• Title/Summary/Keyword: Functional Amino Acids

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Studies on the Compositions of Mineral Components, Total Amino Acid, Free Amino Acid and Fatty Acid of Zizyphus jujuba Seed (대추씨(Zizyphus jujuba Seed)의 무기질, 구성 총 아미노산, 유리 아미노산 및 지질 구성 지방산조성에 관한 연구)

  • Kim, Han-Soo
    • Korean Journal of Human Ecology
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    • v.8 no.1
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    • pp.25-31
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    • 2005
  • Chemical components of the physiological activity substance in Zizyphus jujuba seed were analyzed for the use as an functional processed products. The proximate compositions of Zizyphus jujuba seed were carbohydrate 89.40%, moisture 8.23%, crude protein 1.22%, crude fat 0.65% and crude ash 0.50%, respectively. the richest mineral contained in Zizyphus jujuba seed was Mg(198.3mg/100g), followed by Mn(113.0mg/100g), K(100.2mg/100g), Ca(25.3mg/100g), P(25.6mg/100g_, Fe(23.5mg/100g), Zn(18.7mg/100g), Cu(7.4mg/100g) and Na(5.3mg/100g). Total amino acid contents of Zizyphys jujuba seed were 1103.12mg/100g, and the major amino acids were proline(235.17mg%), aspartic acid(175.941mg%), gltamic acid(101.46mg%), leucine(50.27mg%), serine(47.71mg%), aspartic acid(47.27mg%), glycine(41.60mg%) and lysine (33.78mg%), respectively. The amount of free amino acids in the protein of Zizyphus jujuba seed were 178.62 mg/100g, and the major free amino acids were proline(121.30mg%), alanine(6.01mg%), valine(2.63mg%) and arginine(2.04mg%), respectively. The compositions of major total fatty acid in the lipid Zizyphus jujuba seed were C18:2(n5c) 28.72%, C18:1(n9t) 23.76%, C18:1(n9c) 13.45%, C16:0 13.45% and C20:5(n3) 1.77% in order, respectively.

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Identification of pol Gene Mutation among BLV Proviruses Found in the Southern Province of Korea

  • Kwon, Oh-Sik
    • The Journal of Korean Society of Virology
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    • v.30 no.2
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    • pp.131-139
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    • 2000
  • Bovine leukemia virus (BLV) is an etiological agent of chronic diseases in cows worldwide. The BLV is one of retroviruses that contain a multi-functional enzyme, reverse transcriptase produced from the pol gene in its genome. We have sequenced some regions in the pol gene of BLV proviruses found in the Southern province of Korea from samples that turned out to be BL V positives by a PCR analysis. On the 5' side of the BLV pol gene (polymerase region), it was found that there were four leucines located at every 7 amino acids. They can form a leucine zipper motif that was not same as the pol gene of Japanese BLV isolate. The sequencing result of the proviral pol gene in Korean-type BLV also revealed some mutations leading to amino acid changes such as $CCT(Pro){\to}CTC(Leu)$, $AAT(Asn){\to}AAA(Lys)$, and non-sensible variations i.e., $TCT(Ser){\to}TCC(Ser)$, $ATT(Ile){\to}ATC(I1e)$ and $ACG(Thr){\to}ACA(Thr)$. On the 3' side of the pol gene (integrase region), some nucleotide sequences were mutated and led to amino acid changes. Among them, a mutation, $GAA(Glu){\to}GAC(Asp)$ occurred in many Korean-type BLV proviruses was very interesting because the amino acid was regarded as one of the most conserved amino acids in the retroviral integrase. It was also notable that the mutation on any leucine residue did not occur, in spite of its frequent appearance.

