• Title/Summary/Keyword: IMP

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Indentification of IMP in the Muscle of the Ascidian Halocynthia roretzi and Changes of ATP Breakdown Products during Storage (우렁쉥이 Halocynthia roretzi 근육중 IMP의 분포확인 및 저장중 ATP분해생성물의 변화)

  • PARK Choon-Kyu;KIM Woo-Jun;KANG Hoon-I;KANG Tae-Jung;SHIN Suk-Woo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.27 no.2
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    • pp.140-148
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    • 1994
  • Indentification of IMP was carried out and changes in ATP breakdown products during storage at $0^{\circ}C\;ad\;20^{\circ}C$ were investigated in the muscles of ascidian Halocynthia roretzi. For identifying IMP, the ion-exchange column chromatographic method was applied to the perchloric acid extract of the muscle of cultured ascidian collected at the southern coast near Chungmu of Korea in April 1989. The IMP of sample was eluted a little earlier than that of the reference standard, but absorption spectra of both fractions agreed each other. In addition, both fractions gave the identical retention time of HPLC. These results reconfirmed that the ascidian muscle did contain IMP, indicating that ATP was degraded through IMP breakdown pathway, such as $ATP{\to}ADP{\to}AMP{\to}IMP{\to}Ino{\to}Hyp$. Ado was detected in some samples and IMP was detected throughout the experimental periods at both temperatures, but their levels were always very low; they did not increase significantly even when the decreasing rate of AMP was very rapid and concomitant remarkable increase in Ino were observed at the early stage of storage. Those changes in ATP suggest that AMP deaminase activity was present in the ascidian muscle, though it was very low. The main breakdwon pathway of ATP was assumed to be $ATP{\to}ADP{\to}AMP{\to}Ado{\to}Ino{\to}Hyp$. In conclusion, there were two breakdown pathways of ATP in the muscle of ascidian as was the case for the muscle of many marine crustaceans.

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Underlying mechanisms of phosphodiesterase 10A and glutamate-ammonia ligase genes that regulate inosine monophosphate deposition and thereby affect muscle tenderness in Jingyuan chickens

  • Wang, Weizhen;Zhang, Juan;Hu, Honghong;Yu, Baojun;He, Jintong;Yao, Tingting;Gu, Yaling;Cai, Zhengyun;Xin, Guosheng
    • Animal Bioscience
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    • v.35 no.11
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    • pp.1771-1786
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    • 2022
  • Objective: Inosine monophosphate (IMP) is a key factor that imparts of meat flavor. Differences in the IMP content in the muscles were evaluated to improve chicken meat quality. Methods: For this study, the IMP content was detected by high performance liquid chromatography. The gene expression profiles of Jingyuan chickens with different feeding patterns and different sexes were analyzed by RNA-sequencing (RNA-seq). Results: Breast muscle IMP content in free-range chickens was extremely significantly higher than that of caged chickens (p<0.01). Breast muscle IMP content in hens was also higher than that of cocks, but the difference was not significant. Correlation analysis showed that the breast muscle IMP content in caged hens and cocks was negatively correlated with the shear force, and the breast muscle IMP content in free-range hens was significantly negatively correlated with the shear force (p<0.05). The two key genes associated with IMP synthesis in chickens with different feeding patterns were glutamate-ammonia ligase (GLUL) and phosphodiesterase 10A (PDE10A). Bioinformatics analysis revealed that the GLUL and PDE10A genes are involved in glutamine biosynthesis and purine salvage pathways respectively. In addition, GLUL expression was positively correlated with the IMP content in caged and free-range chickens, and PDE10A expression was significantly positively correlated with the IMP content in caged and free-range chickens (p<0.05). Conclusion: These findings will facilitate the comprehension of the deposition of IMP in the muscles and thereby aid the process of selection and breeding of good quality local chickens.

