• Title/Summary/Keyword: serine phosphoprotein

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Functional Characterization of Phosphorylation of the Porcine Reproductive and Respiratory Syndrome Virus (PRRSV) Nucleocapsid Protein (PRRS 바이러스 Nucleocapsid 단백질 인산화의 기능학적 연구)

  • Lee, Chang-Hee
    • Microbiology and Biotechnology Letters
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    • v.37 no.3
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    • pp.287-292
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    • 2009
  • The nucleocapsid (N) protein of porcine reproductive and respiratory syndrome virus (PRRSV) is a basic multifunctional protein which has been reported to be a serine phosphoprotein with yet-identified functions. As a first step towards understanding the general role of N protein phosphorylation during virus replication, the non-phosphorylated mutant N gene was constructed by mutating all serine residues to alanine. This recombinant N protein was identified to be unphosphorylated, confirming that serine residues truly function as core amino acids responsible for N protein phosphorylation. The PRRSV N protein has been shown to possess the biological features of nuclear localization and N-N homodimerization which individually play critical roles in virus infection. In the present study, therefore, it was attempted to investigate whether these two properties of the N protein are modulated by its phosphorylation status. However, experimental results showed that the non-phosphorylated N protein was still present in the nucleus and nucleolus, and was able to associate with itself by non-covalent interactions. Taken together, the data suggest phosphorylation-independent regulation of N protein nuclear transport or oligomerization, thereby implying the potential involvement of phosphorylation in regulating the activities of the N protein at other levels including RNA-binding capacity.

Phosphorylation of the Nucleocapsid Protein of Bovine Coronavirus Expressed with a Recombinant Baculovirus Vector

  • Yoo, dongwan;Graham-J.Cox
    • Journal of Microbiology and Biotechnology
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    • v.2 no.2
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    • pp.122-128
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    • 1992
  • Post-translational modifications of the nucleocapsid protein of bovine coronavirus (Quebec strain) were investigated. Coronavirions were radiolabelled in vivo with inorganic $[^{32}P]$orthophosphate and analysed by SDS-PAGE, followed by autoradiography. A single polypeptide with a migration rate of 55 KDa was identified by metabolic phosphate labelling, demonstrating that the nucleocapsid protein of bovine coronavirus was a phosphoprotein. A gene encoding the nucleocapsid protein was inserted immediately downstream from the polyhedrin promoter of Autographa californica nuclear polyhedrosis baculovirus. Spodoptera frugiperda cells infected with this recombinant baculovirus synthesized a 55 KDa polypeptide, as demonstrated by immunoprecipitation with anti-nucleocapsid monoclonal antibody. The recombinant nucleocapsid protein synthesized in Spodoptera cells could also be labelled by $[^{32}P]$orthophosphate. Phosphoamino acid analysis showed that both serine and threonine residues were phosphorylated in authentic, as well as in recombinant nucleocapsid proteins, with a relative phosphorylation ratio of 7:3. Our studies demonstrated that the nucleocapsid protein of bovine coronavirus was a serine and threonine-phosphorylated protein and that Spodoptera insect cells were able to properly phosphorylate the relevant foreign proteins.

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Plasma Phosphoproteome and Differential Plasma Phosphoproteins with Opisthorchis Viverrini-Related Cholangiocarcinoma

  • Kotawong, Kanawut;Thitapakorn, Veerachai;Roytrakul, Sittiruk;Phaonakrop, Narumon;Viyanant, Vithoon;Na-Bangchang, Kesara
    • Asian Pacific Journal of Cancer Prevention
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    • v.16 no.3
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    • pp.1011-1018
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    • 2015
  • This study was conducted to investigate the plasma phosphoproteome and differential plasma phosphoproteins in cases of of Opisthorchis viverrini (OV)-related cholangiocarcinoma (CCA). Plasma phosphoproteomes from CCA patients (10) and non-CCA subjects (5 each for healthy subjects and OV infection) were investigated using gel-based and solution-based LC-MS/MS. Phosphoproteins in plasma samples were enriched and analyzed by LC-MS/MS. STRAP, PANTHER, iPath, and MeV programs were applied for the identification of their functions, signaling and metabolic pathways; and for the discrimination of potential biomarkers in CCA patients and non-CCA subjects, respectively. A total of 90 and 60 plasma phosphoproteins were identified by gel-based and solution-based LC-MS/MS, respectively. Most of the phosphoproteins were cytosol proteins which play roles in several cellular processes, signaling pathways, and metabolic pathways (STRAP, PANTHER, and iPath analysis). The absence of serine/arginine repetitive matrix protein 3 (A6NNA2), tubulin tyrosine ligase-like family, member 6, and biorientation of chromosomes in cell division protein 1-like (Q8NFC6) in plasma phosphoprotein were identified as potential biomarkers for the differentiation of healthy subjects from patients with CCA and OV infection. To differentiate CCA from OV infection, the absence of both serine/threonine-protein phosphatase 2A 56 kDa regulatory subunit beta isoform and coiled-coil domain-containing protein 126 precursor (Q96EE4) were then applied. A combination of 5 phosphoproteins may new alternative choices for CCA diagnosis.

