• 제목/요약/키워드: Active site residues

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Structural Basis of the Disease-related Proteins: Target Oriented Structural Proteomics

  • Jinho Moon;Heo, Yong-Suk;Kim, Young-Kwan;Kim, Hye-Yeon;Park, Min-Hye;Hwang, Kwang-Yeon
    • 한국결정학회:학술대회논문집
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    • 한국결정학회 2003년도 춘계학술연구발표회
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    • pp.15-15
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    • 2003
  • To discover new drugs more quickly and more efficiently, pharmaceutical companies and biotechnology firms are increasingly turning to the genomics and the structural proteomics technologies. Structural-proteomics can provide a foundation for this through the determination and analysis for protein structure on a genomics scale. Among many structures determined by CGI, we will present with the representative examples drawn from our work on novel structures or complex structures of the disease-related proteins. The alpha subunit of Hypoxia-inducible factor (HIF) is targeted for degradation under normoxic conditions by an ubiquitin-ligase complex that recognizes a hydroxylated proline residue in HIF. Hydroxylation is catalysed by HIF prolyl 4-hydroxylases (HIFPH) which are fe(II) and 2-oxoglutarate (2-OG) dependent oxygenases. Here, we discuss the first crystal structure of the catalytic domain of HIFPH in complexes, with the Fe(II)/2-OG at 1.8Å. These structures suggest that the Ll region (residues 236-253), which is also conserved in mammals, form a 'lid' that closes over the active site. The structural and mutagenesis analyses allow us to provide a focus for understanding cellular responses to hypoxia and a target for the therapeutic manipulation.

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Structural Basis of the Disease-related Proteins: Target Oriented Structural Proteomics

  • Hwang, Kwang-Yeon;Lee, Tae-Gyu;Kim, Jin-Hwan;Jeon, Young-Ho;Seonggu Ro;Cho, Joong-Myung
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 2003년도 정기총회 및 학술발표회
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    • pp.28-28
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    • 2003
  • To discover new drugs more quickly and more efficiently, pharmaceutical companies and biotechnology firms are increasingly turning to the genomics and the structural proteomics technologies. Structural-proteomics can provide a foundation for this through the determination and analysis for protein structure on a genomics scale. Among many structures determined by CGI, we will present with the representative examples drawn from our work on novel structures or complex structures of the disease-related proteins. The alpha subunit of Hypoxia-inducible factor (HIF) is targeted for degradation under normoxic conditions by an ubiquitin-ligase complex that recognizes a hydroxylated proline residue in HIF, Hydroxylation is catalysed by HIF prolyl 4-hydroxylases (HIFPH) which are Fe(II) and 2-oxoglutarate (2-OG) dependent oxygenases. Here, we discuss the first crystal structure of the catalytic domain of HIFPH in complexes, with the Fe(II)/2-OG at 1.8 ${\AA}$. These structures suggest that the L1 region (residues 236-253), which is also conserved in mammals, form a ‘lid’ that closes over the active site. The structural and mutagenesis analyses allow us to provide a focus for understanding cellular responses to hypoxia and a target for the therapeutic manipulation.

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Hologram and Receptor-Guided 3D QSAR Analysis of Anilinobipyridine JNK3 Inhibitors

  • Chung, Jae-Yoon;Cho, Art-E;Hah, Jung-Mi
    • Bulletin of the Korean Chemical Society
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    • 제30권11호
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    • pp.2739-2748
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    • 2009
  • Hologram and three dimensional quantitative structure activity relationship (3D QSAR) studies for a series of anilinobipyridine JNK3 inhibitors were performed using various alignment-based comparative molecular field analysis (COMFA) and comparative molecular similarity indices analysis (CoMSIA). The in vitro JNK3 inhibitory activity exhibited a strong correlation with steric and electrostatic factors of the molecules. Using four different types of alignments, the best model was selected based on the statistical significance of CoMFA ($q_2\;=\;0.728,\;r_2\;=\;0.865$), CoMSIA ($q_2\;=\;0.706,\;r_2\;=\;0.960$) and Hologram QSAR (HQSAR: $q_2\;=\;0.838,\;r_2\;=\;0.935$). The graphical analysis of produced CoMFA and CoMSIA contour maps in the active site indicated that steric and electrostatic interactions with key residues are crucial for potency and selectivity of JNK3 inhibitors. The HQSAR analysis showed a similar qualitative conclusion. We believe these findings could be utilized for further development of more potent and selective JNK3 inhibitors.

