• 제목/요약/키워드: affinity binding

검색결과 793건 처리시간 0.036초

Mouse뇌에서 Opioid 수용체 결합력에 미치는 인삼의 영향 (Effect of Total Ginseng Saponin on the Opioid Receptor Binding in Mouse Brain)

  • Kim, Soo-Kyung;Lee, Seong-Ryong;Park, Chang-Gyo
    • Journal of Ginseng Research
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    • 제19권3호
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    • pp.219-224
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    • 1995
  • The modulatory effects of total ginseng saponin (TGS) on the 1, 6, and opioid receptor binding in morphine tolerance and dependence were examined in this study. The specific [$^{3}H$]DAGO ([D-$Ala^2$, N-$Mephe^4$, $Glyco^4$] enkephalin) binding was significantly increased in chronic morphine (10 mg/kg, i.p.) treated mouse striatum. The specific [$^{3}H$]DPDPE ([D-$Pen^2$, D-$Pen^5$] enkephalin) binding was ignificantly increased following morphine treatment in the mouse striatum and cortex. Also, an apparent decrease in the affinity of [$^{3}H$]DPN (diprenorphine) was observed after chronic morphine treatment in mouse striatum and cortex. 7GS produced a sleight increase of specific [$^{3}H$]DAGO, [$^{3}H$]DPDPE binding and a significant increase of specific [$^{3}H$]DPN binding in the mouse brain striatum. In cortex, TGS produced an inhibition of specific [$^{3}H$]DAGO and [$^{3}H$]DPDPE binding and increase of the specific [$^{3}H$]DPN binding. The prolonged administration of TGS (25, 50, 100, and 150 mg/kg, i.p., 3 wks) produced an inhibition of increased [$^{3}H$]DAGO specific binding following morphine without significant changes in the agonist binding to and receptors in mouse striatum and cortex. These contracted alterations in $\mu$, $\gamma$ and $\kappa$ opiate receptor binding were dependent in TGS dogs and brain sites.

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흰쥐의 뇌의$A_1$ 아데노신 수용체에 작용하는 역효현제에 관한 연구 (Inverse Agonists at $A_1$ Adenosine Receptors in Rat Cerebral Cortex)

  • 박경선;양완숙;김경환
    • 대한약리학회지
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    • 제32권1호
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    • pp.23-29
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    • 1996
  • 전통적인 수용체 이론에 따르면 상경적 길항제는 효현제와 수용체의 같은 부위에 작용하지만, 효능(efficacy)이 없기 때문에 생물학적 반응을 일으키지는 않는다. 그러나 최근에 발표되는 자료들에 따르면 모든 길항체의 효능(efficacy)이 0가 아니라 음수도 될 수가 있다고 생각된다. 이러한 음수의 효능을 갖는 약물을 역효현제라 부른다. 본 연구에서는 쥐의 cerebral cortex에서 얻은 membranes을 사용하여, $A_1$ 아데노신 수용체에 작용하는 역효현제를 인구하였다. 8개의 길항제로 알려진 약물들이 G단백에 대한 $[^{35}S]GTP_{\gamma}S$ 결합을 감소시키는 정도를 측정함으로써 역효현제의 특성을 검색하였다. 효현제에 의한 $[^{35}S]GTP_{\gamma}S$ 결합의 증가는 이틀 길항제틀에 의해 완전히 억제되었지만, 검색한 8개의 길항제는 두 군으로 구분되었다. DPCPX를 포함한 7개 길항제는 효현제 부재시의 basal $[^{35}S]GTP_{\gamma}S$ binding을 통계적으로 의의있게 감소시켜 역효현제의 특성을 나타내는 반면, CCS-15943은 basal $[^{35}S]GTP_{\gamma}S$ binding에 아무런 영향을 주지 않았다. NEM을 membranes에 처치하면 PIA에 의한 $[^{35}S]GTP_{\gamma}S$ binding이나 basal binding 둘다 감소하는데 이는 $[^{35}S]GTP_{\gamma}S$ binding의 상당부분이 G단백의 activated state를 나타내는 것을 알 수 있다. 또한 $[^3H]DPCPX$를 이용한 competitive binding assay에서 0.1 mM GTP는 효현제인 PIA의 apparent affinity를 감소시켰으며, DPCPX의 apparent affinity는 증가시키고, CGS-15943에는 아무런 영향을 미치지 않았다. 이것은 상기의 $[^{35}S]GTP_{\gamma}S$ binding의 결과를 뒤받침해 주는 결과라고 생각된다.

