• 제목/요약/키워드: $H^+$-ATPase

검색결과 268건 처리시간 0.023초

Molecular Cloning, Bioinformatics Analysis and Expression Profiling of a Gene Encoding Vacuolar-type $H^+-ATP$ Synthetase (V-ATPase) c Subunit from Bombyx mori

  • Lu, Peng;Chen, Keping;Yao, Qin;Yang, Hua-Jun
    • International Journal of Industrial Entomology and Biomaterials
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    • 제15권2호
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    • pp.115-122
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    • 2007
  • As the genome of B.mori is available in GenBank and the EST database of B.mori is expanding, identification of novel genes of B.mori is conceivable by data-mining techniques. We used the in silico cloning method to get the vacuolar-type $H^+-ATP$ synthetase (V-ATPase) c subunit (16 kDa proteolipid subunit) gene of B.mori and analysed with bioinformatics tools. The result was confirmed by RT-PCR and sequencing. The V-ATPase c subunit cDNA contains a 468 bp ORF. The ORF encoded a 155-residue protein that showed extensive homology with V-ATPase c subunits from other 15 species and contained four membrane-spanning helices. Tissue expression pattern analysis revealed that V-ATPase c expressed strongly in Malpighian tubules, not in fat body. This gene has been registered in GenBank under the accession number EU082222.

토끼 적혈구막의 NaK ATPase의 활성도에 대한 aconite의 작용 (Action of Aconite on Sodium-Potassium Activated ATPase in Rabbit Red Cell Membrane)

  • 고일섭
    • The Korean Journal of Physiology
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    • 제10권1호
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    • pp.15-24
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    • 1976
  • The action of aconite on the sodium plus potassium activated ATPase activity in the rabbit red cell membrane has been investigated and the experiments were also designed to determine the mechanism of action of aconite on the ATPase activity. The following results were observed. 1. The activity of the NaK ATPase from red cell membrane is stimulated by aconite, and the concentration of aconite for maximal activity is about 80 mg%. The pH optimum for the aconite sensitive component is 8.0. 2. The activating effect of aconite on the ATPase, with a given concentration of sodium in the medium, is increased by raising the potassium concentration but activity ratio is decreased. 3. The activating effect of aconite on the ATPase, with a given concentration of potassium in the medium, is increased by raising the sodium concentration but activity ratio is decreased. 4. The action of aconite on the ATPase activity is inhibited by calcium ions and the effect of inhibition is increased by small amounts of calcium but decreased by larger amounts. 5. The activating effect of aconite on the ATPase was not related to the sulfhydryl group of cysteine, the amino group of lysine, the hydroxyl group of threonine or the imidazole group of histidine. 6. The action of aconite on the ATPase activity is due to carboxyl group of the enzyme of NaK ATPase.

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Pilocarpine이 토끼 적혈구막의 NaK ATPase의 활성도에 대한 작용 (Action of Pilocarpine on Sodium-Potassium activated ATPase in Rabbit Red Cell Membrane)

  • 고일섭
    • The Korean Journal of Physiology
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    • 제11권1호
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    • pp.11-20
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    • 1977
  • The action of pilocarpine on the sodium plus potassium activated ATPase activity in the rabbit red cell membrane has been investigated and the experiments were also designed to determine the mechanism of action of pilocarpine on the ATPase activity. The following results were observed. 1. The activity of the NaK ATPase from red cell membrane is stimulated by pilocarpine, and the concentration of pilocarpine for maximal activity is about 3 mM. The pH optimum for the pilocarpine sensitive component is 8.0. 2. The activating effect of pilocarpine on the ATPase, with a given concentration of sodium .in the medium, is increased by raising the potassium concentration but activity ratio is decreased 3. The activating effect of pilocarpine on the ATPase, with a given concentration of Potassium in the medium, is increased by raising the sodium concentration but activity ratio is decreased 4. The NaK ATPase activity is increased by small amounts of calcium but decreased by 'larger amounts. The activity ratio of the enzyme by pilocarpine is decreased by small amounts .of calcium but decreased by larger amounts. 5. The activating effect of pilocarpine on the ATPase was not related to the sulfhydryl group of cysteine, the hydroxyl group of threonine or the imidazole group of histidine. 6. The activating effect of pilocarpine on the ATPase is due to amino group and carboxyl group of the enzyme of NaK ATPase

