• 제목/요약/키워드: ${\alpha}$-Helical

검색결과 110건 처리시간 0.031초

5령 누에에 있어서 Fibroin 생합성의 특성 (Characterization of Fibroin Biosynthesis in the 5th Instar of Bombyx mori)

  • 이인전;여주홍
    • 한국잠사곤충학회지
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    • 제38권2호
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    • pp.180-185
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    • 1996
  • 가잠 실크 피브로인의 아미노산 조성 중 가장 많은 비율을 차지하고 있는 Glycine에 동위체 라벨링([1-13C]-Gly)을 실시하여 5령 1일째부터 고치를 지을 때까지의 생합성의 상태를 NMR법을 이용하여 추적하였다. 그 결과 5령 5일을 기준으로 가잠 실크의 결정부분을 형성하는 아미노산이 형성은 되나 실크의 결정부분을 형성하는 아미노산이 형성은 되나 실크가 되었을 때 결정성의 고배향 구조를 이루지 못하고 결정성의 저배향 구조를 형성하고마는 형태로 된다고 생각되어 졌다. 이 사실은 배향시료의 고체CP-NMR 스펙트럼의 피크 분리로부터 확인할 수 있었다. 그 결과 수소결합에 관여하는 N-H의 방향이 거의 수직이라고 할 수 있는 83˚의 분자축 부분이 18˚의 고배향 분포를 이루면서 82% 존재하고, 또 나는 N-H의 결합방향이 60˚인 분자축 부분이 18% 존재하면서 62˚의 배향분포를 이룬다고 하는 시뮤레이션의 결과로 설명되어졌다.

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Identification of Antimicrobial Peptide Hexamers against Oral Pathogens through Rapid Screening of a Synthetic Combinatorial Peptide Library

  • Song, Je-Seon;Cho, Kyung Joo;Kim, Joungmok;Kim, Jeong Hee
    • International Journal of Oral Biology
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    • 제39권4호
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    • pp.169-176
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    • 2014
  • A positional scanning synthetic peptide combinatorial library (PS-SCL) was screened in order to identify antimicrobial peptides against the cariogenic oral bacteria, Streptococcus mutans. Activity against Streptococcus gordonii and Aggregatibacter actinomycetemcomitans was also examined. The library was comprised of six sub-libraries with the format $O_{(1-6)}XXXXX-NH_2$, where O represents one of 19 amino acids (excluding cysteine) and X represents equimolar mixture of these. Each sub-library was tested for antimicrobial activity against S. mutans and evaluated for antimicrobial activity against S. gordonii and A. actinomycetemcomitans. The effect of peptides was observed using transmission electron microscopy (TEM). Two semi-mixture peptides, RXXXXN-$NH_2$ (pep-1) and WXXXXN-$NH_2$ (pep-2), and one positioned peptide, RRRWRN-$NH_2$ (pep-3), were identified. Pep-1 and pep-2 showed significant antimicrobial activity against Gram positive bacteria (S. mutans and S. gordonii), but not against Gram negative bacteria (A. actinomycetemcomitans). However, pep-3 showed very low antimicrobial activity against all three bacteria. Pep-3 did not form an amphiphilic ${\alpha}$-helix, which is a required structure for most antimicrobial peptides. Pep-1 and pep-2 were able to disrupt the membrane of S. mutans. Small libraries of biochemically-constrained peptides can be used to generate antimicrobial peptides against S. mutans and other oral microbes. Peptides derived from such libraries may be candidate antimicrobial agents for the treatment of oral microorganisms.

Investigation of the effect of Erythrosine B on a β-amyloid (1-40) peptide using molecular modeling method

  • Lee, Juho;Kwon, Inchan;Cho, Art E.;Jang, Seung Soon
    • EDISON SW 활용 경진대회 논문집
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    • 제4회(2015년)
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    • pp.14-23
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    • 2015
  • Alzheimer's disease is one of the most common types of degenerative dementia. As a considerable cause of Alzheimer's disease, neurotoxic plaques composed of 39 to 42 residue-long amyloid beta($A{\beta}$) fibrils have been found in the patient's brain in large quantity. A previous study found that erythrosine B (ER), a red color food dye approved by FDA, inhibits the formation of amyloid beta fibril structures. Here, in an attempt to elucidate the inhibition mechanism, we performed molecular dynamics simulations to demonstrate the conformational change of $A{\beta}40$ induced by 2 ERs in atomistic detail. During the simulation, the ERs bound to the surfaces of both N-terminus and C-terminus regions of $A{\beta}40$ rapidly. The observed stacking of the ERs and the aromatic side chains near the N-terminus region suggests a possible inhibition mechanism in which disturbing the inter-chain stacking of PHEs destabilizes beta-sheet enriched in amyloid beta fibrils. The bound ERs block water molecules and thereby help stabilizing alpha helical structure at the main chain of C-terminus and interrupt the formation of the salt-bridge ASP23-LYS28 at the same time. Our findings can help better understanding of the current and upcoming treatment studies for Alzheimer's disease by suggesting inhibition mechanism of ER on the conformational transition of $A{\beta}40$ at the molecular level.