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Casein 가수분해물 소재 철분결합 Peptide에 관한 연구 (A Study on Iron Binding Peptides from Casein Hydrolysates)

  • 최인욱;김기성;임상동;김희수
    • 한국식품과학회지
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    • 제29권5호
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    • pp.1052-1056
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    • 1997
  • 우유 casein단백질을 trypsin, alcalase, neutrase, protamax, S. aureus type V8 등의 단백질분해효소를 이용하여 가수분해시키고 생성된 peptide의 철분가용화능을 측정하였을 때, trypsin과 alcalase에 의해 생성된 peptide들이 pH 6의 조건에서 각각 6.42와 $2.37\;{\mu}g/mL$를 가용화시키는 능력을 보였으며 그외의 protease들은 $1\;{\mu}g/mL$내외의 철분가용화능을 보였다. Trypsin과 alcalase에 의해 생성된 peptide를 역상 column으로 10개의 분획으로 나누어서 각각의 분획의 pH6에서의 철분가용화능을 측정한 결과, trypsin의 경우 분획 5에서 가장 높은 철분가용화능$(2.33\;{\mu}g/mL)$이 발견되었으며 alcalase의 경우에는 분획 7이 가장 높은 철분가용화능$(1.56\;{\mu}g/mL)$을 보였다. 이들 철분과 결합력이 있는 peptide를 분리하기 위하여 IMAC의 방법을 이용하여 철분을 chelating sepharose fast flow column에 고정화 시키고 이들 철분에 흡착하는 peptide의 분리를 시도한 결과, trypsin이나 alcalase에 의해 생성된 peptide중 철분을 가용화시키는 능력이 높은 peptide들이 IMAC에 의해 효과적으로 분리되었다.

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Effect of Three Amino Acid Residues at the Carboxyl Terminus in Unacetylated ${\alpha}$-Tropomyosin on Actin Affinity

  • Cho, Young-Joon;Jung, Sun-Ju;Seo, Sang-Min;Suh, Kye-Hong;Yang, Jae-Sub
    • Journal of Life Science
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    • 제11권1호
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    • pp.1-6
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    • 2001
  • In order to determine the role of the carboxyl terminal amino acid residues of unacetylated ${\alpha}$-tropomyosin in actin affinity two mutant tropomyosins were constructed by site-directed mutagenesis. TM16 was identical to the striated tropomyosin except that three amino acids in the carboxyl terminal end were altered to $^{282}TNM^{284}$ while in TM17 $^{282}TSI^{284}$ of the striated was replaced with$^{282}NSM^{284}$. TM16 and TM17 were overproduced in Escherichia coli and analyzed for actin affinity by comparing actin affinities of the striated and TM11 $^{282}NNM^{284}$). The apparent binding constants (Kapp) of unacetylated tropomyosins to actin were $5.1{\times}10^4M^{-1}$ for the striated, $1.1{\times}10^5M^{-1}$ for TM11, $1.09{\times}10^5M^{-1}$ for TM16, and $1.03{\times}10^5M^{-1}$ for TM17, respectively. Since the actin affinities of TM11, TM16, and TM17 were very similar, this result suggested that amino acid residues 282 and 283 were insignificant for acting affinity of unacetylated $\alpha$-tropomyosin. However, they all exhibited higher actin affinities than that of the striated, suggesting that Met residue at the carboxyl terminus of unacetylated smooth tropomyosin was rather important for actin affinity, presumably due to the nucleophilic nature of sulfur atom in Met residue.

