• Title/Summary/Keyword: ATPase6

검색결과 278건 처리시간 0.021초

BC3H-1 분화세포에서의 (Na,K)ATPase ${\alpha}_2$ isoform의 표현증대 (Increased Expression of the ${\alpha}_2$ Isoform of (Na,K)ATPase in the Differentiated Murine Muscle Cell Line BC3H-1)

  • 이경림
    • 약학회지
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    • 제40권6호
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    • pp.734-738
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    • 1996
  • The development of the alpha2 isoform of (Na,K)ATPase which is high affinity ouabain receptors was studied in the differentiating nonfusing muscle cell line BC3H-1. T he differentiation process of BC3H-1 cell line was confirmed by 2-dexy-D-[$^3$H] glucose uptake experiment and the quantity of the expression of ${\alpha}_2$ isoform was measured using a whole cell [$^3$H] ouabain-binding assay. Undifferentiated growing BC3H-1 cells, myoblasts, exhibited low levels of insulin-stimulated glucose uptake and [$^3$H] ouabain-binding sites. In contrast, differentiated BC3H-1 cells, myocytes, had a 5.6-fold increase in insulin-stimulated glucose uptake and 5-fold increase in [$^3$H] ouabain-binding sites. Scatchard analysis showed that myocytes developed more [$^3$H] ouabain-binding sites than myoblasts vath a dissociation constant (kd) of 6${\times}10^{-8}$M and capacity of 6.l${\times}10^{-5}$ sites/cell. Therefore. it seems that myoblasts express low levels of ${\alpha}_2$ subunit and probably the majority of ${\alpha}_1$ subunit, whereas myocytes express high levels of ${\alpha}_2$ isoform. The results indicate that the expression of ${\alpha}_2$ isoform is developmentally regulated during differentiation and that BC3H-1 culture system provides an excellent model for the study of differentiation and mechanism of (Na,K)ATPase action in muscle which requires electrical excitability.

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The Replication Protein Cdc6 Suppresses Centrosome Over-Duplication in a Manner Independent of Its ATPase Activity

  • Kim, Gwang Su;Lee, Inyoung;Kim, Ji Hun;Hwang, Deog Su
    • Molecules and Cells
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    • 제40권12호
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    • pp.925-934
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    • 2017
  • The Cdc6 protein is essential for the initiation of chromosomal replication and functions as a licensing factor to maintain chromosome integrity. During the S and G2 phases of the cell cycle, Cdc6 has been found to inhibit the recruitment of pericentriolar material (PCM) proteins to the centrosome and to suppress centrosome over-duplication. In this report, we analyzed the correlation between these two functions of Cdc6 at the centrosome. Cdc6 depletion increased the population of cells showing centrosome over-duplication and premature centrosome separation; Cdc6 expression reversed these changes. Deletion and fusion experiments revealed that the 18 amino acid residues (197-214) of Cdc6, which were fused to the Cdc6-centrosomal localization signal, suppressed centrosome over-duplication and premature centrosome separation. Cdc6 mutant proteins that showed defective ATP binding or hydrolysis did not exhibit a significant difference in suppressing centrosome over-duplication, compared to the wild type protein. In contrast to the Cdc6-mediated inhibition of PCM protein recruitment to the centrosome, the independence of Cdc6 on its ATPase activity for suppressing centrosome over-duplication, along with the difference between the Cdc6 protein regions participating in the two functions, suggested that Cdc6 controls centrosome duplication in a manner independent of its recruitment of PCM proteins to the centrosome.

