• Title/Summary/Keyword: phosphatase

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The effects of continuous and intermittent compressive pressure on alkaline phosphatase activity of MC3T3-E1 cells (지속적 및 간혈적 가압력이 MC3T3-E1 세포의 Alkaline phosphatase 활성도에 미치는 영향)

  • Song, Hye-Seob;Kyung, Hee-Moon
    • The korean journal of orthodontics
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    • v.26 no.4
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    • pp.449-454
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    • 1996
  • The propose of this study was to evaluate the difference of cellular activity dependent on intermittent compressive force by determining the alkaline phosphatase activity. Alkaline phosphatase activity was measured on control and experimental groups every 24, 48, 72hours. Experimental groups consisted of continous and intermittent compressive group which were compressed by $300gm/cm^2$ of diaphram pump. The intermittent compressive group was connected by timer which was worked on 10 minutes an off 10 minutes. The results were as follows; 1. The alkaline phosphatase activity between control and experimental groups showed not significant difference at compressed 24 hours. 2. The alkaline phosphatase activity of experimental groups were more increased than control group at compressed 48 hours. 3. The alkaline phosphatase activity of intermittent compressive group showed significant increased to control group. Whereby continuous compressive group showed not significant difference to control at 72 hours. 4. The alkaline phosphatase activity of intermittent compressive group were stringly increased than continuous compressive groups. 5. Between experimental groups and control group no other morphologic changes were detected by microscopic findings.

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Substrate Specificity of Alkaline Phosphatase (Alkaline phosphatase의 기질 특이성)

  • ;;E. Waelkens;W. Merlevede
    • YAKHAK HOEJI
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    • v.37 no.6
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    • pp.571-576
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    • 1993
  • The substrate specificity of the purified rabbit plasma alkaline phosphatase (ALPase) was determined towards a extended range of potential substrates including relatively simple phosphate derivatives as p-NPP and indolyl phosphate, and several synthetic peptides and phosphoproteins. These results further estabilish the broad substrate specificity of these circulating enzymes. Interestingly, the plasma ALPase preferentially dephosphorylates Thr over Ser residues, as demonstrated with a series of synthetic peptides. The latter result is in contradiction to the behaviour of the tissue ALPase, which is thought to the ultimate source of plasma ALPase, and open therefore new perspectives with respective to the origin and "solubilisation" processes of these enzymes. Dephsphrylation of protein substrates by endogenous and isolated plasma ALPases indicates that ALPase probably displays protein phosphatase activity in vivo.

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Localization and isozyme patterns of phosphatase in Fibricola seoulensis (Fibricola seoulensis에서 phosphatase의 분포와 동위효소유형)

  • 김홍자;김창환
    • Parasites, Hosts and Diseases
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    • v.31 no.4
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    • pp.353-362
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    • 1993
  • The present study was carried out to investigate the localization and isozyme patterns of acid phosphatase and alkaline phosphatase in metacercariae and in adults of F. seoulensis by enzyme-histochemistry method and electrophoresis. Acidphosphatase showed a strong activity at pH 5 in the intestinal caecum of adults, but showed no reactions in the nonsubstrate control and in the inhibitor-treated control. Alkaline phosphatase showed a strong activity at pH 8 in the intestinal caecum and the tribocytic organ of adults, and in the intestinal caecum and in the genital anlagen of metacercariae. In non-denature PAGE, ten bands of protein fraction from the extracts of metacercariae and twenty-two bands from adults were detected. In denature PAGE, two protein bands having molecular weights of 192 kDa and 123 kDa were detected in the metacercariae, but absent from adult stage. In adults, protein fractions of 27.5 kDa, 24.5 kDa, 21.4 kDa, 18 kDa, 16 kDa and 15 kDa were detected. In non-denature PAGE, isozymes of acid phosphatase showed the most strong activity at pH 5, whereas no activity was shown at pH 2 and pH 7. One isozyme 85 kDa, 73 kDa and 62 kDa) in adults.