Identification of a Mature form and Characterization of Thermostability of a Serine-type Protease from Aquifex pyrophilus

  • Kim, Yun-Kyeong;Choi, In-Geol;Nam, Won-Woo;Yu, Yeon-Gyu
    • BMB Reports
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    • 제33권6호
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    • pp.493-498
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    • 2000
  • Aquifex pyrophilus, a hyperthermophilic bacterium, has a serine-type protease that is located at the cell wall fraction with a mature size of 43 kDa. Molecular cloning of the protease gene revealed that it has an ORF of 619 amino acids with homologous catalytic site of serine-type proteases [Choi, I.-G., Bang, W.-K., Kim, S.-H., Yu, G. Y., J. Biol. Chem. (1999), Vol. 274, pp. 881-888]. Constructs containing different regions of the protease gene, including a alanine-substituted mutant at the active site serine, were constructed, and the factors affecting the expression level of the cloned protease gene in E. coli were examined. The presence of the C-terminus hydrophobic region of the protease hindered over-expression in E. coli. Also, the proteolytic activity of the expressed protein appeared to toxic to E. coli. An inactive form that deleted both of the N-terminal signal sequence and the C-terminal polar residues was over-expressed in a soluble form, purified to homogeneity, and its thermostability examined. The purified protein showed three disulfide bonds and three free sulfhydryl group. The thermal denaturation temperature of the protein was measured around $90^{\circ}C$ using a differential scanning calorimeter and circular dichroism spectrometry. The disulfide bonds were hardly reduced in the presence of reducing agents, suggesting that these disulfide bonds were located inside of the protein surface.

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Aspergillus niger Glucose oxidase의 새로운 정제 방법 및 특성 (Novel Purification and Characterization of Glucose oxidase from Aspergillus niger)

  • 한상배;김광진
    • KSBB Journal
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    • 제9권1호
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    • pp.55-62
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    • 1994
  • Aspergillus niger 균체로부터 황산암모늄 분별침전, 이온교환 크로마토그래피, 한외여과, 소수성 크로마토그래피 과정을 거쳐 glucose oxidase( EC 1.1. 3.4)를 순수 정제하였다. 최종 정제과정인 소수성 크로마토그래퍼에 의해 소수성은 다르나 glucose oxidase의 활성을 갖는 A, B fraction이 얻어졌고, 그의 비활성도는 각각 2,191, 1,273units/mg이었다. A와 B는 분자량 78,000의 당단백질임이 확인되었으나, HPLC 겔 여과로 측정한 분자량, 최대 흡수 파장, 등전점 등에 차이를 보였다. 효소 A는 $\beta$-D-glucose를 특이적으로 산화하였고, 촉매 활성에 대한 최적 온도 는 $30^{\circ}C$, 최적 pH는 3.5이었으며, SDS에 대하여 비교적 강한 저항성을 나타내었고, 촉매 기능은 10mM $Hg^{2+}$에 의해 급격히 억제되었다. 화학 수식 실험 결과 cysteine/ cystine중의 SH기가 glucose oxidase의 활성에 관여하고 있음이 시사되었다.

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마이코박테리아의 adenylyl cyclase (Adenylyl Cyclases in Mycobacteria)

  • 전한승;고인정;오정일
    • 생명과학회지
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    • 제21권3호
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    • pp.473-479
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    • 2011
  • Adenylyl cyclase (AC)는 ATP로부터 cAMP를 형성하는 반응을 촉매한다. AC에 의해 생산된 cAMP는 다양한 신호전달 경로에서 이차전달자로 사용되고 많은 종에서 다양한 세포기능을 조절한다. AC는 1차구조에 따라 6개의 그룹으로 나눌 수 있다. 진핵생물과 Mycobacterium 속에 속하는 세균에서는 class III에 속하는 AC만이 발견된다. Class III에 속하는 AC의 경우 catalytic cyclase 도메인이 dimer를 형성해야만 활성부위가 형성되고 활성을 가지게 된다. 포유류의 AC는 하나의 polypeptide에 2개의 catalytic cyclase 도메인을 가지고 있고, 이 두 개의 도메인이 intramolecular dimerization을 통해서 활성부위를 형성한다. 반면에 mycobacteria의 AC는 polypeptide에 한 개의 catalytic cyclase 도메인을 가지고 있고, homodimer의 4차구조를 형성하여 활성을 가지게 된다. Class III AC의 활성을 위해서 필요한 6개의 아미노산 잔기가 활성부위에 잘 보존되어 있다. 이 6개의 아미노산 잔기는 $Mg^{2+}$과 결합을 하는 2개의 aspartate 잔기쌍, 기질특이성을 부여하는 lysine-aspartate 잔기쌍, 그리고 반응 전이상태를 안정화시키는 arginine-asparagine 잔기쌍들로 이루어져 있다. Mycobacterium tuberculosis H37Rv에서는 16개의 AC 유전자가 발견되었으며, 이 AC의 연구된 특성에 대해 본 총설에서 다룰 것이다.