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비름에서 ATP 가수분해효소와 상동성을 가지는 유전자의 클로닝 (Molecular Cloning and Nucleotide Sequence of Amaranthus viridis Homologue of the H -Transporting ATPase Gene)

  • 한규웅
    • 생명과학회지
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    • 제6권1호
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    • pp.1-5
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    • 1996
  • Using differential hybridization, a cDNA clone was isolated fortuitously from Amaranthus viridis and sequenced. This nucleotide sequence exhibited 55.1% identity with vma6 which encodes the 36-kD subunit of the vacuolar proton transporting ATPase in Saccharmoyces cerevisiae. The predicted open reading frame encodes a protein of 221 amino acid sequence with a calculated molecular weight of 25,452 and reveals high levels of similarity with subunit D polypeptide of vacuolar H -ATP(e.g., 48.5, 52.1 and 49.3% identity to the vacuolar 36-kD chain of yeast, vacuolar 32-kD polypeptide IV of human and vacuolar 28-kD protein of bovine chromaffin granules, respectively). The hydropathy index computation revealed that this predicted protein is a peripheral protein. These results indicated that the predicted protein may play a sturctural role in the vaculor H -ATPase as does gamma subunit in V-type ATPase.

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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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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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Effect of Omeprazole on Membrane P-Type ATPase and Peptide Transport in Helicobacter pylori

  • KI, MI-RAN;SOON-KYU YUN;SE-YOUNG HWANG
    • Journal of Microbiology and Biotechnology
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    • 제9권3호
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    • pp.235-242
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    • 1999
  • We investigated the growth-inhibitory mechanism of Helicobacter pylori by omeprazole (OMP) and its activated sulfenamide (OAS). Using dithiothreitol (DTT) and 5,5'-dithio-bis[2-nitrobenzoic acid] (DTNB; Ellman's reagent), we first determined the relationship between the binding capacity of these compounds to H. pylori membrane and its significance to membrane P-type ATPase activity. After incubation of the intact H. pylori cells with either OMP or OAS, the residual quantity of free SH-groups on the cell membrane was measured, and, the resulting values were plotted as a function of time. From this experiment, we found that there was a considerable difference in the membrane-binding rates between OMP and OAS. At neutral pH, the disulfide bond formation on H. pylori membrane was completed within 2 min of incubation of the intact cells with OAS. By OMP, however, it was gradually formed, exceeding 10 min of incubation for completion, whereby, the extent of P-type ATPase inhibition appeared to be proportional to the disulfide forming rate. From this data, it was suggested that the disulfide formation might directly affect enzyme activity. Since OMP per se cannot yield a disulfide bond with cysteine, it is predicted that the enzyme inactivation must be caused by the OAS form. Accordingly, we postulated that, under the neutral pH, OMP could be converted to OAS in the course of transport. By extrapolating the inhibitory slopes, we could evaluate K₁ values, relating to their minimal inhibitory concentrations (MICs) for H. pylori growth. In these MIC ranges, H. pylori uptake or vesicular export of nutrients such as peptides were totally prohibited, but their effect in Escherichia coli were negligible. From these observations, we strongly suggest that the P-type ATPase activity is essential for the survival of H. pylori cells in particular.

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ATP Hydrolysis Analysis of Severe Acute Respiratory Syndrome (SARS) Coronavirus Helicase

  • Lee, Na-Ra;Lee, A-Ram;Lee, Bok-Hui;Kim, Dong-Eun;Jeong, Yong-Joo
    • Bulletin of the Korean Chemical Society
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    • 제30권8호
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    • pp.1724-1728
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    • 2009
  • Severe acute respiratory syndrome coronavirus (SARS-CoV) helicase separates the double-stranded nucleic acids using the energy from ATP hydrolysis. We have measured ATPase activity of SARS-CoV helicase in the presence of various types of nucleic acids. Steady state ATPase analysis showed that poly(U) has two-times higher turnover number than poly(C) with lower Michaelis constant. When M13 single-stranded DNA is used as substrate, the Michaelis constant was about twenty-times lower than poly(U), whereas turnover numbers were similar. However, stimulation of ATPase activity was not observed in the presence of double-stranded DNA. pH dependent profiles of ATP hydrolysis with the helicase showed that the optimal ATPase activities were in a range of pH 6.2 ~ 6.6. In addition, ATP hydrolysis activity assays performed in the presence of various divalent cations exhibited that $Mg^{2+}$ stimulated the ATPase activity with the highest rate and $Mn^{2+}$ with about 40% rate as compared to the $Mg^{2+}$.

