• 제목/요약/키워드: tryptophan metabolism

검색결과 39건 처리시간 0.029초

Effect of black soldier fly larvae as substitutes for fishmeal in broiler diet

  • Seyeon Chang;Minho Song;Jihwan Lee;Hanjin Oh;Dongcheol Song;Jaewoo An;Hyunah Cho;Sehyun Park;Kyeongho Jeon;Byoungkon Lee;Jeonghun Nam;Jiyeon Chun;Hyeunbum Kim;Jinho Cho
    • Journal of Animal Science and Technology
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    • 제65권6호
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    • pp.1290-1307
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    • 2023
  • This study investigated the effect of processed forms (defatted or hydrolyzed) of black soldier fly larvae (Hermetia illucens L., BSFL) as a protein substitute on broilers. Experiment 1 was a feeding experiment, and Experiment 2 was a metabolism experiment. In Experiment 1, a total of 120 day-old Arbor Acres broilers (initial body weight 39.52 ± 0.24 g) were used for 28 days. There were 8 replicate pens, and 5 broilers were assigned to each pen. In Experiment 2, a total of 36 day-old broilers (initial body weight 39.49 ± 0.21 g) were used for the metabolism trial. There were 2 broilers in a metabolism cage and six replicate cages per treatment. The dietary treatments were as follows: a basal diet (CON), a basal diet without fishmeal and substitute with defatted BSFL (T1), a basal diet without fishmeal and a substitute with hydrolyzed BSFL (T2). In Experiment 1, during the entire experimental period, the T2 group significantly increased (p < 0.05) body weight gain and feed intake compared to the CON and T1 groups. The feed conversion ratio showed a lower tendency (p = 0.057) in the T2 group than in the CON and T1 groups. At 2 weeks, the CON and T2 groups were significantly higher (p < 0.05) crude protein (CP) digestibility than the T1 group. At 4 weeks, the total protein level significantly increased (p < 0.05) in the CON and T2 groups compared to the T1 group. In Experiment 2, the CP digestibility significantly increased (p < 0.05) in the T2 group compared to the CON and T1 group at weeks 2 and 4. At week 4 amino acid digestibility, the T2 group significantly increased (p < 0.05) lysine, methionine, tryptophan, and glycine digestibility compared to the T1 group. There was no difference in fecal microbiota among the treatment groups. In conclusion, feeding hydrolyzed BSFL as a fishmeal substitute in broiler diets improved growth performance, CP digestibility, and specific amino acid digestibility. Therefore, it is considered that hydrolyzed BSFL in broiler diets can be sufficiently used as a new protein source.

Metabolomics Analysis of the Beef Samples with Different Meat Qualities and Tastes

  • Jeong, Jin Young;Kim, Minseok;Ji, Sang-Yun;Baek, Youl-Chang;Lee, Seul;Oh, Young Kyun;Reddy, Kondreddy Eswar;Seo, Hyun-Woo;Cho, Soohyun;Lee, Hyun-Jeong
    • 한국축산식품학회지
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    • 제40권6호
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    • pp.924-937
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    • 2020
  • The purpose of this study was to investigate the meat metabolite profiles related to differences in beef quality attributes (i.e., high-marbled and low-marbled groups) using nuclear magnetic resonance (NMR) spectroscopy. The beef of different marbling scores showed significant differences in water content and fat content. High-marbled meat had mainly higher taste compounds than low-marbled meat. Metabolite analysis showed differences between two marbling groups based on partial least square discriminant analysis (PLS-DA). Metabolites identified by PLS-DA, such as N,N-dimethylglycine, creatine, lactate, carnosine, carnitine, sn-glycero-3-phosphocholine, betaine, glycine, glucose, alanine, tryptophan, methionine, taurine, tyrosine, could be directly linked to marbling groups. Metabolites from variable importance in projection plots were identified and estimated high sensitivity as candidate markers for beef quality attributes. These potential markers were involved in beef taste-related pathways including carbohydrate and amino acid metabolism. Among these metabolites, carnosine, creatine, glucose, and lactate had significantly higher in high-marbled meat compared to low-marbled meat (p<0.05). Therefore, these results will provide an important understanding of the roles of taste-related metabolites in beef quality attributes. Our findings suggest that metabolomics analysis of taste compounds and meat quality may be a powerful method for the discovery of novel biomarkers underlying the quality of beef products.

