• Title/Summary/Keyword: glycine-proline-hydroxyproline

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A Study on the Skin Anti-wrinkle Effect of Novel Palmitoyl Tripeptide (신규한 Palmitoyl Tripeptide의 피부 주름개선 효과에 관한 연구)

  • Bae, Soon-Min;Ahn, Yong-Hoon;Jung, Jin-Kyo;Hwang, Jeong-Geun
    • Journal of the Society of Cosmetic Scientists of Korea
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    • v.36 no.1
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    • pp.65-69
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    • 2010
  • Collagen is the most abundant animal protein in mammals, accounting for about 30 % of all proteins. It is present in connective tissue and contributes to the structural framework of most organs. The tripeptide (glycineproline-hydroxyproline) with the INCI name Tripeptide-29 is main component of collagen type I. The palmitoyl tripeptide (palmitoyl-glycine-proline-hydroxyproline) with the INCI name Paimitoyi Tripeptide-29 is a synthetic material that was designed as a topical agent to stimulate collagen production. We synthesized the palmitoyl tripeptide as a potential anti-wrinkle compound. This compound has been characterized using HPLC. This compound proved, through in vitro tests, to stimulate collagen production and fibroblast proliferation. These results were very promising, so human studies were subsequently performed. We investigated the skin improvement effect of the palrnitoyl tripeptide on human skin by using non-invasive instruments. We measured physiological effects such as skin wrinkles and elasticity after volunteers applied the cosmetic products for 8 weeks. We observed significant improvement in skin wrinkles and elasticity after use of the cosmetic products for 8 weeks. We concluded that the palmitoyl tripeptide had an anti-aging effect on human facial skin.

Quality Analysis of the Free Amino Acids during the Early Development Stages of Hynobius leechi (한국산 도롱뇽(Hynobius Leechi BOULENGER 의 초기발생단계에 있어서의 유리 아미노산의 정성분석)

  • 강영선;하두봉;한원택
    • The Korean Journal of Zoology
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    • v.4 no.2
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    • pp.13-19
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    • 1961
  • Free amino acids at five different developemntal stages (Gastrulation-Hatching -out stage) of Hynobius leechi BOULENGER were analyzed qualitatively by the use of paper paitition chromatography. It was found that the number of free amino acids increased as the development proceeded. The free amino acids identified at each stages are as follows : Gastrulation stage : Alaninie, Aspartic acid, Glutamin acid, Histidine, Methionine. Neural plate formation stage : Alanine , Aspartic acid, Glutamic acid, Glycine, Histidine, MEthionine, Phenylalanine, Proline, Serine, Trypotophan. Middle tail-bud stage : Alanine, Arginine, Asparagine,Aspartic acid, Citrulline, Glutamic acid, Glycine, Histidie,Hydroxyproline, Proline, Leucine, Methionine, Ornithine, Phenylalanine, Serine, Threonine, Tryptophan. Late tail-bud stage : Alanine, Arginine, Asparagine, Aspartic acid, Citrulline, Glutamic acid. Glycine, Histidine, Hydroxyproline, Leucine, Methionine, Ornithine, Phenylalanine, Proline, Serine, Threonine, Tryptophan, Valine. Hatching -out stage : the same with the late tail-bud stage. It seems probable that the metabolic systems of amino acids before and after the middle tail-bud stage are quite different from each other. Before the middle tail=-bud stage, the reaction system of amino acids is thought not to be completed while after that stage the system has been completed , because in the former period of the development , the number of freeamino acids increased rapidly with the development , and after that stage, there is practically no change in the number of free amino acids.

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동물(動物) 부위(部位)에 따르는 수용성유리(水溶性遊離) Amino산(酸)의 분포(分布)에 대(對)한 연구(硏究) 제1보(第1報) (면양(緬羊)의 근육(筋肉)에 대(對)해서)

  • Yun, Hyeong-Sik;Song, Tae-Hwa;Park, Wan-Gil
    • Applied Biological Chemistry
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    • v.6
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    • pp.29-31
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    • 1965
  • The distribution of water soluble free amino acids in various parts of sheep muscles were observed. amino acids of cystine, histidine, aspartic acid, arginine, hydroxy proline, threonine, glutamic acid alanine, proline, methionine, tryptophan, leucine, iso-leucine, glycine, creatine, and two or four different kinds of amino acid content in each tissues, M. longissimus. Overall, the distribution of content of amino acids are seemed to be different for each tissues, while for hydroxyproline the result was negative.