Actomyosin $Ca^{++}$ Activated Adenosinetriphosphatase 활성도에 대한 pH 및 온도의 영향 (pH-Temperature Dependence of the Ca-ATPase Activity in Actomyosin Systems of Rabbit and Frog Skeletal muscle)

  • 김희중;황애란;박양생;강두희
    • The Korean Journal of Physiology
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    • 제11권2호
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    • pp.1-7
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    • 1977
  • The activity of the $Ca^{++}$ activated adenosinetriphosphatase (Ca-ATPase) of actomyosin systeme of rabbit and frog skeletal muscle has been studied at varying pH and temperature. The PH optima of the Ca-ATPase activity of the rabbit actomyosin was rather broad. Over the temperature range of $16-36^{\circ}C$ activity of the enzyme was not appreciably changed between pH 6.4-8.5; below and above which it rapidly reduced. The pH at the inflection point of the enzyme activity increased as temperature decreased, showing the ${\bigtriangleup}pH\;inflection/{\bigtriangleup}T$ of approximately $-0.018\;unit/^{\circ}C$. Consequently, $(OH^-)/(H^+)$ ratio at the inflection point was constant regardless of assay temperature. In the frog actomyosin systems the Ca-ATPase activity was not apparently altered between PH 6.4-7.0 when the incubation temperature was $15{\sim}30^{\circ}C$. Outside of this range of pH, however, the enzyme activity was dramatically decreased. The pH of the inflection point changed inversely with temperature. ${\bigtriangleup}pH\;inflection/{\bigtriangleup}T$ at the acidic side was approximately $-0.018\;unit/^{\circ}C$, whereas that at the alkaline side it was about $-0.037\;unit/^{\circ}C$. The Arrhenius Plot on the Ca-ATPase activity at constant $(OH^-)/(H^+)$ ratio of 1.0 was not linear, but showed break at arround $20^{\circ}C$ for both rabbit and frog actomyosin Preparations. From these results it was speculated that pH dependence of Ca-ATPase activity of rabbit actomyosin systems might reflect titrations of histidine-imidazole and -SH groups, and that of the frog actomyosin represents titrations of histidine-imidazole and lysyllysine ${\alpha}-NH_2$ groups.

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Vanadate 처리가 종양세포의 방사선 감수성에 미치는 영향 (Enhanced Radiosensitivity of Tumor Cells Treated with Vanadate in Vitro)

  • 이명자;이원영
    • Radiation Oncology Journal
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    • 제12권2호
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    • pp.129-141
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    • 1994
  • Intracellular ions which have a major role in cellular function have been reported to affect repair of radiation damage. Recently it has been reported that ouabain sensitizes A549 tumor cellls but not CCL-120 normal cells to radiation. Ouabain inhibits the $Na^+-K^+$-pump rapidly thus it increases intracellular Na concentration, Vanadate which is distributed extensively in almost all living organisms is known to be a $Na^+-K^+$-ATPase inhibitors, This study was performed to see any change in radiosensitivity of tumor cell by vanadate and any role of $Na^+-K^+$ATPase in radiosensitization. Experiments have been carried out by pretreatment with vanadate in human cell line(A549, JMG) and mouse cell line(L1210, spleen). For the cell survival MTT assay was performed for A549 and JMC cells and frypan blue dye exclusion test for L120, and spleen cells. Measurements of $Na^+-K^+$-ATPase activity in control, vanadate treated cell, radiation treated cell (9 Gy for A549 and JMG, 2 Gy for L1201, spleen), and combined $10^{-6}M$ vanadate and radiation treated cells were done. The results were summerized as fellows. 1. L1210 cell was most radiosensitive, and spleen cell and JMG cell were intermediate, and A549 cell was least radiosensitive. 2. Mininum or no cytotoxicity was seen with vanadate below concentration of $10^{-6}M$. 3. In A549 cells there was a little change in radiosensitivity with treatment of vanadate. However radiation sensitization was shown in low dose level of radiation i. e. 2- Gy. In JMG cells no change in radiosensitivity was noted. Both L1210 and spleen cell had radiosensitization but change was greater in tumor cell. 4. $Na^+-K^+$-ATPase activity was inhibited significantly in tumor cell by treatment of vanadate. 5. Radiaiton itself inhibited $Na^+-K^+$-ATPase activity of tumor cell with high $Na^+-K^+$-ATPase concention. Increase in radiosensitivity by vanadate was closely associated with orginal $Na^+-K^+$-ATPase contents. From the above results vanadate had little cytotoxicity and it sensitized tumor cells to radiation. Inhibitory effect of vanadate on $Na^+-K^+$-ATPase activity might be one of the contributing factors for radiosensitization to tumor cells which has greater enzyme activity than that of normal cell. It was suggested vanadate could be used as a potential radiosensitizer for tumor cells.