Effects of Nitric Oxide Donor Supplementation on Copper Deficient Embryos and Nitric Oxide-Mediated Downstream Signaling (Nitric Oxide Donor 첨가가 구리 결핍 배아의 발달과 Nitric Oxide 하위 신호전달체계에 미치는 영향)

  • Yang, Soo-Jin
    • Journal of Nutrition and Health
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    • v.41 no.8
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    • pp.691-700
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    • 2008
  • One suggested mechanism underlying copper (Cu) deficiency teratogenicity is a low availability of nitric oxide (NO), signaling molecule which is essential in developmental processes. Increased superoxide anions secondary to decreased activities of Cu-zinc superoxide dismutase (Cu-Zn SOD) in Cu deficiency can interact with NO to form peroxynitrite, which can nitrate proteins at tyrosine residues. In addition, peroxynitrite formation can limit NO bioavailability. We previously reported low NO availability and increased protein nitration in Cu deficient (Cu-) embryos. In the current study, we tested whether Cu deficiency alters downstream signaling of NO by assessing cyclic GMP (cGMP) and phosphorylated vasodilator-stimulating phosphoprotein (VASP) levels, and whether NO supplementation can affect these targets as well as protein nitration. Gestation day 8.5 embryos from Cu adequate (Cu+) or Cu- dams were collected and cultured in either Cu+ or Cu- media for 48 hr. A subset of embryos was cultured in Cu- media supplemented with a NO donor (DETA/NONOate; 20 ${\mu}M$) and/or Cu-Zn SOD. Cu-/Cu- embryos showed a higher incidence of embryonic and yolk sac abnormalities, low NO availability, blunted dose-response in NO concentrations to increasing doses of acetylcholine, low mRNA expression of endothelial nitric oxide synthase (eNOS), increased levels of 3-nitrotyrosine (3-NT) compared to Cu+/Cu+ controls. cGMP concentrations tended to be low in Cu-/Cu- embryos, and they were significantly lower in Cu-/Cu- yolk sacs than in controls. Levels of phosphorylated VASP at serine 239 (P-VASP) were similar in all groups. NO donor supplementation to the Cu- media ameliorated embryonic and yolk sac abnormalities, and resulted in increased levels of cGMP without altering levels of P-VASP and 3-NT. Taken together, these data support the concept that Cu deficiency limits NO availability and alters NO/cGMP-dependent signaling in Cu- embryos and yolk sacs, which contributes to Cu deficiency-induced abnormal development.

Microarray Analysis of Gene Expression in RAW Cells Treated with Carthami Flos Herbal Acupuncture Solution (홍화약침액(紅花藥鍼液)이 RAW Cell 유전자발현(遺傳子發顯)에 미치는 영향(影響))