NMR Studies on the Structure of Human Annexin I

  • Han, Hee-Yong;Bang, Keun-Su;Na, Doe-Sun;Lee, Bong-Jin
    • 한국응용약물학회:학술대회논문집
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    • 한국응용약물학회 1996년도 춘계학술대회
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    • pp.182-182
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    • 1996
  • Annexin I is a member of the annexin family of calcium dependent phospholipid binding proteins and has anti-inflammatory activity by inhibiting phospholipase A$_2$ (PLA$_2$). Recent X-ray crystallographic study of annexin I identified six Ca$\^$2+/ binding bites, which was different types (type II, III) from the well-known EF-hand motif (type I). In this work, the structure of annexin I was studied at atomic level by using $^1$H, $\^$15/N and $\^$l3/C NMR(nuclear magnetic resonance) spectroscopy, and the effect of Ca$\^$2+/ binding on the structure of annexin I was studied, and compared with that of Mg$\^$2+/ binding, When Ca$\^$2+/ was added to annexin I, NMR peak change was occured in high- and low-field regions of $^1$H-NMR spectra. NMR peak change by Ca$\^$2+/ binding was different from that by Mg$\^$2+/ binding. Because annexin I is a larger protein with 35 kDa molecular weight, site-specific (amide-$\^$15/N, carbonyl-$\^$l3/C) labeling technique was also used. We were able to detect methionine, tyrosine and phenylalanine peaks respectively in $\^$13/C-NMR spectra, and each residue was able to be assigned by the method of doubly labeling annexin I with [$\^$13/C] carbonyl-amino acid and [$\^$15/N] amide-amino acid. In $\^$l3/C-NMR spectra of [$\^$13/C] carbonyl-Met labeled annexin I, we observed that methionine residues spatially located near Ca$\^$2+/ binding Sites Were Significantly effected by Ca$\^$2+/ binding. From UV spectroscopic data on the effect of Ca$\^$2+/ binding, we knew that Ca$\^$2+/ binding sites of annexin I have cooperativity in Ca$\^$2+/ binding. The interaction of annexin I with PLA$_2$ also could be detected by using heteronuclear NMR spctroscopy. Consequently, we expect that the anti-inflammatory action mechanism of annexin I may be a specific protein-protein interaction. The residues involved in the interaction with PLA$_2$ can be identified as active site by assigning NMR peaks effected by PLA$_2$ binding.

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Molecular and Biochemical Characteristics of ${\beta}$-Propeller Phytase from Marine Pseudomonas sp. BS10-3 and Its Potential Application for Animal Feed Additives

  • Nam, Seung-Jeung;Kim, Young-Ok;Ko, Tea-Kyung;Kang, Jin-Ku;Chun, Kwang-Hoon;Auh, Joong-Hyuck;Lee, Chul-Soon;Lee, In-Kyu;Park, Sunghoon;Oh, Byung-Chul
    • Journal of Microbiology and Biotechnology
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    • 제24권10호
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    • pp.1413-1420
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    • 2014
  • Phytate is an antinutritional factor that impacts the bioavailability of essential minerals such as $Ca^{2+}$, $Mg^{2+}$, $Mn^{2+}$, $Zn^{2+}$, and $Fe^{2+}$ by forming insoluble mineral-phytate salts. These insoluble mineral-phytate salts are hydrolyzed rarely by monogastric animals, because they lack the hydrolyzing phytases and thus excrete the majority of them. The ${\beta}$-propeller phytases (BPPs) hydrolyze these insoluble mineral-phytate salts efficiently. In this study, we cloned a novel BPP gene from a marine Pseudomonas sp. This Pseudomonas BPP gene (PsBPP) had low sequence identity with other known phytases and contained an extra internal repeat domain (residues 24-279) and a typical BPP domain (residues 280-634) at the C-terminus. Structure-based sequence alignment suggested that the N-terminal repeat domain did not possess the active-site residues, whereas the C-terminal BPP domain contained multiple calcium-binding sites, which provide a favorable electrostatic environment for substrate binding and catalytic activity. Thus, we overexpressed the BPP domain from Pseudomonas sp. to potentially hydrolyze insoluble mineral-phytate salts. Purified recombinant PsBPP required $Ca^{2+}$ or $Fe^{2+}$ for phytase activity, indicating that PsBPP hydrolyzes insoluble $Fe^{2+}$-phytate or $Ca^{2+}$-phytate salts. The optimal temperature and pH for the hydrolysis of $Ca^{2+}$-phytate by PsBPP were $50^{\circ}C$ and 6.0, respectively. Biochemical and kinetic studies clearly showed that PsBPP efficiently hydrolyzed $Ca^{2+}$-phytate salts and yielded myo-inositol 2,4,6-trisphosphate and three phosphate groups as final products. Finally, we showed that PsBPP was highly effective for hydrolyzing rice bran with high phytate content. Taken together, our results suggest that PsBPP has great potential in the animal feed industry for reducing phytates.