Lin28 and Imp are Required for Stability of Bowl Transcripts in Hub Cells of the Drosophila Testis

  • To, Van;Kim, Hyun Ju;Jang, Wijeong;Sreejith, Perinthottathil;Kim, Changsoo
    • Development and Reproduction
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    • v.25 no.4
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    • pp.313-319
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    • 2021
  • Hub cells comprise a niche for germline stem cells and cyst stem cells in the Drosophila testis. Hub cells arise from common somatic gonadal precursors in embryos, but the mechanism of their specification is still poorly understood. Here we find that RNA binding proteins Lin28 and Imp mediate transcript stability of Bowl, a known hub specification factor; Bowl transcripts were reduced in the testis of Lin28 and Imp mutants, and also when RNA-mediated interference against Lin28 or Imp was expressed in hub cells. In tissue culture Luciferase assays involving the Bowl 3'UTR, stability of Luc reporter transcripts depended on the Bowl 3'UTR and required Lin28 and Imp. Our findings suggest that proper Bowl function during hub cell specification requires Lin28 and Imp in the testis hub cells.

Production of 5-IMP by Auxotroph of Brevibacterium ammoniagenes (Brevibacterium ammoniagenes의 영양구성 변리주에 의한 5 -IMP 생성)

  • 이별나
    • The Korean Journal of Food And Nutrition
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    • v.1 no.2
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    • pp.37-42
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    • 1988
  • In attempts to obtain IMP Producting strains, Brevibacterium ammoniagenes ATCC 6872 was treated wilts N.1.6. Adenine-guanine requiring mutants were obtained from Brevibacterium ammoniagenes ATCC 6872, and then a strain of them was selected for production of IMP and named Brevibacterium ammoniagenes No.9(ade', gu'). The production of IMP by Brevibacterium ammoniagenes nuts No.9 was about 3mg/ml for 4 day of culture. The optimal concentration of adenine and guanine was 150mg/mg.

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Chemosensitizing effect and mechanism of imperatorin on the anti-tumor activity of doxorubicin in tumor cells and transplantation tumor model

  • Liang, Xin-li;Ji, Miao-miao;Liao, Zheng-gen;Zhao, Guo-wei;Tang, Xi-lan;Dong, Wei
    • The Korean Journal of Physiology and Pharmacology
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    • v.26 no.3
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    • pp.145-155
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    • 2022
  • Multidrug resistance of tumors has been a severe obstacle to the success of cancer chemotherapy. The study wants to investigate the reversal effects of imperatorin (IMP) on doxorubicin (DOX) resistance in K562/DOX leukemia cells, A2780/Taxol cells and in NOD/SCID mice, to explore the possible molecular mechanisms. K562/DOX and A2780/Taxol cells were treated with various concentrations of DOX and Taol with or without different concentrations of IMP, respectively. K562/DOX xenograft model was used to assess anti-tumor effect of IMP combined with DOX. MTT assay, Rhodamine 123 efflux assay, RT-PCR, and Western blot analysis were determined in vivo and in vitro. Results showed that IMP significantly enhanced the cytotoxicity of DOX and Taxol toward corresponding resistance cells. In vivo results illustrated both the tumor volume and tumor weight were significantly decreased after 2-week treatment with IMP combined with DOX compared to the DOX alone group. Western blotting and RT-PCR analyses indicated that IMP downregulated the expression of P-gp in K562/DOX xenograft tumors in NOD/SCID mice. We also evaluated glycolysis and glutamine metabolism in K562/DOX cells by measuring glucose consumption and lactate production. The results revealed that IMP could significantly reduce the glucose consumption and lactate production of K562/DOX cells. Furthermore, IMP could also remarkably repress the glutamine consumption, α-KG and ATP production of K562/DOX cells. Thus, IMP may sensitize K562/DOX cells to DOX and enhance the antitumor effect of DOX in K562/DOX xenograft tumors in NOD/SCID mice. IMP may be an adjuvant therapy to mitigate the multidrug resistance in leukemia chemotherapy.

