• 제목/요약/키워드: A2 ${\beta}$-casein

검색결과 90건 처리시간 0.02초

MILK PROTEIN POLYMORPHISMS AS GENETIC MARKER IN KOREAN NATIVE CATTLE

  • Chung, E.R.;Han, S.K.;Rhim, T.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제8권2호
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    • pp.187-194
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    • 1995
  • Genetic variants of ${\alpha}s_1$-casein, ${\beta}$-casein, ${\kappa}$-casein and ${\beta}$-lactoglobulin were investigated by starch urea gel electrophoresis in milk samples of 280 Korean native cattle. A new ${\beta}$-casein variant, designated ${\beta}$-casein $A^4$, was found in milk samples of Korean native cattle. It has a much slower electrophoretic mobility than the ${\beta}$-casein $A^3$ variant in acid gel. This new variant appeared together with either ${\beta}$-casein $A^1$, $A^2$ or B variant. Gene frequencies and genotypic frequencies were estimated. Gene frequencies of four milk protein loci in Korean native cattle were compared with those of imported cattle breeds raised in Korea and Japanese brown cattle. Gene frequencies were ${\alpha}s_1$-casein B .846, ${\alpha}s_1$-casein C .154; ${\beta}$-casein $A^1$ .216, ${\beta}$-casein $A^2$ .666, ${\beta}$-casein $A^4$ .048, ${\beta}$-casein B .070; ${\kappa}$-casein A .648, ${\kappa}$-casein B .352; ${\beta}$-lactoglobulin A .148, ${\beta}$-lactoglobulin B .852. The population was in Hardy-Weinberg equilibrium at all milk protein loci. Gene frequencies of Korean native cattle were very similar to those of Japanese brown cattle. Interestingly, a new variant, ${\beta}$-casein $A^4$, was found only in Korean native cattle and Japanese brown cattle. These results support the hypothesis that Korean native cattle were used in the development of the Japanese brown cattle.

Hypoallergenic and Physicochemical Properties of the A2 β-Casein Fractionof Goat Milk

  • Jung, Tae-Hwan;Hwang, Hyo-Jeong;Yun, Sung-Seob;Lee, Won-Jae;Kim, Jin-Wook;Ahn, Ji-Yun;Jeon, Woo-Min;Han, Kyoung-Sik
    • 한국축산식품학회지
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    • 제37권6호
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    • pp.940-947
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    • 2017
  • Goat milk has a protein composition similar to that of breast milk and contains abundant nutrients, but its use in functional foods is rather limited in comparison to milk from other sources. The aim of this study was to prepare a goat A2 ${\beta}$-casein fraction with improved digestibility and hypoallergenic properties. We investigated the optimal conditions for the separation of A2 ${\beta}$-casein fraction from goat milk by pH adjustment to pH 4.4 and treating the casein suspension with calcium chloride (0.05 M for 1 h at $25^{\circ}C$). Selective reduction of ${\beta}$- lactoglobulin and ${\alpha}_s$-casein was confirmed using sodium dodecyl sulphate-polyacrylamide gel electrophoresis and reverse-phase high-performance liquid chromatography. The hypoallergenic property of A2 ${\beta}$-casein fraction was examined by measuring the release of histamine and tumor necrosis factor alpha from HMC-1 human mast cells exposed to different proteins, including A2 ${\beta}$-casein fraction. There was no significant difference in levels of both indicators between A2 ${\beta}$-casein treatment and the control (no protein treatment). The A2 ${\beta}$-casein fraction is abundant in essential amino acids, especially, branched-chain amino acids (leucine, valine, and isoleucine). The physicochemical properties of A2 ${\beta}$-casein fraction, including protein solubility and viscosity, are similar to those of bovine whole casein which is widely used as a protein source in various foods. Therefore, the goat A2 ${\beta}$-casein fraction may be useful as a food material with good digestibility and hypoallergenic properties for infants, the elderly, and people with metabolic disorders.