Ursolic acid improves the indoxyl sulfate-induced impairment of mitochondrial biogenesis in C2C12 cells

  • Sasaki, Yutaro;Kojima-Yuasa, Akiko;Tadano, Hinako;Mizuno, Ayaka;Kon, Atsushi;Norikura, Toshio
    • Nutrition Research and Practice
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    • 제16권2호
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    • pp.147-160
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    • 2022
  • BACKGROUND/OBJECTIVES: Patients with chronic kidney disease (CKD) have a high concentration of uremic toxins in their blood and often experience muscle atrophy. Indoxyl sulfate (IS) is a uremic toxin produced by tryptophan metabolism. Although an elevated IS level may induce muscle dysfunction, the effect of IS on physiological concentration has not been elucidated. Additionally, the effects of ursolic acid (UA) on muscle hypertrophy have been reported in healthy models; however, it is unclear whether UA ameliorates muscle dysfunction associated with chronic diseases, such as CKD. Thus, this study aimed to investigate whether UA can improve the IS-induced impairment of mitochondrial biogenesis. MATERIALS/METHODS: C2C12 cells were incubated with or without IS (0.1 mM) and UA (1 or 2 μM) to elucidate the physiological effect of UA on CKD-related mitochondrial dysfunction and its related mechanisms using real-time reverse transcription-polymerase chain reaction, western blotting and enzyme-linked immunosorbent assay. RESULTS: IS suppressed the expression of differentiation marker genes without decreasing cell viability. IS decreased the mitochondrial DNA copy number and ATP levels by downregulating the genes pertaining to mitochondrial biogenesis (Ppargc1a, Nrf1, Tfam, Sirt1, and Mef2c), fusion (Mfn1 and Mfn2), oxidative phosphorylation (Cycs and Atp5b), and fatty acid oxidation (Pdk4, Acadm, Cpt1b, and Cd36). Furthermore, IS increased the intracellular mRNA and secretory protein levels of interleukin (IL)-6. Finally, UA ameliorated the IS-induced impairment in C2C12 cells. CONCLUSIONS: Our results indicated that UA improves the IS-induced impairment of mitochondrial biogenesis by affecting differentiation, ATP levels, and IL-6 secretion in C2C12 cells. Therefore, UA could be a novel therapeutic agent for CKD-induced muscle dysfunction.

Microbiota, co-metabolites, and network pharmacology reveal the alteration of the ginsenoside fraction on inflammatory bowel disease

  • Dandan Wang;Mingkun Guo;Xiangyan Li;Daqing Zhao;Mingxing Wang
    • Journal of Ginseng Research
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    • 제47권1호
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    • pp.54-64
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    • 2023
  • Background: Panax ginseng Meyer (P. ginseng) is a traditional natural/herbal medicine. The amelioration on inflammatory bowel disease (IBD) activity rely mainly on its main active ingredients that are referred to as ginsenosides. However, the current literature on gut microbiota, gut microbiota-host co-metabolites, and systems pharmacology has no studies investigating the effects of ginsenoside on IBD. Methods: The present study was aimed to investigate the role of ginsenosides and the possible underlying mechanisms in the treatment of IBD in an acetic acid-induced rat model by integrating metagenomics, metabolomics, and complex biological networks analysis. In the study ten ginsenosides in the ginsenoside fraction (GS) were identified using Q-Orbitrap LC-MS. Results: The results demonstrated the improvement effect of GS on IBD and the regulation effect of ginsenosides on gut microbiota and its co-metabolites. It was revealed that 7 endogenous metabolites, including acetic acid, butyric acid, citric acid, tryptophan, histidine, alanine, and glutathione, could be utilized as significant biomarkers of GS in the treatment of IBD. Furthermore, the biological network studies revealed EGFR, STAT3, and AKT1, which belong mainly to the glycolysis and pentose phosphate pathways, as the potential targets for GS for intervening in IBD. Conclusion: These findings indicated that the combination of genomics, metabolomics, and biological network analysis could assist in elucidating the possible mechanism underlying the role of ginsenosides in alleviating inflammatory bowel disease and thereby reveal the pathological process of ginsenosides in IBD treatment through the regulation of the disordered host-flora co-metabolism pathway.

인삼종자형성에 대한 생리화학적 연구 IV. 고려인삼과 미국인삼 및 고려인삼과 죽절인삼 $F_1$의 화기 및 종자 형성과정에 있어서의 유리아미노산의 소장 (Studies on the Physiological Chemistry of Flower Organ and Seed in Ginseng Plant. IV. Variation of Free Amino Acids in the Flower and Seeds of the $F_1$ Plants of the Combinations Panax ginseng ${\times}$ Panax quinquefolium and Panax ginseng ${\times}$ Panax japonicus.)