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($KNO_3$를 첨가한 양액에서 상추의 생육 및 마이크로솜 ATPase 활성 변화 (Growth and Microsomal ATPase Activity of Lettuce(Lactuca sativa. L.) Cultured in the $KNO_3-Added$ Nutrient Solution)

  • 이경자;강보구;김현주;민경범;김영기
    • 한국환경농학회지
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    • 제20권1호
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    • pp.28-33
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    • 2001
  • 본 시험에서 사용된 상추는 대조구인 양액과 양액에 30 mM $KNO_3$, 혹은 양액에 50 mM $KNO_3$를 첨가한 염류농도가 다른 3가지의 양액에서 재배하였으며 이들 양액의 EC는 각각 1.0, 4.5, 6.5 ds/m이었다. 상추의 생육은 처리간에 차이를 보였으며 $KNO_3$를 첨가하여 염류농도를 높여준 용액에서 재배한 상추는 잎끝이 마르는 생리적 장해를 보이면서 발아율의 감소는 물론 초장, 경태, 엽장 및 엽폭 등 성장이 대조구와 비교하여 현저히 부진하였다. 이들 양액에서 자란 상추의 뿌리로부터 마이크로솜을 분리하여 ATPase의 특성을 조사하였다. 마이크로솜 ATPase의 활성은 대조구에 비하여 양액에 30 mM $KNO_3$와 50 mM $KNO_3$를 첨가한 용액에서 자란 상추에서 더 높았다. 상추뿌리로부터 분리한 마이크로솜 ATPase의 총활성은 재배양액 조건에 관계없이 pH 7.0에서 최대로 나타났다. ATPase의 활성은 반응용액의 $K^+$ 농도를 증가시키면 증가하였고 반응용액에 $Na^+$ 농도를 증가시키면 감소하였다. $K^+$에 의한 활성증가 효과는 양액에서 재배한 대조구보다 $KNO_3$를 첨가하여 EC를 높여준 양액에서 재배한 상추뿌리의 마이크로솜 ATPase에서 더 크게 나타났다. 이러한 결과는 생육환경내 $KNO_3$ 농도의 증가에 따라 뿌리의 생리활성을 조절하는 ATPase의 활성이 증가함을 보여준다.

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쥐 근소포체의 ($Ca^{2+}$+$Mg^{2+}$)-ATPase의 분리정제와 그 효소특성에 관하여 (Purification and Characterization of ($Ca^{2+}$+$Mg^{2+}$)-ATPase of Sarcoplasmic Reticulum from Rat Skeletal Muscle)