산야유 $\beta-Casein$의 효소 가수분해 특성과 가수분해물의 Angiotensin Converting Enzyme 저해 효과 (Hydrolysis Characteristics of Goat Milk $\beta-Casein$ by Enzyme and Angiotensin Converting Enzyme Inhibition Effects of Hydrolysate)

  • 박용국;권일경;김거유
    • 한국축산식품학회지
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    • 제25권2호
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    • pp.238-243
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    • 2005
  • 산양유 $\beta-casein$의 효소에 의한 가수분해 특성과 가수분해물의 ACE 저해 효과를 측정하고자 산양유의 $\beta-casein$을 양이온 교환 컬럼인 Mono S HR 5/5를 이용하여 분리하였으며 분리된 $\beta-casein$을 동물성 분해효소인 trypsin으로 처리하여 가수분해 특성을 확인하였고 가수분해물의 ACE 저해활성을 측정하였다. Mono S HR 5/5 양이온 교환 컬럼을 이용한 산양유 산 케이신으로 부터 순수한 $\beta-casein$의 분리는 SDS-PAGE를 이용하여 확인한 결과 순수한 $\beta-casein$의 분리가 이루어졌음을 확인할 수 있었다. $\beta-casein$$37^{\circ}C4$에서 trypsin으로 처리하여 전기영동으로 확인한 결과 가수분해 직후부터 $\beta-casein$ 위치의 band가 희미해지기 시작하고 저분자량의 band가 나타나기 시작하였으나 120분이 지난 후에는 모든 band가 가수분해되어 사라졌고 산양유에서 분리된 $\beta-casein$을 trypsin으로 처리하여 120분 경과 후 그 가수분해물을 이용하여 ACE 저해효과를 측정한 결과 가수분해하지 않은 $\beta-casein$$1.80\pm1.21\%$의 ACE 저해활성을 보였으나 trypsin으로 가수분해하여 ACE 저해 활성을 측정하였을 때 $25.36\pm0.79\%$의 저해 활성을 나타내었으며, trypsin에 의한 $\beta-casein$가수분해물의 $IC_{50}$을 측정한 결과 $308.7\pm2.77({\mu}g/mL)$로 나타났다.

A1/A2 ${\beta}$-카세인이 인간 건강에 미치는 학문적 고찰 (Scientific Consideration of A1/A2 Beta Casein Influence in Human Health)

  • 이동석
    • Journal of Dairy Science and Biotechnology
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    • 제26권1호
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    • pp.11-19
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    • 2008
  • Milk from dairy cows has long provided a high quality source of protein and selected micronutrients as calcuim to most populations. Recently, a relationship between disease risk and consumption of specific bovine ${\beta}$-casein fraction either A1 or A2 genetic variants has identified. Populations, which consume milk contain high containing high levels of ${\beta}$-casein A2 variants, have a lower incidence of cardiovascular disease and type 1 diabetes. Furthermore, consumption of milk with the A2 variants may be associated with less severe symptoms of autism and schizophrenia. The mechanism of action focuses on ${\beta}$-casein A1 and related forms preferentially that are able to produce a bioactive opioid peptide, ${\beta}$-casomorphin-7(${\beta}$-CM-7) during digestion. Infants may absorb ${\beta}$-CM-7 due to an immature gastrointestinal tract. Adult, on the other hand, appear to reap the biological activity locally on the intestinal brush boarder. ${\beta}$-CM-7 can potentially affect numerous opioid receptors in the nervous, endocrine, and immune system. Whether there is a definite health benefit to milk containing the A2 genetic variant is unknown and requires further investigation.

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THE RELATIONSHIP BETWEEN MILK PROTEIN PHENOTYPES AND LACTATION TRAITS IN AYRSHIRES AND JERSEYS

  • Kim, S.;Ng-Kwai-Hang, K.F.;Hayes, J.F.
    • Asian-Australasian Journal of Animal Sciences
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    • 제9권6호
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    • pp.685-693
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    • 1996
  • A total of 3,610 Ayrshire and 1,711 Jersey cows were phenotyped for the genetic variants of ${\alpha}_{s1}$-casein, ${\beta}$-casein, $\chi$-casein, ${\beta}$-lactoglobulin and ${\alpha}$-lactalbumin. Least squares analyses showed possible associations between milk protein phenotypes and lactational production traits. Depending on lactation number, ${\beta}$-casein phenotypes in Ayrshires were associated with milk production ($A^2A^2$ > $A^1A^2$ > $A^1A^1$), and with milk protein content. In the third lactation, Ayrshire cows with ${\beta}$-casein $A^1A^1$ produced milk with 3.43% fat compared to 3.37% fat for ${\beta}$-casein $A^2A^2$. In Ayrshire, $\chi$-casein phenotypes affected the protein content during the three lactations (BB > AB > AA) and ${\beta}$-lactoglobulin phenotypes significantly influenced the milk fat during the first lactation (4.06% for AA and 3.97% for BB). In Jerseys, protein content of milk was influenced by phenotypes of ${\alpha}_{s1}$-casein(3.98% for CC v/s 3.86% for BB in the first lactation). In the third lactation, $\chi$-casein AA of Jersey milk contained 5.35% fat compared to 4.82% for phenotype BB. The effects of ${\beta}$-lactoglobulin phenotypes on protein content were apparent in Jerseys during the second lactation with the A variant being superior to the B (4.00% for AA v/s 3.87% for BB).