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Monitoring of optimal conditions for producing fermented black soybeans rich in sulfur-containing amino acids

  • Sung Ran Yoon;Jin Ju Lee;Jungmin Park;Jung A Ryu;Ju-Ock Nam;Min Sook Kang;Sun Hwa Kim;Yong Jin Jeong
    • Food Science and Preservation
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    • v.30 no.6
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    • pp.905-917
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    • 2023
  • The optimal fermentation conditions for producing fermented black soybeans rich in sulfur-containing amino acids were investigated. Response surface methodology monitored fermentation conditions. A central composite design examined the effect of independent variables: enzyme concentration (X1) and fermentation time (X2) on yield and methionine content. Both factors significantly influenced these dependent variables. Enzyme concentration more profoundly affected amino nitrogen content than fermentation time. β-Glucan content and cystine level were primarily affected by fermentation time. We elicited each variable's regression formula and identified optimal fermentation conditions for functional compounds. The predicted optimum conditions were an enzyme concentration of 0.28-0.32% and a fermentation time of 58.0-62.0 min. Under these optimal conditions, each black soybean variety's sulfur amino acid content ranged from 818.62 to 922.62 mg/100 g, demonstrating significant variety differences.

Aptamers as Functional Nucleic Acids: in vitro Selection and Biotechnological Applications

  • You, Kyung-Man;Lee, Sang-Hyun;Aesul Im;Lee, Sun-Bok
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.8 no.2
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    • pp.64-75
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    • 2003
  • Aptamers are functional nucleic acids that can specially bind to proteins, peptides, amino acids. nucleotides, drugs, vitamins and other organic and inorganic compounds. The aptamers are identified from random DNA or RNA libraries by a SELEX (systematic evolution of ligands by exponential amplification) process. As aptamers have the advantage, and potential ability to be released from the limitations of antibodies, they are attractive to a wide range of therapeutic and diagnostic applications. Aptamers, with a high-affinity and specificity, could fulfil molecular the recognition needs of various fields in biotechnology. In this work, we reviewed some aptamer Selection techniques, properties, medical applications of their molecules and their biotechnological applications, such as ELONA (enzyme linked oligonucleotide assay), flow cytometry, biosensors, electrophoresis, chromatography and microarrays.

Changes in Food Composition of Tenebrio molitor by Life Stage (생애주기에 따른 갈색거저리의 식품성분 변화)

  • Lee, Ju-Hye;Lee, Jiyoon;Whang, Jinbong;Nam, Jin-Sik;Han, Hye-Kyung;Kim, So-Min;Im, Jeong Yeon;Choi, Youngmin;Kim, Haeng Ran;Kim, Se-Na
    • Korean journal of food and cookery science
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    • v.32 no.5
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    • pp.656-663
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    • 2016
  • Purpose: This study was aimed to compare the nutritional content of the life stages of Tenebrio molitor. Methods: Nutritional element analysis comprised 12 minerals, 18 amino acids, 4 vitamins, and 12 fatty acids in larval, pupal, and adult stages. Nutritional element content was expressed as a percentage of 100 g of sample and determined in raw and freeze-dried samples to assess the food value of the insect. Results: Moisture, crude protein, and crude fat contents in raw samples were 63.5%, 23.19%, and 3.96%, respectively. Moisture content was significantly higher in the adult stage than in larval and pupal stages, whereas crude fat and crude ash contents were lower. Mineral composition of the mealworm showed K, P, and Mg in decreasing order of content, with no differences among life stages. Total amino acid content increased from adult, pupal to larval stages, in order with each stage's growth, without difference in amino acid composition. Seventy-six to 78% of total fatty acid corresponded to unsaturated fatty acids, with oleic acid as the most abundant. In addition, fatty acid content was high in the adult stage, and clear differences were observed between life stages. Finally, vitamins B1 and B3 showed similar content between life stages, whereas vitamin B2 showed a higher content the adult than larval and pupal stages. A higher folate content was observed in pupal and adult stages than in the larval stage. Although freeze-dried samples showed a higher nutritional content than raw samples, both samples were similar in composition and content between life stages, suggesting the suitability of freeze-dried samples for use as food materials. Conclusion: These results may provide a basis for more diversified industrial applications of the Tenebrio molitor.