피부 미백제의 타겟 단백질인 인간 티로시나제의 3차원 구조 상동 모델링 (Comparative Modeling of Human Tyrosinase - an Important Target for Developing Skin Whitening Agents)

  • 최종근;서주원
    • 한국산학기술학회논문지
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    • 제13권11호
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    • pp.5350-5355
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    • 2012
  • 사람의 티로시나제는 사람의 피부색을 결정하는 멜라닌 생합성의 첫 번째 반응을 촉매하며, 이 단계는 반응 속도를 결정하는 가장 중요한 단계이다. 따라서, 많은 화장품 회사들은 hTyr의 저해제를 찾고자 하였으나 사람 티로시나제의 3차원구조의 부재로 구조기반의 가상탐색은 불가능하다. 따라서 본 연구에서는 구조기반의 저해제 탐색을 위하여 기존에 그 구조가 알려진 Bacillus megaterium의 티로시나제의 3차 구조를 이용하여 인간 티로시나제의 3차원 구조를 상동모델링법으로 예측하였다. 3차원 구조 분석 결과 인간 티로시나제의 활성부위에 위치한 여섯 개의 히스티딘 잔기가 2개의 구리원자와 결합할 수 있으며, 이 활성부위는 단백질의 안쪽에 위치함을 알 수 있었다. 기질 또는 저해제가 결합할 수 있는 결합부위는 단백질의 표면에서 안쪽 깊은 곳의 활성부위와 연결되어 있으며 입구 쪽은 넓고 납작했으며 활성부위로 갈수록 좁아지는 깔대기와 같은 모양의 구조를 하고 있었다. 자체 제작 소프트웨어를 활용하여 solvent accessible surface를 만들고 여기에 가장 최적의 위치 및 형태를 갖는 모델을 티로신과 저해제로 가장 잘 알려진 코직산의 결합모델을 제안하였다. 이 결과 티로신과 코직산의 페놀그룹의 히드록시 기능단의 산소가 정확히 구리와 배위결합하는 것을 알 수 있었다. 결론적으로 본 연구 결과는 새로운 미백제를 설계하고 스크리닝하는데 유용한 정보를 제공할 수 있을 것으로 사료된다.

울금의 주요 성분인 커큐민과 나노 마이셀링 기법 적용 염화 커큐민의 트랜스타이레틴 활성 부위에 대한 결합 친화도 비교분석 (Molecular Docking Affinity Comparison of Curcumin and Nano-micelled Curcumin with Natural Sea Salt on Transthyretin)

  • 김동찬;송표
    • 생명과학회지
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    • 제26권2호
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    • pp.253-258
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    • 2016
  • 본 연구에서는 울금의 주요 성분인 커큐민과 나노 마이셀링 기법을 적용한 신규 조성물인 염화 커큐민(NMC)의 트랜스타이레틴(TTR) 단백질 활성 부위에 대한 in silico 분자 결합 친화도를 비교 분석하였다. 우선 NMC신규 조성물의 결정학적 구조를 광학 및 전자현미경을 활용하여 관찰하였을 때, 나노 마이셀링 적용 NMC 결정은 일반 천일염에 비하여 색상 및 질감이 전체적으로 균일화 되었고, 천일염과 NMC성분이 강하게 일체화되어 기간이 상당히 경과 되더라도 쉽게 분리가 되지 않는 고기능성 안전성 구조물이 형성되었다. TTR단백질의 3차원 구조 활성 부위에 대한 in silico 분자 결합 친화도는 NMC가 일반 커큐민에 비하여 상대적으로 높은 결합 친화도를 나타나었고, pharmacophore 모델링 분석에서도 NMC가 일반 커큐민에 비하여 TTR 활성 부위에서 현저하게 pharmacophore 각도의 차이가 나타났었으며 패턴 또한 밀집된 특징을 나타내었다. 결론적으로, 나노 마이셀링 적용 NMC가 일반 커큐민에 비하여 상대적으로 우수하게 TTR 단백질의 활성 부위에 결합하는 것을 확인하였고, 이는 TTR 활성에 의해 유도되는 질병 조절 물질로의 적용 가능성이 있다고 판단된다. 결론적으로 일반 커큐민과 같은 생리 활성 효능 성분에 나노 마이셀링 기법을 적용하므로서 효율적인 결합 타깃 단백질 활발 조절 및 이러한 성분을 활용한 기능성 식품 산업에 나노 마이셀링 기법을 효율적으로 적용할 수 있음을 확인하였다.