Cloning and Molecular Characterization of Porcine β-casein Gene (CNS2)

  • Lee, Sang-Mi;Kim, Hye-Min;Moon, Seung-Ju;Kang, Man-Jong
    • Asian-Australasian Journal of Animal Sciences
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    • 제25권3호
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    • pp.421-427
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    • 2012
  • The production of therapeutic proteins from transgenic animals is one of the most important successes of animal biotechnology. Milk is presently the most mature system for production of therapeutic proteins from a transgenic animal. Specifically, ${\beta}$-casein is a major component of cow, goat and sheep milk, and its promoter has been used to regulate the expression of transgenic genes in the mammary gland of transgenic animals. Here, we cloned the porcine ${\beta}$-casein gene and analyzed the transcriptional activity of the promoter and intron 1 region of the porcine ${\beta}$-casein gene. Sequence inspection of the 5'-flanking region revealed potential DNA elements including SRY, CdxA, AML-a, GATA-3, GATA-1 and C/EBP ${\beta}$. In addition, the first intron of the porcine ${\beta}$-casein gene contained the transcriptional enhancers Oct-1, SRY, YY1, C/EBP ${\beta}$, and AP-1, as well as the retroviral TATA box. We estimated the transcriptional activity for the 5'-proximal region with or without intron 1 of the porcine ${\beta}$-casein gene in HC11 cells stimulated with lactogenic hormones. High transcriptional activity was obtained for the 5'-proximal region with intron 1 of the porcine ${\beta}$-casein gene. The ${\beta}$-casein gene containing the mutant TATA box (CATAAAA) was also cloned from another individual pig. Promoter activity of the luciferase vector containing the mutant TATA box was weaker than the same vector containing the normal TATA box. Taken together, these findings suggest that the transcription of porcine ${\beta}$-casein gene is regulated by lactogenic hormone via intron 1 and promoter containing a mutant TATA box (CATAAAA) has poor porcine ${\beta}$-casein gene activity.

Manufacture and Physicochemical Properties of Chitosan Oligosaccharide/A2 β-Casein Nano-Delivery System Entrapped with Resveratrol

  • Kim, Mi Young;Ha, Ho-Kyung;Ayu, Istifiani Lola;Han, Kyoung-Sik;Lee, Won-Jae;Lee, Mee-Ryung
    • 한국축산식품학회지
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    • 제39권5호
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    • pp.831-843
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    • 2019
  • The purposes of this research were to form chitosan oligosaccharide (CSO)/A2 ${\beta}$-casein nano-delivery systems (NDSs) and to investigate the effects of production variables, such as CSO concentration levels (0.1%, 0.2%, and 0.3%, w/v) and manufacturing temperature ($5^{\circ}C$, $20^{\circ}C$, and $35^{\circ}C$), on the production and physicochemical characteristics of CSO/A2 ${\beta}$-casein NDSs to carry resveratrol. The morphological characteristics of CSO/A2 ${\beta}$-casein NDSs were assessed by the use of transmission electron microscopy (TEM) and particle size analyzer. High-performance liquid chromatography (HPLC) was applied to determine the entrapment efficiency (EE) of resveratrol. In the TEM images, globular-shaped particles with a diameter from 126 to 266 nm were examined implying that NDSs was successfully formed. As CSO concentration level was increased, the size and zeta-potential values of NDSs were significantly (p<0.05) increased. An increase in manufacturing temperature from $5^{\circ}C$ to $35^{\circ}C$ resulted in a significant (p<0.05) increase in the size and polydispersity index of NDSs. Over 85% of resveratrol was favorably entrapped in CSO/A2 ${\beta}$-casein NDSs. The entrapment efficiency (EE) of resveratrol was significantly (p<0.05) enhanced with an increase in manufacturing temperature while CSO concentration level did not significantly affect EE of resveratrol. There were no significant (p<0.05) changes observed in the size and polydispersity index of NDSs during heat treatments and storage in model milk and yogurt indicating that CSO/A2 ${\beta}$-casein NDSs exhibited excellent physical stability. In conclusion, the CSO concentration level and manufacturing temperature were the crucial determinants affecting the physicochemical characteristics of CSO/A2 ${\beta}$-casein NDSs containing resveratrol.