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사슬이합체의 헬릭스-코일 구조에 미치는 온도와 변성시약의 영향 (The Effects of Temperature and Denaturant on the Helix-Coil Transition of Chain-Dimer)

  • 김영구;박형석
    • 대한화학회지
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    • 제40권6호
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    • pp.394-400
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    • 1996
  • 결합성 사슬이합체를 형성할 수 있는 올리고펩티드-$(HPPHPPP)_n$-(H: 소수성 아미노산, P: 친수성 아미노산)는 온도, 수소이온 농도, 이온세기, 변성시약 등에 의해 구조적인 변화가 가능하다. 본 연구에서는 변성시약과 온도에 의한 올리고펩티드의 전이 현상을 이론적으로 고찰하였다. 사슬이합체로는 올리고펩티드20R, 변성시약으로는 구아니듐-염산을 사용하였다(20R에는 사슬 내의 정전기적 반발력이 10개가 존재하고, 사슬사이의 정전기적 반발력이 10개가 존재한다). 변성 시약에 의한 올리고펩티드의 나선에서 코일로의 전이는 급격한 것으로 보아, 변성이 일어나는 전이상태에서 올리고펩티드들은 완전한 나선구조와 무질서한 코일구조로만 되어있다. 반면에 온도에 의한 전이는 변성시약에 의한 전이보다 완만하게 일어난다. 낮은 온도에서 긴 나선 구조를 가지는 올리고펩티드가 짧은 나선 구조를 가지는 것보다 다량으로 존재한다. 온도가 증가할수록 부분적으로 변성된 분자들의 몰분율이 증가하여, 전이가 일어나는 온도에서 부분적으로 변성된 올리고펩티드가 널리 분포되어 있다.

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A Helix-induced Oligomeric Transition of Gaegurin 4, an Antimicrobial Peptide Isolated from a Korean Frog

  • Eun, Su-Yong;Jang, Hae-Kyung;Han, Seong-Kyu;Ryu, Pan-Dong;Lee, Byeong-Jae;Han, Kyou-Hoon;Kim, Soon-Jong
    • Molecules and Cells
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    • 제21권2호
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    • pp.229-236
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    • 2006
  • Gaegurin 4 (GGN4), a novel peptide isolated from the skin of a Korean frog, Rana rugosa, has broad spectrum antimicrobial activity. A number of amphipathic peptides closely related to GGN4 undergo a coil to helix transition with concomitant oligomerization in lipid membranes or membrane-mimicking environments. Despite intensive study of their secondary structures, the oligomeric states of the peptides before and after the transition are not well understood. To clarify the structural basis of its antibiotic action, we used analytical ultracentrifugation to define the aggregation state of GGN4 in water, ethyl alcohol, and 1,1,1,3,3,3-hexafluoro-2-propanol (HFIP). The maximum size of GGN4 in 15% HFIP corresponded to a decamer, whereas it was monomeric in buffer. The oligomeric transition is accompanied by a cooperative 9 nm blue-shift of maximum fluorescence emission and a large secondary structure change from an almost random coil to an ${\alpha}$-helical structure. GGN4 induces pores in lipid membranes and, using electrophysiological methods, we estimated the diameter of the pores to be exceed $7.3{\AA}$, which suggests that the minimal oligomer structure responsible is a pentamer.

혈관 긴장도 조절에 미치는 Na-K Pump에 관한 연구 (The Role of Na-K Pump in the Modulation of Vascular Tone in the Rabbit)

  • 김기환;김전
    • The Korean Journal of Physiology
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    • 제16권1호
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    • pp.1-11
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    • 1982
  • Force development of smooth muscle cells is directly regulated by the concentration of free calcium ions in the sarcoplasm, and the sarcoplasmic concentration of calcium ion can be modulated by electrogenic Na-K pump. The role of Na-K pump on vascular tone was studied in isolated rabbit renal artery. Helical strips of arterial muscle were prepared from left renal arteries. All experiments were performed in $HCO_3^--buffered$ Tyrode solution which was aerated with $3%CO_2-97%\;O_2$ mixed gas and kept at $35^{\circ}C$. In some experiments, rabbit was injected intraperitoneally $18{\sim}24$ hours prior to the experiments, with a large dose(5 mg/kg body wt) of reserpine, in order to eliminate the catecholamines present in intrinsic adrenergic nerve terminate. Treatment used in this experiment that inhibits Na-K pump was the exposure of strips to K-free Tyrode solution. Contractile response to K free Tyrode solution developed slowly and the time required for maximum contracture was $20{\sim}30$ minutes. This K-free contracture was rapidly relaxed by the addition of potassium to the bathing solution. No K-free contracture occurred in a Ca-free Tyrode solution. But contraction developed rapidly when calcium ion was added to the bathing solution after 30 minute exposure of the strip to Ca-free Tyrode solution. This contracture was completely inhibited by Ca-antagonist, verapamil. The K-free contracture was abolished by ${\alpha}-adrenergic$ blocker, phentolamine, as well as by the catecholamine depletion from adrenergic nerve terminals. Even in reserpinized strip, the exogenous norepinephrine-induced contraction in K-free Tyrode solution was rapidly suppressed by the addition of potassium ion. The results of this experiment suggest that K free contracture develops by norepinephrine release from adrenergic nerve terminals, while the relaxation of K-free contracture is induced by the activation of electrogenic Na-K pump.

