CDTA and EGTA, but were unaffected by N-ethylmaleimide, $NaN_3$, ouabain, or oligomycin, and was completely inactivated by heating at $60^{\circ}C$ for 10 min. This enzyme activity was concentrated in the membrane fraction of the cream and skim milk membrane, but not founded in bovine milk.

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해산어의 부분동결에 의한 $Ca^{2+}$-, $Mg^{2+}$- dependent Adenosine Triphosphatase 활성 및 근섬유의 미세구조 변화 II. 저온저장에 의한 방어 Actomyosin ATPase의 활성변화 (Changes in the $Ca^{2+}$-, $Mg^{2+}$- dependent Adenosine Triphosphatase Activity and Ultrastructure of Marine Fishes by Partial Freezing II. Changes in ATPase Activity of Yellowtail Actomyosin during Cold Storage)

  • 박찬성;최경호
    • 한국식품영양과학회지
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    • 제19권4호
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    • pp.349-355
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    • 1990
  • Actomyosine prepared from Yellowtail fish(seriola quinqueradiata) were stored at $0^{\circ}C$(ice-cooling) -3.5$^{\circ}C$(partial freeaing) and -2$0^{\circ}C$(freezing) Another actomyosin samples were prepared from the fish previously stored at the temperatures for a week as the maximum .Remaining activity of {{{{ {Ca }^{2+ } }}}}-and {{{{ {Mg }^{2+ } }}}}- dependent adenosine triphosphatase(ATPase) activity was measured fronm the actomyosin preparations. Specific activity of {{{{ {Mg }^{2+ } }}}}-ATPase of actomy-osin before storagew was 0.253$\mu$ mole pi/min/mg of protein and it was 1.5 times higher than that of {{{{ {Ca }^{2+ } }}}} -ATPase. The enzyme activities were markedly decreased during early period of storage. However no significant differences in the enzyme activity were revealed among the samples stored at different temperature. The enzyme of actomyosin prepared from the fish previously stored at the temperatures for a week revealed an acitivity of 2-3 times higher than that of freezing. Apparent denaturation constant of {{{{ {Mg }^{2+ } }}}} -ATPase of actomyosin was between 0.810-1.139 per day and it was about 1.5 times hgiher than that of {{{{ {Ca }^{2+ } }}}} -ATPase. But the constant of {{{{ {Mg }^{2+ } }}}} ATPase of actomyosin extracted from the fist stored for a week at each temperature was between 0.176-0.356 per day. This constant was 4 times higher than that of {{{{ {Ca }^{2+ } }}}}- ATPase in frozen stored fish. It was presumed from these results that denaturation of ATPase is largely accorded to the structural changes of actomyosin.

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