  • Lee, Jong-Soon;Ha, Doo-Bong;Chung, Chin-Ha
    • 한국동물학회지
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    • 제28권1호
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    • pp.31-43
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    • 1985
  • $(Ca^{2+}+Mg^{2+})$-ATPase를 쥐의 근소포체로부터 sucrose density gradient centrifugation의 방법을 사용하여 분리 정제하였다. 정제된 효소를 폴리아크릴 아마이드 젤에서 전기영동한 결과, 토끼와 닭의 경우에서와 같이 분자량 115,000인 단일 단백질 띠로 나타났다. 정제된 이 효소의 활설도는 50 $\\muM$의 $Mg^{2+}, Ca^{2+}, Co^{2+}, Fe^{2+}, Min^{2+}$에 의해서는 증가되었고, 같은 농도의 $Zn^{2+}, Cu^{2+}, Hg^{2+}$에 의해서는 감소되었다. Quinine와 quinacrine 같은 antimalarial drug는 이 효소의 활성도에 큰 영향을 주지 않았으나, p-hydroxymercuric benzoate와 phenylmethylsulfonylfluoride는 이 효소의 활성을 억제하였다. 이 효소는 pH 6과 7 사이에서 가장 높은 활성을 나타내었고, ATP를 기질로 사용하였을 때 Km 값은 98 $\\muM$이었다. $(Ca^{2+}+Mg^{2+})$-ATPase는 microsomal fraction에서 선택적으로 분해되었다. $^{3}H-casein$ 이나 ^{125}I-insulin같은 방사성 동위원소로 표지된 기질을 사용하여 단백질 분해에 대한 활성도를 조사해 본 결과, microsomal preparation에 metalloendoprotease가 존재하였다. 그러나 아직까지는 그 효소가 $(Ca^{2+}+Mg^{2+})$-ATPase를 분해하는지는 확실하지 않다.

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닭고기의 근원섬유 단백질에 관한 연구 -2. 골격근 부위별로 추출한 근원섬유, 액토미오신 및 미오신의 ATPase 활성 비교- (Studies on the Myofibrillar Proteins from Chicken Muscle -2. Comparison of ATPase Activity in Myofibril, Actomyosin and Myosin Extracted from Leg and Pectoral Skeletal Muscle)

  • 박창식;공양숙;문윤희
    • 한국식품영양과학회지
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    • 제14권1호
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    • pp.82-87
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    • 1985
  • 닭의 가슴부위 및 다리부위의 골격근(骨格筋)에서 myofibril, actomyosin 및 myosin을 추출하고 ATPase activity(${\mu}mole$ pi/mg protein/min)로서 나타낸 몇가지 생물학적(生物學的) 활성(活性)을 비교하였다. 가슴부위에서 추출한 actomyosin, myofibril 그리고 myosin의 $Mg^{+2}$-ATPase 활성(活性)은 0.05M KCl에서 0.80, 0.42, 0.40으로서 다리부위에서 추출한 단백질(蛋白質)의 활성(活性)인 0.69, 0.33, 0.28 보다 높았다. 가슴부위와 다리부위의 myosin의 ATPase 활성(活性)은 EDTA 농도보다 $Mg^{+2}$농도가 높아지면서 ATPase 활성(活性)을 1/10정도 저해(沮害)시켰고, $Ca^{+2}$ 농도는 $10^{-3}M$에서 400%까지 활성(活性)을 증가시켰다. 가슴부위와 다리부위에서 추출한 actomyosin의 용해되는 시점(始點)은 각각 0.1M KCl 및 0.15 M KCl이었고 myosin인 경우는 각각 0.25 M KCi 및 0.30 M KCl이었다.

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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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골격근 근장그물 칼슘이동에 대한 Phospholamban 펩타이드의 조절 (Effect of a Phospholamban Peptide on the Skeletal Sarcoplasmic Reticulum $Ca^{2+}$ Transport)