The Relationship between Milk Protein Phenotypes and Lactation Traits in Brown Swiss and Canadienne

  • Kim, S.;Ng-Kwai-Hang, K.F.;Hayes, J.F.
    • Asian-Australasian Journal of Animal Sciences
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    • 제11권3호
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    • pp.311-317
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    • 1998
  • A total of 1033 Brown Swiss and 610 Canadienne cows were phenotyped for the genetic variants ${\alpha}_{s1}$-casein, ${\beta}$-casein, ${\kappa}$-casein, ${\beta}$-lactoglobulin and ${\alpha}$-lactalbumin. In Brown Swiss, frequency distributions were: 97.3% B and 2.7% C variant of ${\alpha}_{s1}$-casein; 31.6% $A^1$, 51.8% $A^2$, 0.5% $A^3$ and 16.1% B variant of ${\beta}$-casein; 70.4% A, 29.3% B, and 0.3% C variant of ${\kappa}$-casein; 41.7% A and 58.3% B variant of ${\beta}$-lactoglobulin; and 100% B variant of ${\alpha}$-lactalbumin. Corresponding frequencies in Canadienne for those five milk proteins were: 98.6 and 1.4%;58.5, 33.5, 0.08 and 7.9%; 78.8, 21.1 and 0.1%, 42.4 and 57.6%; and 100%. Analysis of variance by least squares showed possible association between milk protein phenotypes and some lactational production traits. There were no significant association of phenotypes of ${\alpha}_{s1}$-casein, ${\beta}$-casein and ${\beta}$-lactoglobulin with milk yield, fat yield, protein yield, fat percentage and protein percentage in both breeds during the three lactations. In the Brown Swiss, ${\kappa}$-casein phenotype was associated with 305-day fat yield and protein yield during the first lactation. ${\kappa}$-Casein AB was associated with higher milk, fat and protein yield during the second lactation. During the third lactation, ${\beta}$-lactoglobulin AA in Canadienne cows was associated with higher protein content in the milk (3.70%) when compared to phenotypes AB (3.54%) and BB (3.64%).

PCR 기법을 이용한 축우의 β-lactoglobulin 및 κ-casein 유전자형 분석에 관한 연구 (Study on the Analysis of β-lactoglobulin and κ-casein Genotypes of Cattle using Polymerase Chain Reaction)