Hepatoprotective Functions of Sulfur Containing Amino Acids: Possibilities of Hepatocellular Carcinoma Prevention (황함유 아미노산의 간기능 보호 작용: 간세포암 예방의 가능성)

  • Ko, Kwang Suk
    • Korean Journal of Food Science and Technology
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    • v.44 no.6
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    • pp.653-657
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    • 2012
  • While it is known that sulfur containing amino acids (SCAA) are very important in regulating hepatocyte growth and preventing liver-diseases, the fundamental molecular mechanisms of how they exert their hepatoprotective functions are not well known. Since it is widely understood that the hepatic concentrations of S-adenosylmethionine (SAMe) in chronic liver disease patients are severely decreased, the pathophysiological importance of SAMe and its downstream antioxidant, glutathione should be discussed in order to see a big picture of relationship between SCAA and liver diseases. Chronic SAMe deficient mice have shown spontaneous hepatocellular carcinoma development due to impaired mitochondria functions with low levels of prohibitin1 protein, and through deficiency in many genes which are known to ameliorate genetic instability, such as APEX1 and DUSP1, the functions of which are recovered by SAMe treatment. In this review, current knowledge of the basic concepts of the mechanisms through which SCAAs protect the liver will be discussed in detail. Also, a possible tumor suppressor in livers, prohibitin1, and its functional relationship with SAMe will be discussed.

Identification of Amino-Acids Residues for Key Role in Dextransucrase Activity of Leuconostoc mesenteroides B-742CB

  • Ryu, Hwa-Ja;Kim, Do-Man;Seo, Eun-Seong;Kang, Hee-Kyung;Lee, Jin-Ha;Yoon, Seung-Heon;Cho, Jae-Young;Robyt, John-F.;Kim, Do-Won;Chang, Suk-Sang;Kim, Seung-Heuk;Kimura, Atsuo
    • Journal of Microbiology and Biotechnology
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    • v.14 no.5
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    • pp.1075-1080
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    • 2004
  • Dextransucrase (DSRB742) from Leuconostoc mesenteroides NRRL B-742CB is a glucosyltransferase that catalyzes the synthesis of dextran using sucrose, or the synthesis of oligosaccharides when acceptor molecules, like maltose, are present. The DSRB742 gene (dsrB742) was cloned and the properties were characterized. In order to identify critical amino acid residues, the DSRB742 amino acid sequence was aligned with glucosyltransferase sequences, and three amino acid residues reported as sucrose binding amino acids in Streptococcus glucosyltransferases were selected for site-directed mutagenesis experiments. Asp-533, Asp-536, and His-643 were independently replaced with Ala or Asn. D533A and D536A dextransucrases showed reduced dextran synthesis activities, 2.3% and 40.8% of DSRB742 dextransucrase, respectively, and D533N, D536N, H643A, end H643N dextransucrases showed complete suppression of dextran synthesis activities altogether. Additionally, D536N dextransucrase showed complete suppression of oligosaccharide synthesis activities. However, modifications at Asp-533 or at His-643 retained acceptor reaction activities in the range of 8.4% to 21.3% of DSRB742 acceptor reaction activity. Thus at least two carboxyl groups of Asp-533 and Asp-536, and His-643 as a proton donor, are essential for the catalysis process.

Studies on the Composition of Lipid , Amino acid and Dietary Fiber from Functional Food Source -Platycodi radix , Perilla Seed , Evening Primrose Seed and Aloe Vera- (기능성 식품 자원의 지질, 아미노산 및 식이 섬유의 조성 -길경, 들깨 종자, 달맞이꽃 종자, 알로에베라-)