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Distribution of Alkaline Phosphatase, PAS-Positive Materials and Phospholipid in the Kidney of the Developing Chick (鷄胎賢의 Alkaline Phosphatase, PAS-陽性物質 및 燐脂質의 分布에 관하여)

  • Hah, Jae Chung
    • The Korean Journal of Zoology
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    • v.12 no.3
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    • pp.77-84
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    • 1969
  • For the purpose of making clear the activity of the alkaline phosphatase to the morphogenesis and function of the various structures of the developing chick kidney in relation to PAS-positive materials and phospholipid, the author observed histochemically the aforementioned enzyme and other substances. The mesonephros and metanephros of 4-20 day white leghorn embryos were used, obtaining the following results. 1. Before definite appearance of the secretory tubules the alkaline phosphatase activity showed strongly in the undifferentiated mesenchymal tissue. As the tubules grew differentiated, the alkaline phosphatase activity was found to have disappeared in the mesenchymal tissue surrounding the tubules. The above mentioned fact indicates that the alkaline phosphatase may be concerned with morphogenesis of the developing chick kindney. 2. The fact that the strong alkaline phosphatase activity and the occurrence of the PAS-positive materials were observed at the luminal borders of differentiated secretory tubules of mesonephros and metanephros, indicates that alkaline phosphatase may be concerned with reabsorption of carbohydrate at the borders. 3. A strong positive reaction of phospholipid was found in the cytoplasm and brush borders of the mesonephric and metanephric tubules. The fact that vicissitude of alkaline phosphatase was found to coincide with that of phospholipid suggests that the enzyme may have influence on the metabolism of the phospholipid.

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Studies on the Alkaline Phosphatase of Pekin Duck: I. Some Properties of Liver Alkaline Phosphatase

  • Kang, Shin-Sung;Park, Tae-Kyu
    • The Korean Journal of Zoology
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    • v.25 no.2
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    • pp.71-80
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    • 1982
  • Some properties of alkaline phosphatase, partially purified from the liver of the local Pekin duck, Anas platyrhynchos, were investigated with the following results. 1. Gel-filtration of the duck liver extract indicated the presence of two molecular-weight species of alkaline phosphatase. 2. Electrophoresis of both enzyme preparations suggests the presence of two molecular forms of alkaline phosphatase with different physicochemical characteristics. 3. The liver alkaline phosphatase has an optimum pH of 9.0, and is further activated by $Mg^2+$ but not by $Ca^2+$. 4. The enzyme was relatively heat-labile, and was competitively inhibited by phosphate ions, but uncompetitively inhibited by L-phenylalanine. 5. These results are discussed in comparison with the properties of human and other animal alkaline phosphatases.

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Purification and NMR Studies of RNA Polymerase II C-Terminal Domain Phosphatase 1 Containing Ubiquitin Like Domain

  • Ko, Sung-Geon;Lee, Young-Min;Yoon, Jong-Bok;Lee, Weon-Tae
    • Bulletin of the Korean Chemical Society
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    • v.30 no.5
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    • pp.1039-1042
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    • 2009
  • RNA polymerase II C-terminal domain phosphatase 1 containing ubiquitin like domain (UBLCP1) has been identified as a regulatory molecule of RNA polymerase II. UBLCP1 consists of ubiquitin like domain (UBL) and phosphatase domain homologous with UDP and CTD phosphatase. UBLCP1 was cloned into the E.coli expression vectors, pET32a and pGEX 4T-1 with TEV protease cleavage site and purified using both affinity and gel-filtration chromatography. Domains of UBLCP1 protein were successfully purified as 7 mg/500 mL (UBLCP1, 36.78 KDa), 32 mg/500 mL (UBL, 9 KDa) and 8 mg/500 mL (phosphatase domain, 25 KDa) yielded in LB medium, respectively. Isotope-labeled samples including triple-labeled ($^2H/^{15}N/^{13}C$) UBLCP1 were also prepared for hetero-nuclear NMR experiments. $^{15}N-^{1}H$ 2D-HSQC spectra of UBLCP1 suggest that both UBL and phosphatase domain are properly folded and structurally independent each other. These data will promise us further structural investigation of UBLCP1 by NMR spectroscopy and/or X-ray crystallography.

Effect of Ginseng Saponins on $K^+-Dependent$ Phosphatase Activity of Dog Cardiac Sarcolemma (인삼 사포닌이 개 심실 형질막의 $K^+$-의존성 포스파타제 활성에 미치는 영향)

  • Lee, Shin-Woong;Lee, Jeung-Soo
    • YAKHAK HOEJI
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    • v.36 no.2
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    • pp.129-136
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    • 1992
  • The effects of ginseng saponins, gypsophila saponin, sodium dodecyl sulfate(SDS), and Triton X-100 on membrane $K^+-dependent$ phosphatase activity which is lipid dependent and represents dephosphorylation step of the complete Na+, $K^+-ATPase$ reaction were investigated in this study to elucidate whether the effects of ginseng saponins are due to the detergent action, using sarcolemma enriched preparation isolated from dog ventricle. $Na^+$, $K^+-ATPase$ and $K^+-dependent$ phosphatase activities of cardiac sarcolemma were about $143\;{\mu}mol$ Pi/mg protein/hr and $34\;{\mu}mol$ p-nitrophenol/mg protein/hr, respectively. While ginseng saponins (triol>total>diol) inhibited $K^+-dependent$ phosphatase activity, gypsophila saponin, and low dose of SDS($0.4\;{\mu}g/{\mu}g$ protein), and Triton X-100 ($0.6\;{\mu}g/{\mu}g$ protein) increased the enzyme activity, indicating disruptive effect of detergents on membrane barriers. The activating effect of low doses of Triton X-100 on membrane $K^+-dependent$ phosphatase appeared at concentration decreasing light scattering. However, the inhibitory effect of ginseng saponin appeared before a decrease in light scattering. These results suggest that low concentrations of ginseng saponins inhibit the membrane $K^+-dependent$ phosphatase by interacting directly with enzyme before membrane disruption.