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Gas-chromatographic determination of methylthiohydantoin amino acid as N(O)-butyldimethylsilyl derivatives in amino acid sequencing with methylisothiocyanate (Methylisothiocyanate를 이용한 아미노산 배열결정시 N(O)-butyldimethylsilyl 유도체로서의 methylthiohydantoin 아미노산의 기체 크로마토그래피에 의한 분석)

  • Woo, Kang-Lyung
    • Applied Biological Chemistry
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    • v.35 no.2
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    • pp.132-138
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    • 1992
  • For effective determination of methylthiohydantoin amino acids(MTHs) by gas liquid chromatography in the protein sequencing, derivatization with N-methyl-N-(tert.-butyl-dimethylsilyl)trifluoroacetamide(MTBSTFA), a new silylating reagents, was attempted instead of trimethylsilyl(TMSi) derivatives by N,O-bis(trimethylsilyl)trifluoroacetamide(BSTFA) used up to the present and N(O)-butyldimethylsilyl MTHs derivatized by MTBSTFA were analysed on HP-1 capillary column. Twenty one protein amino acids except cystine were indentified. Especially arginine that did not detected with TMSi derivative on packed column until now was resolved by derivatization with MTBSTFA. N(O)-butyldimethylsilyl MTHs showed multiple peaks by MTBSTFA were proline, isoleucine, glycine and tyrosine and hydroxyproline especially showed several extraneous peaks more than two. Calibration curves of N(O)-butyldimethysilyl MTHs of amino acids in the range of $2.5\;nmol{\sim}7.5\;nmole$ showed good linearity. however, those of lysine, histidine and arginine showed linearity in the range of $5.0\;nmole{\sim}15.0\;nmole$. Correlation coefficients and regression coefficients of all calibration curves were highly significant(p<0.001).

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Development of Natural Seasoning from Alaska Pollack Skin Gelatin Using Continuous Three-Step Membrane Reactor (연속식 3단계 막 반응기를 이용한 명태피 젤라틴으로부터의 천연조미료 개발)

  • 김세권;전유진
    • KSBB Journal
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    • v.10 no.5
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    • pp.510-517
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    • 1995
  • The hydrolysates of three kinds [FSEH(first step enzymatic hydrolysate), SSEH(second step enzymatic hydrolysate), and TSEH(third step enzymatic hydyolysate)] were prepared by continuous hydrolysis of Alaska pollack(Theragra chalcogramma) skin gelatin with three-step membrane enzyme reactor. The molecular weight distributions of FSEH, SSEH, and THSE are 9,500∼4,800Da, 6,600∼3,400Da, and 2,300∼900Da, respectively. The contents of amino acid having sweet taste (glycine, proline, serine, alanine, hydroxyproline, glutamic acid, and aspartic acid) were about 70% of total amino acid being in the three kind hydrolysates. We also tried preparing of natural seasonings (complex seasoning and enzymeatic hydrolysale sauce) using the hydrolysates. From the results of sensory evaluations, complex seasoning containing TSEH was nearly equal to shellfish complex seasoning on the market. The mixture sauce which was made by mixing of 80% enzymatic hydrolysis sauce and 20% fermented soy sauce, was at least similar to the tradition soybean sauce in product quality, too.

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Quantitative Analysis of Protein Amino Acid in Agaricus Bisporus by GLC (GLC에 의한 버섯의 Amino Acid 정량(定量))

  • Jung, Jai-Kie;Chung, Jai-Young;La, Sang-Moo
    • Journal of Nutrition and Health
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    • v.7 no.4
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    • pp.12-20
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    • 1974
  • Quantitative analysis was achieved by gas-liquid chromatographic method (GLC) with a single column system of OV-17 for 16 of protein amino acids in mushroom (agaricus bisporus). The quantities of protein amino acids in mushroom were determined $48.32{\sim}255.94mg%$ alanine, $108.6F{\sim}364.82mg%$ glycine, $124.30{\sim}314.17mg%$ Valine, $32.99{\sim}418.79mg%$ leucine and isoleucine, $151.78{\sim}669.07mg%$ threonine, $88.12{\sim}4F6.3Fmg%$ Serine, $21.9F{\sim}114.94mg%$ Hydroxyproline, $20.F4{\sim}174.63mg%$ proline, $34.52{\sim}173.59mg%$ Methionine, $225.25{\sim}1417.61mg%$ Aspartic Acid, $10F.00{\sim}392.17mg%$ Phenylalanine, $12F.46{\sim}535.65mg%$ Glutamic Acid and Lysine, Tyrosine in trace amount.

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Preparation of Imitation Sauce from Enzymatic Hydrolysate of Cod Skin Gelatin (대구피 젤라틴의 효소적 가수분해물을 이용한 조미간장의 제조)

  • 김세권;안창범;강옥주
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.22 no.4
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    • pp.470-475
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    • 1993
  • The imitation sauce was prepared by using the enzymatic hydrolysate of cod skin gelatin and its product quality was also compared with three kinds of soy sauce on the market sensually. The major molecular weight of the hydrolysate used in this study was 5, 800Da and glycine, proline, serine, alanine, hydroxyproline, glutamic acid, and aspartic acid having sweet taste accounted for 65.9% of the total amino acid being in the hydrolysate. The imitation sauce was prepared the mixture of the liquor and fermented sauce (8 : 2 = v : v), where the liquor was prepared by dissolving with 10.0g the hydrolysate, 10.0g NaCl, 3.0g sucrose, 0.5g monosodium glutamate, 0.1g caramel powder, 3.0$m\ell$ fermented vinegar, 0.05g garlic powder, 0.1g black pepper powder, and 0.2g licorice powder in 100.0$m\ell$ water, boiling for 5min and filtrating with cheesecloth. From the result of sensory evaluation, the imitation sauce was at least equal to three kinds of soy sauce in product quality.