Generation and Expression in Plants of a Single-Chain Variable Fragment Antibody Against the Immunodominant Membrane Protein of Candidatus Phytoplasma Aurantifolia

  • Shahryari, F.;Safarnejad, M.R.;Shams-Bakhsh, M.;Schillberg, S.;Nolke, G.
    • Journal of Microbiology and Biotechnology
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    • v.23 no.8
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    • pp.1047-1054
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    • 2013
  • Witches' broom of lime is a disease caused by Candidatus Phytoplasma aurantifolia, which represents the most significant global threat to the production of lime trees (Citrus aurantifolia). Conventional disease management strategies have shown little success, and new approaches based on genetic engineering need to be considered. The expression of recombinant antibodies and fragments thereof in plant cells is a powerful approach that can be used to suppress plant pathogens. We have developed a single-chain variable fragment antibody (scFvIMP6) against the immunodominant membrane protein (IMP) of witches' broom phytoplasma and expressed it in different plant cell compartments. We isolated scFvIMP6 from a naïve scFv phage display library and expressed it in bacteria to demonstrate its binding activity against both recombinant IMP and intact phytoplasma cells. The expression of scFvIMP6 in plants was evaluated by transferring the scFvIMP6 cDNA to plant expression vectors featuring constitutive or phloem specific promoters in cassettes with or without secretion signals, therefore causing the protein to accumulate either in the cytosol or apoplast. All constructs were transiently expressed in Nicotiana benthamiana by agroinfiltration, and antibodies of the anticipated size were detected by immunoblotting. Plant-derived scFvIMP6 was purified by affinity chromatography, and specific binding to recombinant IMP was demonstrated by enzyme-linked immunosorbent assay. Our results indicate that scFvIMP6 binds with high activity and can be used for the detection of Ca. Phytoplasma aurantifolia and is also a suitable candidate for stable expression in lime trees to suppress witches' broom of lime.

Effects of Dietary Supplementation with Nucleotide on Growth Performance, Feed Utilization, and Non-Specific Immune Responses of Nile Tilapia Oreochromis niloticus (사료 내 nucleotide 첨가가 틸라피아(Oreochromis niloticus)의 성장, 사료효율 및 비특이적 면역력에 미치는 영향)

  • Song, Jin-Woo;Lim, Se-Jin;Oh, Dae-Han;Cha, Ji-Hoon;Lee, Kyeong-Jun
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.45 no.6
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    • pp.648-653
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    • 2012
  • The present study examined the effects of dietary supplementation with nucleotide (inosine monophosphate product, IMP) on the growth performance, feed utilization, and non-specific immune responses of juvenile tilapia Oreochromis niloticus. Triplicate groups of tilapia (initial body weight, $7.4{\pm}0.04$ g) were fed experimental diets containing 0%, 0.05%, 0.1%, and 0.2% IMP. Fish were fed six times a day until apparent satiation for 13 weeks. At the end of the feeding trial, final body weight and food utilization of fish fed 0.1% IMP were significantly higher than those of fish fed the control diet. Results of hematological parameters were not affected by dietary IMP. However, blood protein level was significantly higher in the 0.05% treatment, as compared to that of the control and 0.2% IMP diets. Myeloperoxidase activity was higher in fish fed 0.1% IMP than in fish fed the control and 0.2% IMP diets. These results suggest that dietary supplementation with IMP can enhance the growth performance, feed utilization, and innate immune response of juvenile tilapia. The optimal IMP supplementation level appears to be 0.1% in practical feed formulations for tilapia.

Factors Affecting the Inosine Monophosphate Content of Muscles in Taihe Silkies Chickens

  • Chen, G.H.;Li, H.F.;Wu, X.S.;Li, B.C.;Xie, K.Z.;Dai, G.J.;Chen, K.W.;Zhang, X.Y.;Wang, K.H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.15 no.9
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    • pp.1359-1363
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    • 2002
  • In this paper, changes in the concentration of inosine monophosphate (IMP) of muscles in Taihe Silkies chickens from 2 to 28 weeks of age were studied. The results showed that: (1) with increasing age, IMP content of muscles decreased continuously. (2) the relationship between body weight and IMP content of musculus pectoralis major was significantly negative (p<0.01), so was body weight and IMP content of musculus peronaeus, and their coefficients of correlation were -0.45, -0.38 respectively; the relationship between IMP contents of musculus pectoralis major and that of musculus peronaeus was more significantly positive (p<0.01), and its coefficient of correlation was 0.59. (3) by multiple regression analysis, changes of IMP content of muscles depended on the weeks of age and body weight. (4) from 2 to 28 weeks of age, the heritabilities of IMP content of musculus pectoralis major were calculated between 0.33-0.48, and those of musculus peronaeus were calculated between 0.51-0.69.