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Purification and Characterization of ATPase and Phosphatase of Light Membrane Vesicles Isolated from Cucurbita pepo (Cucurbita pepo에서 분리한 Light Membrane Vesicle의 ATPase와 Phosphatase의 정제 및 특성)

  • 오승은
    • Journal of Plant Biology
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    • v.33 no.4
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    • pp.325-332
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    • 1990
  • Light membrane vesicles were isolated from the zucchini hypocotyl by floatation on ficoll density gradients and the proteins were solubilized with Triton X100. Three ATP-hydrolyzing enzymes were partially purified by ion-exchange and gel filtration chromatography and isoelectric focusing. There are plasma membrane-type ATPase whose activity was inhibited by vanadate but not by nitrate, tonoplast-type ATPase which was sensitive to nitrate but insensitive to vanadate and one having a phosphatase activity with a pI value different from that of an acid phosphatase. A fraction was obtained after DEAE-ion-exchange chromatography crossreacting with polyclonal antibodies against Ca2+ -ATPase from human erythrocytes.

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Bone Alkaline Phosphatase Levels in Serum of Normal Dogs (정상적인 개에서의 Serum Bone Alkaline Phosphatase의 활성치)

  • 조성진;김남수;최인혁
    • Journal of Veterinary Clinics
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    • v.14 no.1
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    • pp.65-69
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    • 1997
  • The bone alkaline phosphatase(BALP) in 130 sera of normal dogs were assayed according to the lectin precipitation method of Rosalki and Foo. The serum BALP activities showed a wide variation as $23.27({\pm}14.73)$ IU/L in young dogs from 6weeks to 12 months old and were lower in magnitude as $9.24({\pm}3.36)$ IU/L in elder dogs from 1 years to 6years old. The serum BALP activities in normal dogs were no significant correlation in sex.

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Cloning and Functional Characterization of Ptpcd2 as a Novel Cell Cycle Related Protein Tyrosine Phosphatase that Regulates Mitotic Exit

  • Zineldeen, Doaa H.;Wagih, Ayman A.;Nakanishi, Makoto
    • Asian Pacific Journal of Cancer Prevention
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    • v.14 no.6
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    • pp.3669-3676
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    • 2013
  • Faithful transmission of genetic information depends on accurate chromosome segregation as cells exit from mitosis, and errors in chromosomal segregation are catastrophic and may lead to aneuploidy which is the hallmark of cancer. In eukaryotes, an elaborate molecular control system ensures proper orchestration of events at mitotic exit. Phosphorylation of specific tyrosyl residues is a major control mechanism for cellular proliferation and the activities of protein tyrosine kinases and phosphatases must be integrated. Although mitotic kinases are well characterized, phosphatases involved in mitosis remain largely elusive. Here we identify a novel variant of mouse protein tyrosine phosphatase containing domain 1 (Ptpcd1), that we named Ptpcd2. Ptpcd1 is a Cdc14 related centrosomal phosphatase. Our newly identified Ptpcd2 shared a significant homology to yeast Cdc14p (34.1%) and other Cdc14 family of phosphatases. By subcellular fractionation Ptpcd2 was found to be enriched in the cytoplasm and nuclear pellets with catalytic phosphatase activity. By means of immunofluorescence, Ptpcd2 was spatiotemporally regulated in a cell cycle dependent manner with cytoplasmic abundance during mitosis, followed by nuclear localization during interphase. Overexpression of Ptpcd2 induced mitotic exit with decreased levels of some mitotic markers. Moreover, Ptpcd2 failed to colocalize with the centrosomal marker ${\gamma}$-tubulin, suggesting it as a non-centrosomal protein. Taken together, Ptpcd2 phosphatase appears a non-centrosomal variant of Ptpcd1 with probable mitotic functions. The identification of this new phosphatase suggests the existence of an interacting phosphatase network that controls mammalian mitosis and provides new drug targets for anticancer modalities.