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Neuropeptide $\gamma$의 구조 및 생리활성 (Conformation and Biological Activity of the Neuropeptide $\gamma$)

  • 구희정;서정길;김은희;허민도;정준기;박장수;강신원;박남규
    • 한국수산과학회지
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    • 제30권2호
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    • pp.244-251
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    • 1997
  • 생리활성을 지닌 신경펩타이드의 구조와 활성간의 관계를 규명하기 위하여 고상법으로 합성한 세 종류의 neuropeptide $\gamma$(mammalian-, trout- 그리고 goldfish-neu-ropeptide $\gamma$)를 사용하여 연구하였다. Circular dichroism spectra에 의하면 mammalian-, trout-와 goldfish-neurope-ptide $\gamma$는 완충액 조건하에서 모두 random한 구조를 나타내었다. 중성 및 산성 지질 존재 하에서, mammalian과 trout-neuropeptide $\gamma$는 여전히 random한 구조를 취했다. 그러나, goldfish-neuropeptide $\gamma$는 중성 및 산성지질하에서 부분적으로 $\alpha-helix$ 구조를 나타내었다. 장관 수축활성 에 있어서는 carp 장관, guinea-pig 회장 그리고 rat 십이지장에 대하여 비교하였다. Carp에 대해서는 goldfish-neuropeptide $\gamma\;\simeq$ trout-neuropeptide $\gamma\;>$ mammalian- neuropeptide $\gamma$ 순으로 활성이 나타났다. 그러나, guinea-pig 회장과 rat 십이지장에 대해서 mammalian-neuropeptide $\gamma$는 어류 유래성 neuropeptide g들 보다 높은 수축활성을 나타내었다. 이러한 결과들은 neuropeptide $\gamma$들이 종-특이적인 활성을 나타낸다는 것을 제시한다.

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Analogues of Hybrid Antimicrobial Peptide, CAMA-P2, Designed with Improved Antimicrobial and Synergistic Activities

  • Jeong, Ki-Woong;Shin, So-Young;Kim, Jin-Kyoung;Kim, Yang-Mee
    • Bulletin of the Korean Chemical Society
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    • 제32권8호
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    • pp.2577-2583
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    • 2011
  • We have designed a 20-residue hybrid peptide CA(1-8)-MA(1-12) (CAMA) incorporating residues 1-8 of cecropin A (CA) and residues 1-12 of magainin 2 (MA) with high bacterial cell selectivity. CAMA-P2 is an ${\alpha}$-helical antimicrobial peptide designed from a CAMA hybrid peptide and substitution of Gly-Ile-Gly hinge sequence of CAMA to Pro influences the flexibility at central part of CAMA. Based on structure-activity relationships of CAMA peptides, to investigate the effects of the total positive charges on antimicrobial activity of CAMA-P2, the $Ser^{14}{\rightarrow}$Lys analogue (CAMA-syn1) was synthesized. The role of tryptophan at C-terminal ${\alpha}$-helix on its antimicrobial activity as well as synergistic activity was also investigated using $Ser^{14}{\rightarrow}$Lys/$Phe^{18}{\rightarrow}$Trp analogue (CAMA-syn2). Also, we designed CAMA-syn3 by substitution of $Lys^{16}$ located opposite side of substituted $Lys^{14}$ of CAMA-syn1 with Leu residue, resulting in increase of hydrophobicity and amphipathicity of the peptide. All of CAMA-syn analogues showed good antimicrobial activities similar to those of CAMA and CAMA-P2. The CAMA-syn1 and CAMA-syn2 showed low hemolytic activity and cytotoxicity against human keratinocyte Haca-T cells while CAMA-syn3 showed hemolytic activity and cytotoxicity at its MIC value. We then investigated their abilities to act synergistically in combination with the antimicrobial flavonoids and synthetic compounds screened in our laboratory. The results showed that all peptides exhibited synergistic effects with dihydrobinetin, while only CAMA-syn2 exhibited synergistic effects with YKAs3001 against both S. aureus and MRSA, suggesting that Trp residue at C-terminus of CAMA-syn2 may facilitate the polar antibiotic flavonoids and synthetic compounds to permeabilize the membrane. This study will be useful for the development of new antibiotic peptides with potent antimicrobial and synergistic activity but without cytotoxicity.