  • 황종규;양희천
    • 한국작물학회지
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    • 제14권
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    • pp.165-172
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    • 1973
  • 종간, 속간의 잡종에서는 흔히 불임현상이 일어나는데 인삼의 경우도 예외가 아니어서 고려인삼(panax ginseng: P.G.)과 미국인삼(panax quinquefolium: P. Q.) 그리고 죽절인삼(Panax japonicus: P.J) 간의 교잡육종에서 P.G.${\times}$P.J.에서만 아주 희귀하게 종자를 얻을수 있고 다른 종합에서는 전혀 잡종 제이세대를 얻을 수가 없었다고 하므로 본실험에서는 P.G.${\times}$P.Q.와 P.G.${\times}$P.J.의 교잡종의 화기 및 종자형성중의 유리아미노산의 소장을 추구함으로서 불임현상과 물질대사와의 관련성의 일단을 밝히고저 한다. 1. 두 교잡종의 시료에서 검출된 유리아미노산의 Chromatogram은 서로 유사한 pattern을 나타냈으며 그들의 양친이 나타내는 pattern과 유사하나 spot의 종류나 크기 정색도는 여러 가지 점에서 특이한 변화가 있다. P.G.${\times}$P.Q.에서 19종, P.G.${\times}$P.J.에서는 21종의 spot을 검출하였는데 전자에서 Alanine, Valine, Leucine, Phenyl alanine, Proline, Hydroxy proline, Serine, Threonine, Tyrosine, Aspartic acid, Glutamic acid, Lysine, Arginine, ${\beta}$-Alanine, Cysteic acid, Tryptophan, Asparagine, Glutamine, ${\gamma}$-Amino butyric acid를 확인하고 후자의 경우는 상기한 것 외에 Methionine과 한 개의 미지 spot를 얻었다. 2. Alanine, Aspartic acid, Glutamic acid, Cysteic acid와 Asparagine이 전체적으로 보아 주체를 이루고 있는 것은 P.G. P.Q. P.J에서와 같으나 Asparagine이 소포자기와 화분성숙기에 최다량으로 나타나는 것은 이들의 양친의 경우에는 보지 못했던 특이한 일이다. 3. 홍숙기에 Cysteic acid가 감소되는 것은 P.Q. P.J.의 경우와는 유사하나 P.G의 경우와는 반대되는 현상이며 P.G.${\times}$P.J.에서 Methionine이 검출된 것도 특이하다. 4. Proline은 그들의 양친의 경우와는 현저한 차이가 있었는데 소포자기에서 아주 미약한 정색을 나타낼뿐이며 이 때에 Asparagine의 spot가 가장 크고 강한 정색을 나타내었는데 이제까지의 여러 연구 결과를 종합해 보면 Proline의 양과 화분의 임성과는 아주 밀접한 관계가 있으며 이런 관계가 인삼 종자 형성에서도 나타나고 있다. 또한 Proline이 결핍될 때 Asparagine의 축적이 있다는 많은 보고도 있다. 5. 교잡종에서의 결실불능의 원인을 Proline의 과소에 의한 것으로 보며 Proline이 약의 화분퇴화와 중요한 관계를 가지고 있을 것으로 추찰된다. 6. 그밖에 여러 아미노산의 소장이 P.G. P.Q. P.J. 등의 자식계와 그들과의 잡종사이에 있어서 상당한 차이가 생기는 것은 교잡에 의한 Gene-action system의 변혁에 따른 결과라고 추찰되는 것으로 Proline의 대사 및 생리적 영향과 더불어 보다 깊은 조사가 필요한 것으로 생각된다.

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종자내 아미노산 합성 조절 유전자에 관한 연구 (Amino Acid Biosynthesis and Gene Regulation in Seed)