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평활근 α-트로포마이오신 Gln276잔기의 액틴친화력에 대한 중요성 (Glutamine Residue at 276 of smooth muscle α-tropomyosin is primarily responsible for higher actin affinity)

  • 정선주;조영준
    • 생명과학회지
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    • 제17권2호통권82호
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    • pp.204-210
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    • 2007
  • 평활근 ${\alpha}$-트로포마이오신의 높은 액틴 친화력은 아미노산 잔기 Gln276 및 Thr277에 기인한다는 이전 보고에 따라, 2 잔기 중 어느 잔기가 액틴 친화력에 더 중요한 가를 알아보기 위하여 골격근 트로포마이오신의 His 혹은 Ala 단일 잔기를 각각 Gln 혹은 Thr으로 치환한 돌연변이 트로포마이오신을 제작하여 대장균에서 대량발현 시킨 후 정제하여 액틴 결합력을 측정하였다. 비록 비아세틸화된 트로포마이오신의 경우 Gln 및 Thr 잔기가 최고 액틴친화력을 위해 모두 필요하나, 돌연변이 트로포마이신 중 Gln 잔기를 가진 돌연변이 트로포마이오신들이 다른 돌연변이 트로포마이오신들에 비하여 3에서 4배 높은 액틴친화력을 보였다. 이러한 결과는 평활근 ${\alpha}$-트로포마이오신의 높은 액틴 친화력은 Thr277 잔기보다 Gln276 잔기에 주로 기인한다는 것을 의미한다.

Characterization of αX I-Domain Binding to Receptors for Advanced Glycation End Products (RAGE)

  • Buyannemekh, Dolgorsuren;Nham, Sang-Uk
    • Molecules and Cells
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    • 제40권5호
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    • pp.355-362
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    • 2017
  • The ${\beta}2$ integrins are cell surface transmembrane proteins regulating leukocyte functions, such as adhesion and migration. Two members of ${\beta}2$ integrin, ${\alpha}M{\beta}2$ and ${\alpha}X{\beta}2$, share the leukocyte distribution profile and integrin ${\alpha}X{\beta}2$ is involved in antigen presentation in dendritic cells and transendothelial migration of monocytes and macrophages to atherosclerotic lesions. ${\underline{R}}eceptor$ for ${\underline{a}}dvanced$ ${\underline{g}}lycation$ ${\underline{e}}nd$ ${\underline{p}}roducts$ (RAGE), a member of cell adhesion molecules, plays an important role in chronic inflammation and atherosclerosis. Although RAGE and ${\alpha}X{\beta}2$ play an important role in inflammatory response and the pathogenesis of atherosclerosis, the nature of their interaction and structure involved in the binding remain poorly defined. In this study, using I-domain as a ligand binding motif of ${\alpha}X{\beta}2$, we characterize the binding nature and the interacting moieties of ${\alpha}X$ I-domain and RAGE. Their binding requires divalent cations ($Mg^{2+}$ and $Mn^{2+}$) and shows an affinity on the sub-micro molar level: the dissociation constant of ${\alpha}X$ I-domains binding to RAGE being $0.49{\mu}M$. Furthermore, the ${\alpha}X$ I-domains recognize the V-domain, but not the C1 and C2-domains of RAGE. The acidic amino acid substitutions on the ligand binding site of ${\alpha}X$ I-domain significantly reduce the I-domain binding activity to soluble RAGE and the alanine substitutions of basic amino acids on the flat surface of the V-domain prevent the V-domain binding to ${\alpha}X$ I-domain. In conclusion, the main mechanism of ${\alpha}X$ I-domain binding to RAGE is a charge interaction, in which the acidic moieties of ${\alpha}X$ I-domains, including E244, and D249, recognize the basic residues on the RAGE V-domain encompassing K39, K43, K44, R104, and K107.