Development of Two-Step Temperature Process to Modulate the Physicochemical Properties of β-lactoglobulin Nanoparticles

  • Ha, Ho-Kyung;Nam, Gyeong-Won;Khang, Dongwoo;Park, Sung Jean;Lee, Mee-Ryung;Lee, Won-Jae
    • 한국축산식품학회지
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    • 제37권1호
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    • pp.123-133
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    • 2017
  • The development of a new manufacturing process, a two-step temperature treatment, to modulate the physicochemical properties of nanoparticles including the size is critical. This is because its physicochemical properties can be key factors affecting the cellular uptake and the bioavailability of bioactive compounds encapsulated in nanoparticles. The aims of this study were to produce (beta-lactoglobulin) ${\beta}-lg$ nanoparticles and to understand how two-step temperature treatment could affect the formation and physicochemical properties of ${\beta}-lg$ nanoparticles. The morphological and physicochemical properties of ${\beta}-lg$ nanoparticles were determined using atomic force microscopy and a particle size analyzer, respectively. Circular dichroism spectroscopy was used to investigate the secondary structure of ${\beta}-lg$. The surface hydrophobicity and free thiol groups of ${\beta}-lg$ were increased with a decrease in sub-ambient temperature and an increase in mild heat temperature. As sub-ambient temperature was decreased, a decrease in ${\alpha}-helical$ content and an increase in ${\beta}-sheet$ content were observed. The two-step temperature treatment firstly involved a sub-ambient temperature treatment from 5 to $20^{\circ}C$ for 30 min, followed secondly by a mild heat temperature treatment from 55 to $75^{\circ}C$ for 10 min. This resulted in the production of spherically-shaped particles with a size ranging from 61 to 214 nm. Two-way ANOVA exhibited the finding that both sub-ambient and mild heat temperature significantly (p<0.0001) affected the size of nanoparticles. Zeta-potential values of ${\beta}-lg$ nanoparticles were reduced with increasing mild heat temperature. In conclusion, two-step temperature treatment was shown to play an important role in the manufacturing process - both due to its inducement of the conformational changes of ${\beta}-lg$ during nanoparticle formation, and due to its modulation of the physicochemical properties of ${\beta}-lg$ nanoparticles.

개불 라이소자임 유래 항균성 모델 펩타이드(Uu-ilys-CF)의 재조합 단백질 생산 및 항균 활성 (Recombinant Production and Antimicrobial Activity of an Antimicrobial Model Peptide (Uu-ilys-CF) Derived from Spoon Worm Lysozyme, Uu-ilys)

  • 오혜영;고혜진;박남규
    • 생명과학회지
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    • 제31권1호
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    • pp.83-89
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    • 2021
  • 개불 라이소자임(Uu-ilys)은 개불(Urechis unicinctus)로부터 정제된 무척추형 라이소자임으로 병원균에 대한 방어에 주요하게 작용하는 선천성 면역 물질이며, 비효소적 항균 활성을 가지고 있어 항균 활성을 지닌 유도체의 개발 가능성을 가지고 있다. 본 논문은 개불 라이소자임에서 유래된 항균 활성을 가지는 유도체의 디자인과 생산을 기술하고 있다. 여러 항균성 펩타이드(antimicrobial peptide, AMP) 데이터베이스에서 제공하는 항균성 펩타이드 예측 도구를 사용하여 개불 라이소자임에서 항균 활성을 가지는 부위를 예측하였다. 개불 라이소자임 C-말단의 절편이 항균 활성을 나타낼 것으로 예측되었으며, 이 펩타이드는 C-말단 절편, Uu-ilys-CF라 명명하였다. Uu-ilys-CF은 이형 발현 시스템인 TrxA-Uu-ilys-CF 퓨전 단백질을 사용하여 생산하였다. 만들어진 퓨전 단백질은 브롬화시안을 사용하여 메티오닌 잔기를 절단하였으며, 절단된 Uu-ilys-CF은 고성능액체크로마토그래피와 역상 컬럼인 CapCell-Pak C18을 사용하여 분리되었다. Uu-ilys-CF의 항균 활성을 조사하기 위해서 여러 균주(그람양성균 4개, 그람음성균7개, 진균 1개)를 사용하였다. Uu-ilys-CF의 항균 활성은 살모넬라에서 가장 높은 반응을 보였다. 비록 Uu-ilys-CF는 진균에 활성을 나타내지 않았지만, 사용한 균주들에서 넓은 범위의 항균 활성을 나타내었다.