• Title/Summary/Keyword: Carboxyl proteinase

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Studies on the Characterization of Carboxyl Proteinase in Poria cocos (복령의 Carboxyl Proteinase의 분리 정제 및 그 성질에 관한 연구(II))

  • Min, Tae-Jin;Park, Sang-Shin;Moon, Soon-Ku
    • The Korean Journal of Mycology
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    • v.14 no.2
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    • pp.101-107
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    • 1986
  • The properties of carboxyl proteinase which was contained in Poria cocos (Schw.) Wolf were investigated by means of the purification with 0.65 ammonium sulfate saturation, DEAE cellulose and Sephadex G-75 gel filtration. This enzyme was found to hydrolyze only peptide bond between glutamyl-L-tyrosine of carbobenzoxy-L-glutamyl-L-tyrosine among the synthetic substrates of carbobenzoxy-L-glutamyl-L-tyrosine, hippuryl- L-phenylalanine and hippuryl-L-arginine. This enzyme was inhibited by $Zn^{+2},\;Fe^{+2},\;Ca^{+2},\;CN^{-1},\;P_2O_7^{-4}$ ions, but stimulated by $Hg^{+2}$ ion. Also, this enzyme was inhibited by organic compounds such as L-lysine, L-phenylalanine, hippuryl-L-phenylalanine, diazoacetyl-DL-norleucine methyl ester (DAN) and 1,2-epoxy-3-(P-nitrophenoxy)propane(EPNP). In particular, the activity was inhibited by L-lysine till 20 minutes of preincubation time rapidly, and by DAN in the presence of $Cu^{+2}$ ion more rapidly after 30 minutes than DAN in the absence of $Cu^{+2}$ ion. L-Lysine was found to be a competitive inhibitor and its $K_i$ value was determined to be 0.12 mmole by Dixon plot.

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Pepstatin- Insensitive Carboxyl Proteinase: A Biochemical Marker for Late Lysosomes in Amoeba proteus

  • Hae Kyung Kwon;HyeonJung Kim;Tae In Ahn
    • Animal cells and systems
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    • v.3 no.2
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    • pp.221-228
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    • 1999
  • In order to find a biochemical marker for late Iysosomes, we characterized two cDNAs which were cloned by using a monoclonal antibody (mAb) against Iysosomes in Amoeba proteus as a probe. The two cDNAs, a 1.3-kb cDNA in pBSK-Iys45 and a 1.6-kb cDNA in pBSK-Iys60, were found to encode proteins homologous to pepstatin-insensitive carboxyl proteinases (PICPs). E. coli transformed with pBSK-Iys45 produced two immunopositive polypeptides (45 and 43 kDa) and the cDNA in 1274 bases encoded a 44,733-Da protein (Lys45) of 420 amino acids containing one site for a core oligosaccharide. On the other hand, E. coli transformed with pBSK-Iys60 produced several polypeptides (64, 54, 45, 41, and 37 kDa) reacting with the mAb. The cDNA contained 1629 bases and encoded a 59,231-Da protein (Lys60) of 530 amino acids containing two sites for asparagine-linked core oligosaccharides. These two cDNAs showed identities of 60.3% in nucleotide sequences and 23.6% in amino acid sequences. Lys45 and Lys60 appeared to share XXEFQK as a common antigenic domain. The amino acid sequence of the Lys45 protein showed 17.4% identity and 40.9% similarity to that of PICP from Pseudomonas sp. 101. On the other hand, Lys60 showed a 24.3% identity and 51.9% similarity with human Iysosomal PICP in the amino acid sequence. A putative active center for serine protease, GTS*xxxxxFxG, was found to be conserved among PICP homologues. The two PICPs are the first reported enzymatic markers for late Iysosomes.

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Overexpression of jasmonic acid carboxyl methyltransferase increases tuber yield and size in transgenic potato

  • Sohn, Hwang-Bae;Lee, Han-Yong;Seo, Ju-Seok;Jung, Choon-Kyun;Jeon, Jae-Heung;Kim, Jeong-Han;Lee, Yin-Won;Lee, Jong-Seob;Cheong, Jong-Joo;Choi, Yang-Do
    • Plant Biotechnology Reports
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    • v.5 no.1
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    • pp.27-34
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    • 2011
  • Jasmonates control diverse plant developmental processes, such as seed germination, flower, fruit and seed development, senescence and tuberization in potato. To understand the role of methyl jasmonate (MeJA) in potato tuberization, the Arabidopsis JMT gene encoding jasmonic acid carboxyl methyltransferase was constitutively overexpressed in transgenic potato plants. Increases in tuber yield and size as well as in vitro tuberization frequency were observed in transgenic plants. These were correlated with JMT mRNA level-- the higher expression level, the higher the tuber yield and size. The levels of jasmonic acid (JA), MeJA and tuberonic acid (TA) were also higher than those in control plants. Transgenic plants also exhibited higher expression of jasmonate-responsive genes such as those for allene oxide cyclase (AOC) and proteinase inhibitor II (PINII). These results indicate that JMT overexpression induces jasmonate biosynthesis genes and thus JA and TA pools in transgenic potatoes. This results in enhanced tuber yield and size in transgenic potato plants.