  • 임용표;서미정;조수진;이정희;이효연
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1996년도 제10회 식물생명공학심포지움 고등식물 발생생물학의 최근 진보
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    • pp.61-74
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    • 1996
  • Human and monogastric animals can not synthesize 10 out of the 20 amino asids and therefor need to obtain these from their diet. The plant seed is a major source of dietary protein. It is particular important in their study to increase nutritional quality of the seed storage proteins. The low contents of lysine, asparagine and threonenein various cereal seeds and of cystein and methionine. In legume seeds is due to the low proportions of these amino acids in the major storage proteins, we have tried to apply the three strategies; (1) mutagenesis and selection of specific amino acid analogue resistance, (2) cloning and expression study of lysine biosynthesis related gene, (3) transfomation of lysine rich soybean glycinin gene. The 5-methyltryptophan (5MT) resistant cell lines, SAR1, SAR2 and SAR3 were selected from anther derived callus of rice (Oryza sativa L. "Sasanishiki"). Among these selected cell lines, two (SAR1 and SAR3) were able to grow stably at 200 mg/L of 5MT. Analysis of the freed amino acids in callus shows that 5MT resistant cells (SAR3) accumulated free tryptophan at least up to 50 times higher than those that of the higher than of SAS. These results indicated that the 5MT resistant cell lines are useful in studies of amino acid biosynthesis. Tr75, a rice (Oryza sativa L., var. Sasanishiki) mutant resistant to 5MT was segregated from the progenies of its initial mutant line, TR1. The 5MT resistant of TR75 was inherited in the M8 generations as a single dominant nuclear gene. The content of free amino acids in the TR75 homozygous seeds increased approximately 1.5 to 2.0 fold compared to wild-type seeds. Especially, the contents of tryptophan, phenylalanine and aspartic acid were 5.0, 5.3 and 2.7 times higher than those of wild-type seeds, respectively. The content of lysine is significantly low in rice. The lysine is synthesized by a complex pathway that is predominantly regulated by feedback inhibition of several enzymes including asparginase, aspatate kinase, dihydrodipicolinat synthase, etc. For understanding the regulation mechanism of lysine synthesis in rice, we try to clone the lysine biosynthetic metabolism related gene, DHPS and asparaginase, from rice. We have isolated a rice DHPS genomic clone which contains an ORF of 1044 nucleotides (347 amino acids, Mr. 38, 381 daltons), an intron of 587 nucleotides and 5'and 3'-flanking regions by screening of rice genomic DNA library. Deduced amino acid sequence of mature peptide domain of GDHPS clone is highly conserved in monocot and dicot plants whereas that of transit peptide domain is extremely different depending on plant specie. Southern blot analysis indicated that GDHPS is located two copy gene in rice genome. The transcripts of a rice GDHPS were expressed in leaves and roots but not detected in callus tissues. The transcription level of GDHPS is much higher in leaves indicating enormous chloroplast development than roots. Genomic DNA clones for asparaginase genes were screened from the rice genomic library by using plaque hybridization technique. Twelve different genomic clones were isolated from first and second screening, and 8 of 12 clones were analyzed by restriction patterns and identified by Southern Blotting, Restriction enzyme digestion patterns and Southern blot analysis of 8 clones show the different pattern for asparaginase gene. Genomic Southern blot analysis from rice were done. It is estimated that rice has at least 2-3 copy of asparaginase gene. One of 8 positive clones was subcloned into the pBluescript SK(+) vector, and was constructed the physical map. For transformation of lysine rich storage protein into tobacco, soybean glycinin genes are transformed into tobacco. To examine whether glycinin could be stably accumulated in endosperm tissue, the glycinin cDNA was transcriptionally fused to an endosperm-specific promotor of the rice storage protein glutelin gene and then introduced into tobacco genomic via Agrobacterium-mediated transformation. Consequently the glycinin gene was expressed in a seed-and developmentally-specific manner in transgenic tobacco seeds. Glycinin were targeted to vacuole-derived protein bodies in the endosperm tissue and highly accumulated in the matrix region of many transgenic plant (1-4% of total seed proteins). Synthesized glycinin was processed into mature form, and assembled into a hexamer in a similar manner as the glycinin in soybean seed. Modified glycinin, in which 4 contiguous methionine residues were inserted at the variable regions corresponding to the C - teminal regions of the acidic and basic polypeptides, were also found to be accumulated similarly as in the normal glycinin. There was no apparent difference in the expression level, processing and targeting to protein bodies, or accumulation level between normal and modified glycinin. glycinin.

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Glutaric Aciduria Type I 1례 (A Case of Glutaric Aciduria Type I with Macrocephaly)

  • 신우종;문여옥;윤혜란;동은실;안영민
    • Clinical and Experimental Pediatrics
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    • 제46권3호
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    • pp.295-301
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    • 2003
  • 출생 이후 머리둘레가 커지는 1개월 남아에게서 뇌초음파 검사상 지주막하 공간이 확장되어 있고 백질의 음영이 증가 되어 있었고 뇌 MRI 소견은 실비우스열의 확장과 양측 대뇌, 소뇌 피질과 백질이 T1 강조 영상에서 저신호 강도와 T2 강조영상에서 고신호 강도를 보였으며 경피생검으로 얻은 섬유아세포 배양에서 glutaryl-CoA 탈수소효소의 활성도가 전혀 없어 GA1을 확진하게 되었다. 대두증이 있는 신생아나 영아에서 전측두엽 위축의 신경방사선학적 징후가 있으면 우선적으로 GA1을 의심해 보아야 한다. 이후 특수분유인 Glutatex 분유의 수유와 카르니틴, 리보플라빈 보충요법을 시행하여 대사성 위기나 급성 뇌증의 위기 없이 양호한 발달을 하고 있는 환아를 경험하였기에 보고하는 바이다.