Solution Nuclear Magnetic Resonance Spectral Characterization of Iron(II) Porphyrin Complexes of Weakly Coordinating Anions

  • Song, Byung-Ho;Park, Bong-Jin;Han, Chul-Hee
    • Bulletin of the Korean Chemical Society
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    • 제23권1호
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    • pp.119-122
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    • 2002
  • Weakly coordinating anions show little affinity for binding to unfunctionalized iron(II) porphyrins. The electron-deficient 5, 10, 15, 20-tetrakis(pentafluorophenyl)porphinatoiron(II) compound is utilized in this study to demonstrate solution coordination by chloride, bromide and acetate ions. The binding strength of anions to the iron(II) porphyrin is reflected by a systematic change in pyrrole proton chemical shift in $^1H$ NMR spectra; the pyrrole resonance moves downfield when the ${\sigma}$-donor ability of anions is decreased.

Synthesis and Binding Affinity of Homologated Adenosine Analogues as A3 Adenosine Receptor Ligands

  • Lee, Hyuk-Woo;Choi, Won-Jun;Jacobson, Kenneth A.;Jeong, Lak-Shin
    • Bulletin of the Korean Chemical Society
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    • 제32권5호
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    • pp.1620-1624
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    • 2011
  • Homologated analogues 3a and 3b of potent and selective A3 adenosine receptor ligands, IB-MECA and dimethyl-IB-MECA were synthesized from commercially available 1-O-acetyl-2,3,5-tri-O-benzoyl-${\beta}$-D-ribofuranose (4) via $Co_2(CO)_8$-catalyzed siloxymethylation as a key step. Unfortunately, homologated analogues 3a and 3b did not show significant binding affinities at three subtypes of adenosine receptors, indicating that free rotation, resulting from homologation, induced unfavorable interactions in the binding site of the receptor maybe due to the presence of many conformations.

Nucleotide Binding Component of the Respiratory Burst Oxidase of Human Neutrophils

  • Park, Jeen-Woo;Ahn, Soo-Mi
    • BMB Reports
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    • 제28권3호
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    • pp.275-280
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    • 1995
  • The respiratory burst oxidase of neutrophils is a multicomponent enzyme, domant in resting cells, that catalyzes the reduction of oxygen to $O_{2}^{-}$ at the expense of NADPH. In the resting neutrophil, some of the components of the oxidase, including proteins p47 and p67, are in the cytosol, while the rest are in the plasma membrane. Recent evidence has suggested that at least some of the cytosolic oxidase components exist as a complex. The cytosolic complex with a molecular weight of ~240 kDa was found to bind to blue-agarose and 2',5'-ADP-agarose, which recognize nucleotide requiring enzymes. In order to identify the nucleotide binding component of the cytosolic complex we purified recombinant p47 and p67 fusion proteins using the pGEX system. Pure recombinant p47 was retained completely on 2',5'-ADP-agarose, whereas pure recombinant p67 did not bind to these affinity beads. On the basis of these results, we infer that p47 may contain the nucleotide binding site.

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대장균 리보스 결합단백질의 신호배열 변이에 대한 숙성체 부위의 회복돌연변이 (Intragenic Suppressors for Expory-defective Signal Sequence Mutation of Ribose-binding Protein in Escherichia coli)

  • 이영희;송택선;김정호;박순희;박찬규
    • 미생물학회지
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    • 제29권5호
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    • pp.270-277
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    • 1991
  • A mutational alteration in the signal sequence of ribose-binding protein (RBP) of Escherichia coli, rbsB103, completely blocks the export of the protein to the periplasm. Intragenic suppressors for this mutation have been selected on minimal medium with ribose as a sole carbon source. Six suppressor mutations were characterized in detail and were found to have single amino acid wubstitution in the mature portion of RBP, which resulted in the mobility shift of the proteins on SDS polyacrylamide gel. Amino acid changes of these suppressors were localized in several peptides which are packed to form the N terminal domain of typical bilobate conformation of RBP. The involvement of SecB, a molecular chaperone, was investigated in the suppression of signal sequence mutation. Translocation efficency was found to be increased by the presence of SecB for all suppressors. It is likely that the folding characteristics of RBP altered by the suppressor mutations affect the affinity of interaction between SecB and RBP.

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