  • 김혜원;이희란
    • 대한약리학회지
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    • 제30권1호
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    • pp.117-124
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    • 1994
  • Phospholamban은 심근 근장그물 $Ca^{2+}-ATPase$ 조절단백이다. 조절작용기전은 탈인산화된 phospholamban에 의해 $Ca^{2+}-ATPase$가 억제됨으로 나타나며, 이 phospholamban이 인산화됨으로 $Ca^{2+}-ATPase$에 대한 억제가 반전됨을 보인다. 최근에 phospholamban의 cytoplasmic domain만으로 $Ca^{2+}-ATPase$를 억제하기에는 불충분하다는 보고가 있어 본 실험을 계획하였다. $Ca^{2+}-ATPase$의 활성을 억제하는 phospholamban domain을 밝히기 위하여 합성한 phospholamban 펩타이드(아미노산 1-25)의 $Ca^{2+}$ uptake에 대한 효과를 살펴보았다. 골격근 근장그물에서 $Ca^{2+}-ATPase$를 분리한 후 phosphatidylcholine이나 phosphatidylcholine과 phosphatidylserine을 포함한 liposome에 재조합시켰다. Phospholamban 펩타이드는 phosphatidylcholine을 이용하여 재조합된 vesicles의 초기 $Ca^{2+}$ uptake rate를 억제하고, cAMP 의존성 protein kinase의 catalytic subunit로 인산화시킨 phospholamban 펩타이드는 이 억제를 반전시킴을 보여 주었다. Phosphatidylcholine과 phosphatidylserine을 포함한 제조합 vesicles에서도 같은 양상을 보였다. 이상의 결과로 미루어 볼 때 인산화 sites를 포함하고 있는 phospholamban의 cytoplasmic domain은 그 자체만으로도 근장그물 칼슘펌프를 억제하기에 충분하다고 결론지을 수 있다.

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가토 신피질에서 PAH이동과 Na-K-ATPase활성에 미치는 Vanadate의 영향 (Effect of Vanadate on PAH Transport and Na-K-ATPase Activity in Rabbit Renal Cortex)

  • 정진섭;이상호
    • The Korean Journal of Physiology
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    • 제17권2호
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    • pp.143-159
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    • 1983
  • Vanadate가 가토 신피질절편에서 PAH이동과 Na-K-ATPase활성에 미치는 효과를 관찰한 결과 다음과 같은 결론을 얻었다. 1) Vanadate는 Na-K-ATPase활성을 농도에 따라 억제하였으며 $7.94{\times}10^{-7}M$에서 이 효소의 활성이 50% 억제되었다. 2) Vanadate는 PAH의 능동적이동을 농도에 따라 억제하였으며 50%억제농도는 대략 $10^{-4}M$ 이었고, 수동적이동에는 영향을 미치지 못하였다. 조직내 Na과 K의 양도 vanadate가 PAH이동을 억제하는 농도 범위에서 같이 변화하였고 산소소모량은 $10^{-4}M$까지는 약간 감소하였으나 $10^{-3}M$에서는 오히려 증가하였다. 3) 30분간 preincubation한 후에도 15분까지의 PAH이동은 30분 이후에 비해 vanadate에 의해 적게 억제되었다. 4) $10^{-4}M$ vanadate와 $10^{-4}M$ ouabain은 가역적으로 PAH 이동을 억제하였으며 $10^{-3}M$ vanadate는 비가역적으로 억제하였고 장시간 세척후에도 거의 같은 정도의 억제양상을 나타내었다. 5) Vanadate에 의한 PAH이동의 억제정도는 incubation용액내 $Na^+$의 감소, $K^+$의 증가에 의하여 증가하였고 $Ca^{2+}$의 농도 변화에 의해서는 영향을 받지 않았다. 6) Vanadate가 존재치 않을 때 Tris완충용액 사용시는 pH 8.2까지 PAH축적정도가 증가하였고 phosphate완충용액 사용시는 pH 7.4에서 최대축적치를 보였다. pH가 증가함에 따라 억제정도는 증가하였으며 같은 pH에서도 완충용액의 종류에 따라 vanadate에 의한 억제정도가 달랐다. 7) Vanadate와 ouabain은 PAH이등과 Na-K-ATPase활성에 부가적 억제작용을 나타내었다. 이상의 결과로 vanadate는 가토신장의 세포내부에서 Na-K-ATPase를 가역적으로 억제함으로써 PAH의 이동을 억제하는 것으로 생각되며 PAH의 이동은 Na-K-ATPase활성과 기능적으로 밀접히 연결되어 있는 것으로 생각된다.

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