Tat-indoleamine 2,3-dioxygenase 1 elicits neuroprotective effects on ischemic injury

  • Park, Jung Hwan;Kim, Dae Won;Shin, Min Jea;Park, Jinseu;Han, Kyu Hyung;Lee, Keun Wook;Park, Jong Kook;Choi, Yeon Joo;Yeo, Hyeon Ji;Yeo, Eun Ji;Sohn, Eun Jeong;Kim, Hyoung-Chun;Shin, Eun-Joo;Cho, Sung-Woo;Kim, Duk-Soo;Cho, Yong-Jun;Eum, Won Sik;Choi, Soo Young
    • BMB Reports
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    • 제53권11호
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    • pp.582-587
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    • 2020
  • It is well known that oxidative stress participates in neuronal cell death caused production of reactive oxygen species (ROS). The increased ROS is a major contributor to the development of ischemic injury. Indoleamine 2,3-dioxygenase 1 (IDO-1) is involved in the kynurenine pathway in tryptophan metabolism and plays a role as an anti-oxidant. However, whether IDO-1 would inhibit hippocampal cell death is poorly known. Therefore, we explored the effects of cell permeable Tat-IDO-1 protein against oxidative stress-induced HT-22 cells and in a cerebral ischemia/reperfusion injury model. Transduced Tat-IDO-1 reduced cell death, ROS production, and DNA fragmentation and inhibited mitogen-activated protein kinases (MAPKs) activation in H2O2 exposed HT-22 cells. In the cerebral ischemia/reperfusion injury model, Tat-IDO-1 transduced into the brain and passing by means of the blood-brain barrier (BBB) significantly prevented hippocampal neuronal cell death. These results suggest that Tat-IDO-1 may present an alternative strategy to improve from the ischemic injury.

북동태평양에서 형광 기법을 이용한 용존유기물의 기원 및 분포 (Sources and Distributions of Dissolved Organic Matter by Fluorescence Method in the Northeastern Pacific Ocean)

  • 손주원;손승규;주세종;김경홍;김웅서;박용철
    • Ocean and Polar Research
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    • 제29권2호
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    • pp.87-99
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    • 2007
  • This study was conducted to understand the source and behavior of organic matter using the fluorescent technique (excitation-emission matrix) as a part of environmental monitoring program in the Korea manganese nodule mining site in the Northeastern Pacific Ocean. Water samples were collected at $0^{\circ},\;6^{\circ}N$, and $10.5^{\circ}N$ along $131.5^{\circ}W$ in August 2005. The concentration of total organic carbon (TOC) ranged from 58.01 to $171.93\;{\mu}M-C$. The vertical distribution of TOC was characterized as higher in the surface layer and decreased with depth. At $6^{\circ}N$, depth-integrated (from surface to 200 m depth) TOC was $337.1\;gC/m^2$, which was 1.4 times higher value than other stations. The exponential decay curve fit of vertical profile of TOC indicated that 59% of organic carbon produced by primary production in the surface layer could be decomposed by bacteria in the water column. Dissolved organic matter is generally classified into two distinctive groups based on their fluorescence characteristics using three-dimensional excitation/emission (Ex/Em) fluorescence mapping technique. One is known as biomacromolecule (BM; protein-like substance; showing max. at Ex 280/Em 330), mainly originated from biological metabolism. The other is geomacromolecule (GM; humic-like substance; showing max. at Ex 330/Em 430), mainly originated from microbial degradation processes. The concentration of BM and GM was from 0.42 to 7.29 TU (tryptophan unit) and from 0.06 to 1.81 QSU (quinine sulfate unit), respectively. The vertical distribution of BM was similar to that of TOC as high in the surface and decreased with depth. However, the vertical distribution of GM showed the reverse pattern of that of BM. From these results, it appeared that BM occupied a major part of TOC and was rapidly consumed by bacteria in the surface layer. GM was mainly transformed from BM by microbial processes and was a dominant component of TOC in the deep-sea layer.