A Rapid Method for Determination of ATP and Its Related Compounds in Dried Fish and Shellfish Products Using HPLC (HPLC에 의한 시판수산건제품의 ATP분해생성물의 신속정량법)

  • LEE Eung-Ho;KOO Jae-Geun;AHN Chang-Bum;CHA Yong-Jun;OH Kwang-Soo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.17 no.5
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    • pp.368-372
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    • 1984
  • This paper deals with a rapid method for determination of ATP and its related compounds in fish and shellfish products using high performance liquid chromatography(HPLC). The HPLC used is a HPLC/ALC-224 equiped with UV-spectrophotometer (254 nm) as detector and integrator (Yanagimoto system-1000). The column used is a stainless steel tubing ($30.0\;cm{\times}3.9\;mm\;i.d.$) packed with ${\mu}-Bon-dapak\;C_{18}$. A mixture of $1\%$ triethylamine-phosphoric acid(pH6.5) was used as an eluent and the flow rate of the eluent was controlled at 2 ml/min. For the separation of ATP and its related compounds, a standard mixture of ATP, ADP, AMP, IMP, inosine and hypoxanthine was subjected to HPLC under the above mentioned conditions. Six peaks were obtained with retention times within 20 min, and elution order were hypoxanthine, IMP, inosine, AMP, ADP and ATP. But 5'-IMP and 5'-GMP fractions were not separated by this method. In generally, IMP content in boiled-dried fish and shellfish products purchased from the market was comparatively higher than that of other nucleotides. Especially, boiled-dried big eye herring marked higher value in IMP content than other boiled-dried ones. Hypoxanthine and inosine were major components of ATP-related compounds in dried products and seasoned-dried ones. And IMP content in seasoned-dried products was higher than that of dried ones. This fact is suggested that a part of IMP in seasoned-dried ones was derived from flavoring matter (MSG, 5'-IMP and 5'-GMP) which is added during the seasoning treatment.

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Molecular Epidemiology of Metallo-β-lactamase Producing Pseudomonas aeruginosa Clinical Isolates (임상에서 분리된 Metallo-β-lactamase 생성 Pseudomonas aeruginosa의 분자역학)

  • Choi, Myung-Won
    • Journal of Life Science
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    • v.22 no.9
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    • pp.1268-1276
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    • 2012
  • The emergence and dissemination of carbapenem-resistant bacteria have resulted in limitations of antibiotic treatment and potential outbreaks of metallo-${\beta}$-lactamase (MBL) producing Pseudomonas aeruginosa resistant to carbapenems. In this study, we conducted molecular characterization of the MBL genes of the ${\beta}$-lactam drug-resistant P. aeruginosa and prepared basic data for treatment and prevention of proliferation of antimicrobial-resistant bacterial infections. Forty-two P. aeruginosa isolates of 254 were resistant to imipenem or meropenem. Among the 42 isolates, 28 isolates were positive for the Hodge test, and 23 isolates were positive for the EDTA-disk synergy test (EDST). MBLs were detected in 59.5% (25/42) of P. aeruginosa isolates. Eight isolates harbored $bla_{IMP-6}$, whereas 17 isolates harbored $bla_{VIM-2}$. The $bla_{IMP-6}$ gene was in a class 1 integron containing five gene cassettes: $bla_{IMP-6}$, qac, aacA4, $bla_{OXA-1}$, and aadA1. Some strains that produce IMP-6 and VIM-2 showed epidemiological relationships. The $bla_{IMP-6}$ gene in carbapenem-resistant P. aeruginosa showed an identical pattern to a gene cassette that was reported at a hospital in Daegu, Korea. Therefore, MBL-producing P. aeruginosa is already endemic in the community. We are concerned that the existence of carbapenem-resistant bacteria containing the blaMBL gene may increase pressure on antibiotic selection when treating infections. We believe that we should select appropriate antibiotics based on the antibiotic susceptibility test and continue the research to prohibit the emergence and spread of antibiotics resistant bacteria.