  • 황성원;박무희;심호기;배만종
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.23 no.4
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    • pp.647-653
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    • 1994
  • This study was conducted to investigate the contents of dietary fiber (DF), compositions of fatty acids in lipid fraction and amino acids in salt-soluble protein from the functional food source such as Platycodi radix, perilla seed, evening primrose seed and aloe vera. The contents of dietary fiber, neutral detergent fiber (N.D.F) , acid detergent fiber( A.D.F) . kignin, hemicellulose an dcellulose in evening primorse seed were higher than those of other samples, except the content of cellulose .The ration of polyunsaturated /saturated (P/S) fatty acid in total lipids was 6.31 in perilla seed, which was higher than those of other samples. The content of linolenic acid (n-3) in perilla seed was 55.47%. The content of linoleic acid (n-6) in evening primrose seed was 71.88% , which was higher than those of other samples. The fatty acid composition in neutral lipids were the same as those of total lipids. The PUFA contents of fatty acid in glycolipids were 61.76% in perilla seed. And also, the ratio of n-6/n-3 in evening primrose seed was 15.19. The fatty acid compositions in phospholipids were the sameas those of glycolipids. The contents of PUFA in Platycodi radix were 62.96% . The essential amino acid contents of salt-soluble protein were 47 mole % in Platycodi radix , which was slightly higher than those other samples. The ration of essential amino acid /nonessential amino acid (E/N) was 0.9 and 0.66 in Platycodi radix and aloe vera, respectively.

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Changes in Physicochemical Properties of Actinidia arguta (Siebold & Zucc.) Planch. ex Miq. by Blanching, Drying, and Fermentation (다래순의 데침, 건조 및 발효 조건에 따른 이화학적 특성 변화)

  • Jeong, Ji-Suk;Kim, Yong-Joo;Park, No-Jin;Go, Geun-Bae;Son, Byeong-Gil
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.44 no.3
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    • pp.425-433
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    • 2015
  • This study investigated changes in physicochemical characteristics by drying and fermentation in order to utilize Actinidia arguta. Moisture content of A. arguta was 85.81%. Major sugar and organic acids were sucrose, succinic acid, and citric acid. A. arguta contained 19 kinds of amino acids, including 8 kinds of essential amino acids such as valine, methionine, isoleucine, leucine, threonine, phenylalanine, tryptophan, and lysine. For total organic acids, sample fermented for 17 h at $50^{\circ}C$ under a relative humidity of 80% showed 29,026.53 mg/100 g total organic acids. For total free sugars, cold-dried sample showed the highest level at 6,560.86 mg/100 g, which decreased to 2,386.73 mg/100 g after blanching. For the ratio of essential amino acids, freeze-dried sample showed a content of 11.66%, which increased 4-fold up to 40.71~55.50% with fermentation. Both GABA and vitamin U were highest after 17 h of fermentation (110.29 mg and 6.78 mg/100 g fresh weight, respectively). A. arguta contains a variety of free amino acids that increase in amount after fermentation and thus is expected to be developed as a functional food and substitute tea.

Structural and Functional Importance of Two Glutamate Residues, Glu47 and Glu146, Conserved in N-Carbamyl D-Amino Acid Amodohydrolases

  • Oh, Ki-Hoon;Kim, Geun-Joong;Park, Joo-Ho;Kim, Hak-Sung
    • Journal of Microbiology and Biotechnology
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    • v.11 no.1
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    • pp.29-34
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    • 2001
  • The mutant enzymes of N-carbamyl-D-amino aicd amidohydrolase (N-carbamylase) from Agrobacterium radiobacter NRRL B11291, showing a negligible activity, were selected from the library generated by random mutagenesis. From the sequence analysis, these mutants were found to contain the amino acids substitutions at Cys172, Glu47, and Glu146. Previously, Cys172 was reported to be necessary for the enzyme catalysis. The chemical modification of the N-carbamylase by carboxyl group specific chemical reagent, 1-ethyl-3-(3-dimethylaminopropyl) carbodiimide(EDC), resulted in a loss of activity. The replacement of glutamic acids with glutamines by site-directed mutagenesis led to aggregation of the enzymes. Mutant enzymes fused with maltose binding protein (MBP) were expressed in soluble form, but were inactive. These results indicate that two glutamic acid residues play an important role in structure and function of the N-carbamylase. Multiple sequence alignment of the related enzymes revealed that Glu47 and Glu146 are rigidly conserved, which suggests that tese residues are crucial for the structure and function of the functionally related C-N hydrolases.

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