Development of a thrombolytic agent from Korean snake venums (한국 독사독으로부터 혈전 용해제 개발에 관한 연구)

  • Lee, Moon-Han;Kim, Byung-Jae;Lee, Hang;Ryu, Pan-Dong;Cho, Myung-Haeng;Lee, Hye-Sook;Kim, Jong-Ho;Chae, Chang-Soo
    • Proceedings of the Korean Society of Applied Pharmacology
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    • 1995.04a
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    • pp.114-114
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    • 1995
  • 이 연구에서는 혈전증 치료에 사용되는 혈전 응해제를 국내 독사독으로부터 개발하기 위한 실험을 실시하였다. 그 내용을 요약하면 다음과 같다. 국내에 서식하는 독사인 Agkistrodon blomoffi brevicaudus, Agkistrodon caliginosus와 Agkistrodon saxatilis에서 각각 사독을 채취하여 fibrin plate 방법으로 fibrin 분해능을 조사하여 Agkistrodon blomoffi brevicaudus의 독이 분해능이 가장 우수함을 밝혔다. 이와 같은 사실에 기초하여 A. blomoffi brevicaudus의 독으로부터 p-Aminobenzamidine affinity chromatography와 DEAE ion-exchange chromatography를 이용하여 분자량이 50.8 kDa인 황성 단백질을 정제하였다. 위에서와 같은 방법으로 정제한 단백질은 fibrin 분해능이 우수하고 fibrinogen의 ${\gamma}$ chain은 분해하지 않으나 B$\beta$ chain을 $A\alpha$ chain에 비하여 보다 선택적으로 분해하는 단백분해 효소임을 증명하였다. 이 정제 효소의 Fibrin에 대한 분해능은 266$\mu\textrm{g}$/${\mu}\ell$의 농도에서 Plasmin 1.0 unit (=3.0 WHO unit)보다 높게 나타났다. 정제된 효소는 chromogenic substrate인 N-Benzoyl-Phe-Val-Arg-pNA와 N-p-Tosyl- Gly-Pro-Arg-pNA의 arginine carboxyl side를 분해하고 pH 7.5에서 최대 활성을 보이며, Vmax는 5.46 umo1/1ㆍmin이고, Km 값은 0.20mM이며, 그리고 Cu$^{2+}$, $Zn^{2+}$, soybean trypsin inhibtor에 의해 25~50% 정도, serine proteinase inhibitor인 phenylmethylsulfonyl floride에 의해 80%정도 활성이 억제되는 특성이 있음을 규명하였다.

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Inhibitory Substance on the Snake Venoms Produced by Penicillium sp. (사독의 조해물질에 관한 연구)

  • Seu, Jung-Hwn;Yi, Dong-Heui
    • Microbiology and Biotechnology Letters
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    • v.7 no.2
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    • pp.75-89
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    • 1979
  • One strain of Penicillium sp. (175-66-B), isolated from soil, was able to produce a substance that has a strong inibition activity against the Agkistrodon and Trimeresurus venoms. In this experiment, the chemical and biological properties of the sample were investigated. As an inhibitory substance, it was effective to the proteinase, hemorrhagic and lethal factors of Agkistrodon and Trimeresurus venoms, and also effective to several fractions of the proteinases and hemorrhagic factors of Agkistrodon halys blomhoffi venom. Moreover, in the addition of prednisotone, it was more effective for the cure of the mouse envenomated with the venom amount of two fold of MLD$_{100}$. This substance was very stable to the acid, alkali and heat. Its melting point was high enough to sublime at 222$^{\circ}C$ without any decomposition. This sample was easily dissolved only in hot water, but not in several organic solvents except for a little dissolution in elate. It did not have the chelating activity. It had very strong specificity to the snake venoms. but its activity was depressed by the addition of zinc or cupric salts. This sample had no acute toxicity to the mouse. Its chemical formula was $C_{16}$ $H_{12}$$N_2$ $O_{10}$ with the molecular weight of about 392. It has two epoxy groups and four carboxyl radicals, but amino, nitrite and nitrate radicals, unsaturated bonds and aromatic ring were not detected. Theuchemical configuration of this sample was suggested to be;

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