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Changes in Components of Salted Eggplants (Chukyang) during Storage (축양품종 염절임 가지의 저장중의 성분 변화)

  • Nam, Hak-Sik;Kim, Nam-Woo;Shin, Seung-Ryeul
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.34 no.1
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    • pp.120-125
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    • 2005
  • This study was carried out to investigate the changes in components of salted eggplant (chukyang) during storage. The contents of total and reducing sugar were decreased during storage, and the tendency was lower in the salted eggplants of vacuum packing storage than in the salted eggplants of rice bran immersion storage. The organic acids of salted eggplants were acetic acid, citric acid, lactic acid, and malic acid. And acetic and malic acid contents were much higher than the others. The content of acetic acid was increased during storage, but malic acid was decreased. Major amino acids of eggplants were valine, aspartic acid, glutamic acid, glycine, and alanine. The content of total amino acid was 1,488.18 mg/100 g in eggplant packed vacuum film at 20 days of storage, and higher than those in fresh eggplant. The content of total amino acid in eggplant immersed in wet rice bran was 745.42 mg/100 g at 20 days of storage, and decreased during storage. The contents of aspartic acid, alanine, cystine, and proline in free amino acids of salted eggplants were higher than other amino acids. The contents of phosphoserine, taurine, ${\gamma}$ -aminoisobutyric acid and hydroxyproline were higher than others. Posphoserine content was decreased during storage, but ${\gamma}$ -aminoisobutyric acid content was increased during storage.

Physicochemical Characteristics of Filefish and Cod Skin Collagen (말쥐치피 및 대구피 콜라겐의 물리화학적 특성)

  • Kim, Se-Kwon;Kang, Ok-Ju;Kwak, Dong-Chae
    • Applied Biological Chemistry
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    • v.36 no.3
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    • pp.163-171
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    • 1993
  • The collagens from filefish (Novoden modestus) and cod (Gadus macrocephalus Tilesius) skin were isolated and their physicochemical properties were investigated. Glutamic acid, hydroxyproline, valine and phenylalanine in the filefish skin collagen (FSC) were presented at higher levels than those of cod skin collagen (CSC), but the contents of glycine, proline and serine were contrary. The content of essential amino acids of FSC (265 residues/1000 residues) was higher than CSC (229 residues). The solubilities of both collagens were the lowest at pH 7.0, but precipitously increased at acid zone(below pH 5.0). FSC has lower viscosity than CSC. Furthermore, while the viscosities of both collagens were the lowest at pH 7.0, the viscosities of FSC and CSC were the highest at pH 4.0 and pH 2.0, respectively. The denaturation temperature of $FS(25^{\circ}C)$ was higher than $CSD\;(17^{\circ}C)$. The free hydrophobic residue contents of FSC and CSC tended to increase till $60^{\circ}C,\;and\;50^{\circ}C$ respectively, and to decrease thereafter. Hydration capacities of both collagens were the lowest at pH 7.0, and CSC had the superior hydration capacity to FSC. In addition, emulsifying and emulsifying stability of CSC was also superior to FSC.

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Proteolytic Conditions for the Hydrolysate of Flounder Skin Gelatin (효소에 의한 가자미피 젤라틴 가수분해물의 제조 조건)

  • 강태중;양현필;김세권;송대진
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.21 no.4
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    • pp.398-406
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    • 1992
  • In order to develop a new flavourant using the fish skin gelatin, the proteolytic renditions for the gelatin hydrolysate of the alkali (B-type) and Alcalase (E-type) pretreated flounder (Limanda aspera) skin gelatin were investigated, and some physical properties, molecular weight and amino acid compositions of the hydrolysates were, also, compared with each other. The proteolytic conditions of the gelatins (B-type and E-type) by trypsin were as follows : reaction temperature, 55$^{\circ}C$ : pH, 9.0 : enzyme concentration, 0.1% : re-action time, 4hrs for B-type and 1 hr for E-type. The degrees of hydrolysis of the B-type and E-type gelatin un-der the renditions stated above were 63% and 82%, respectively. The rnajor molecular weights of the hydrolysates were 15,000 dalton for B-type and 12,400 dalton for E-type. Among the amino acids in the hydrolysates, glycine, alanine, proline, hydroxyproline and serine having a sweet taste were responsible for 57% of the total amino acid. But valine, leucine, phenylalanine, tyrosine, methionine, arginine and histidine having a bitter taste were only 18%.

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