옥수수 뿌리로부터 분리한 Membrane-bound ATPase의 특성에 관한 연구 (Characterization of the Membrane-bound Adenosine Triphosphatase from Corn Roots)

  • Moon, Hye Yeon;Kwang Soo Roh;Woong Seop Sim
    • Journal of Plant Biology
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    • 제24권4호
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    • pp.171-179
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    • 1981
  • 옥수수 뿌리로부터 분리한 13,000g pellet과 13,000~80,000g pellet 내에 있는 membrane-bound ATPases의 특성을 구명하였다. 13,000g pellet과 13,000~80,000g pellet의 membrane-bound ATPases의 최적 pH는 5와 9였다. Discontinuous sucrose gradient centrifugation에 의한 13,000g pellet의 분획중 Fraction C는 pH 5에서, Fraction D, E 및 F는 pH 5에서보다 pH 9에서 더높은 활성을 나타냈다. 13,000~80,000g pellet의 분획에서 보면, Fraction A, C는 pH 9보다 pH 5에서, Fraction B, D, E 및 F는 pH 5보다 pH 9에서 더 높은 활성을 가겠다. pH 5와 pH 9에서 membrane-bound ATPases의 기질포화 농도는 3~5 mM이며 ATP에 대한 Km 값은 모두 0.25 mM이였다. Vmax 값은 8.0~55.6 $\mu$M Pi/mg membrane protein/hr의 범위에 있었다. Membrane-bound ATPase의 활성은 $K^+$ 이온에 의해 증가되었다.

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황체막에서의 $Ca^{++}-ATPase$의 특성 (Partial Characterization of Physicochemical and Kinetic Properties of $Ca^{++}-ATPase$ System in Luteal Membranes)

  • 최규복;구본숙;김인교
    • The Korean Journal of Physiology
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    • 제20권2호
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    • pp.257-270
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    • 1986
  • It has been reported that the luteal function may be regulated by the intracellular calcium in luteal cells (Higuchi et al, 1976; Dorflinger et at, 1984; Gore and Behrman, 1984) which is adjusted partially by $Ca^{++}-ATPase$ activities in luteal cell membranes (Verma and Pennistion, 1981). However, the physicochemical and kinetic properties of $Ca^{++}-ATPase$ in luteal membranes were not fully characterized. This study was, therefore, undertaken to partially characterize the physicochemical and kinetic properties of $Ca^{++}-ATPase$ system in luteal membranes and microsomal fractions, known as an one of the major $Ca^{++}$ storge sites (Moore and Pastan, 1978), from the highly luteinized ovary Highly luteinized ovaries were obtained from PMSG-hCG injected immautre female rats. Light membrane and heavy membrane fractions and microsomal fractions were prepared by the differential and discontinuous sucrose density gradient centrifugation method desribed by Bramley and Ryan (1980). Light membrane and heavy membrane fractions and microsomal fractions from highly luteinized ovaries are composed of the two different kinds of $Ca^{++}-ATPase$ system. One is the high affinity $Ca^{++}-ATPase$ which is activated in low $Ca^{++}$ concentration (Km, 10-30 nM), the other is low affinity $Ca^{++}-ATPase$ activated in higher $Ca^{++}$ concentration $(K_{1/2},\;40\;{\mu}M)$. At certain $Ca^{++}$ concentrations, activities of high and low affinity $Ca^{++}-ATPase$ are the highest in light membrane fractions and are the lowest in microsomal fractions. It appeares that high affinity $Ca^{++}-ATPase$ system have 2 binding sites for ATP (Hill's coefficient; around 2 in all membrane fractions measured) and the positive cooperativity of ATP bindings obviously existed in each membrane fractions. The optimum pH for high affinity $Ca^{++}-ATPase$ activation is around S in all membrane fractions measured. The lipid phase transition temperature measured by Arrhenius plots of high affinity $Ca^{++}-ATPase$ activity is around $25^{\circ}C$. The activation energies of high affinity $Ca^{++}-ATPase$ below the transition temperature are similar in each membrane fractions, but at the above transition temperature, it is the hightest in heavy membrane fractions and the lowest in microsomal fractions. According to the above results, it is suggested that intracellular $Ca^{++}$ level, which may regulate the luteal function, may be adjusted primarily by the high affinity $Ca^{++}-ATPase$ system activated in intracellular $Ca^{++}$ concentration range $(below\;0.1\;{\mu}M)$.

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