  • 상병찬;류승희;이상훈;송치은;남명수;전병순
    • 농업과학연구
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    • 제25권2호
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    • pp.216-224
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    • 1998
  • 본 연구는 축협중앙회 한우개량부에서 사육 중인 한우 암소 253두와 축산기술연구소에서 사육 중인 Holstein 113두의 혈액으로 부터 genomic DNA를 추출하고, PCR-RFLP기법에 의해 ${\beta}$-lactoglobulin과 ${\kappa}$-casein 유전자좌위의 유전적 다형을 분석하여 한우와 유우 집단에 대한 이들 유전자의 유전적 구조를 분석함으로써 한우와 유우 개량을 위한 기초 및 응용자료를 제공하고자 실시하였던 바 얻어진 결과를 요약하면 다음과 같다. 1. 한우와 Holstein종의 genomic DNA로 부터 PCR기법을 이용하여 ${\beta}$-lactoglobulin 과 ${\kappa}$-casem의 유전자좌를 증폭한 결과 각각 530bp와 262bp의 단편이 증폭되었음을 확인하였다. 2. ${\beta}$-lactoglobulin 증폭 산물에 대한 Hae III 제한효소의 처리결과, ${\beta}$-lactoglobulin AA형은 153bp와 109bp의 단편을, AB형은 153bp, 109bp, 79bp 및 74bp의 단편을, 그리고 BB형은 109bp, 79bp 및 74bp의 단편을 나타내었다. 3. ${\kappa}$-casein 유전자좌의 증폭산물에 대한 Taq I의 제한효소 처리결과, ${\kappa}$-casein AA형은 530bp의 단편을, AB형은 530bp, 344bp 및 186b의 단편을, 그리고 BB형은 344bp 및 186mp의 단편을 나타내었다. 4. ${\beta}$-lactoglobulin의 유전자형 및 유전자 빈도에 있어서, 한우의 ${\beta}$-lactoglobulin AA, AB 및 BB 유전자형 의 빈도는 각각 6.72, 26.09 및 67.19%이었으며, ${\beta}$-lactoglobulin A 및 B 유전자 빈도는 각각 0.197 및 0.803이었고, Holstein종의 ${\beta}$-lactoglobulin AA, AB 및 BB 유전자형 빈도는 각각 35.40, 56.64 및 7.96%이었으며, ${\beta}$-lactoglobulin A 및 B 유전자 빈도는 각각 0.637 및 0.363이었다. 5. ${\kappa}$-casein의 유전자형 및 유전자 빈도에 있어서, 한우의 ${\kappa}$-casein AA, AB 및 BB 유전자형의 빈도는 각각 46.25, 39.13 및 14.62%이었으며, K-casein A 및 B 유전자 빈도는 각각 0.658 및 0.342이었고, Holstein종의 ${\kappa}$-casein AA, AB 및 BB유전자형 빈도는 각각 60.18, 38.94 및 0.88%이었고, ${\kappa}$-casein A 및 B 유전자 빈도는 각각 0.796 및 0.204 이었다. 6. 이상의 결과로써 ${\beta}$-lactoglobulin과 ${\kappa}$-casein의 유전자 빈도는 한우에서 ${\beta}$-lactoglobulin A 및 B 대립 유전자 빈도는 각각 0.197 및 0.803이었고 ${\kappa}$-casein A 및 B 대립유전자 빈도는 각각 0.658 및 0.342이었다. 그러나 Holstein 종에서는 ${\beta}$-lactoglobulin A 및 B 대립 유전자 빈도는 0.637 및 0.363이었고, ${\kappa}$-casein A 및 B 대립유전자 빈도는 각각 0.796 및 0.204이었다.

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PCR 기법을 이용한 한국재래산양 β-casein 유전자의 특성 (Characteristics of β-casein Gene using the PCR Technique in Korean Native Goat)

  • 김지애;류승희;유성란;이준헌;서길웅;김선균;상병찬
    • 농업과학연구
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    • 제29권2호
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    • pp.43-52
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    • 2002
  • 본 연구는 한국 재래 산양 112두와 유산양인 Saanen종 7두의 혈액으로부터 genomic DNA를 추출하고, PCR-RFLP 방법에 의해 $\beta$-casein 유전자의 특성을 분석하여 한국재래산양의 효율적인 유전자원의 보존 및 개량을 위한 기초 자료로 제공하고자 실시하였다. 한국재래산양의 genomic DNA로부터 PCR기법을 이용하여 $\beta$-casein의 유전자좌를 증폭한 결과 각각 481bp 크기의 단편이 양호하게 증폭되었음을 확인하였다. $\beta$-casein 유전자 좌의 증폭산물에 대한 Bal I의 제한효소를 처리한 결과, $\beta$-casein AB형은 481bp, 284bp 및 197bp의 단편을, 그리고 BB형은 284bp와 197bp의 단편을 한국재래산양과 유산양인 Saanen 종에서 확인 할 수 있었다. 유전자형 빈도에 있어서는 한국재래산양에서 $\beta$-casein AB 및 BB의 빈도는 각각 6.25 및 93.75%이었고, 유산양인 Saanen 종은 각각 57.14 및 42.86%이었다. 유전자빈도에 있어서는 한국재래산양의 $\beta$-casein A 및 B의 빈도가 각각 0.031 및 0.969이었고, Saanen 종에서는 각각 0.286 및 0.714의 빈도를 보였다. 한국재래산양의 $\beta$-casein 유전자의 염기서열과 이미 보고되어 있는 goat의 염기서열(GeneBank accession Number M90556)간에는 총 11개의 염기서열에 차이를 나타내어 97.71%의 상동성을 보였다. 따라서 한국재래산양의 $\beta$-casein 유전자의 다형성과 염기서열 분석에 의한 분자유전학적 특성의 규명은 한국재래산양의 유전자원의 보존 및 개량을 위한 기초 및 응용 자료로 이용될 수 있을 것으로 생각된다.

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