  • Kang, Seung-Beom;Kim, Jong-In;Kim, Yong-Seok;Kang, Sung-Keel;Koh, Hyung-Kyun
    • Journal of Acupuncture Research
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    • v.25 no.1
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    • pp.139-154
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    • 2008
  • 목적 : 홍화(紅花)는 활혈거어(活血祛瘀), 해독지통(解毒止痛)의 효능이 있어 관절염, 동맥경화(動脈硬化), 종양(腫瘍), 월경부조(月經不調), 뇌혈전(腦血栓)에 사용되어 왔다. 이에 홍화약침액(紅花藥鍼液)의 분자생물학적 효능 분석을 하고자 Lipopolysaccharide(LPS)로 염증을 유발한 RAW 264.7 cell의 유전자(遺傳子) 발현(發顯)에 미치는 영향을 Microarray를 통하여 관찰하였다. 방법 : RAW cell을 배양하고 홍화약침액(紅花藥鍼液)의 세포 독성을 확인한 후 (1) LPS, (2) 홍화약침액(紅花藥鍼液), (3) 홍화약침액(紅花藥鍼液)과 LPS를 처치했을 때의 유전자 발현양상을 microarray를 이용하여 관찰하였다. 대조군에 비해 2배 이상 발현의 차이가 있는 경우를 유의한 것으로 보았다. 결과 : 8,170개의 유전자 중 (1) LPS를 처치하였을 경우 35개의 유전자에서 발현이 상승되었고, (2) 홍화약침액(紅花藥鍼液)을 처치하였을 경우 11개의 유전자에서 발현이 상승되고 53개의 유전자에서 발현이 억제되었으며, (3) 홍화약침액(紅花藥鍼液)과 LPS를 동시에 처치하였을 경우에는 47개의 유전자에서 발현이 상승되었고 11개의 유전자에서 발현이 억제되었다. LPS 자극으로 발현이 상승되었지만 홍화약침액(紅花藥鍼液)을 처치할 때 발현이 억제되는 유전자는 SUMO1/sentrin specific protease 7(SENP7), Serine(or cysteine) proteinase inhibitor, clade B(ovalbumin), member 7(SERPINB7), M-phase phosphoprotein, mpp8(HSMPP8), Glycogenin 2(GYG2), InaD-like(Drosophila)(INADL), Copine III(CPNE3), Loss of heterozygosity, 11, chromosomal region 2, gene A(LOH11CR2A), Chromosome 9 open reading frame 33(SHC3), NADH dehydrogenase(ubiquinone) 1 beta subcomplex, 2, 8kDa(NDUFB2)로 9개가 있었다. 요약 : 홍화약침액(紅花藥鍼液)이 LPS로 염증을 유발시킨 RAW 264.7 cell의 유전자 발현에 미치는 영향을 Microarray를 통해 분석하였다. 홍화약침액(紅花藥鍼液)이 LPS로 발현을 항진시킨 35개의 유전자 중 9개를 효과적으로 억제하는 것을 확인하여 염증 치료 기전을 시사하는 유용한 자료를 얻을 수 있었으며 홍화약침액(紅花藥鍼液)이 발현을 항진시킨 유전자들을 통해 혈관생성과 종양억제 등 보다 넓은 범위에 대한 연구가 가능할 것으로 사료된다.

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Simultaneous Detection of Seven Phosphoproteins in a Single Lysate Sample during Oocyte Maturation Process (난자성숙 과정의 단일 시료에서 일곱 가지 인산화 단백질의 동시 분석 방법)

  • Yoon, Se-Jin;Kim, Yun-Sun;Kim, Kyeoung-Hwa;Yoon, Tae-Ki;Lee, Woo-Sik;Lee, Kyung-Ah
    • Clinical and Experimental Reproductive Medicine
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    • v.36 no.3
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    • pp.187-197
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    • 2009
  • Objective: Phosphorylation and dephosphorylation of proteins are important in regulating cellular signaling pathways. Bead-based multiplex phosphorylation assay was conducted to detect the phosphorylation of seven proteins to maximize the information obtained from a single lysate of stage-specific mouse oocytes at a time. Methods: Cumulus-oocyte complexes (COCs) were cultured for 2 h, 8 h, and 16 h, respectively to address phosphorylation status of seven target proteins during oocyte maturation process. We analyzed the changes in phosphorylation at germinal vesicle (GV, 0 h), germinal vesicle breakdown (GVBD, 2 h), metaphase I (MI, 8 h), and metaphase II (MII, 16 h in vitro or in vivo) mouse oocytes by using Bio-Plex phosphoprotein assay system. We chose seven target proteins, namely, three mitogen-activated protein kinases (MAPKs), ERK1/2, JNK, and p38 MAPK, and other 4 well known signaling molecules, Akt, GSK-$3{\alpha}/{\beta}$, $I{\kappa}B{\alpha}$, and STAT3 to measure their phosphorylation status. Western blot analysis and kinase inhibitor treatment for ERK1/2, JNK, and Akt during in vitro maturation of oocytes were conducted for the confirmation. Results: Phosphorylation of ERK1/2, JNK, p38 MAPK and STAT3 was increased over 3 folds up to 20 folds, while phosphorylation of the other three signal molecules, Akt, GSK-$3{\alpha}/{\beta}$, and $I{\kapa}B{\alpha}$ was less than 3 folds. All of these results except for Akt were statistically significant (p<0.05). Conclusion: This is the first report on the new and valuable method measuring many phosphoproteins simultaneously in one minute sample such as oocyte lysates. All of the three MAPKs, ERK1/2, JNK, and p38 MAPK are involved in the process of mouse oocyte maturation. In addition, STAT3 might be important regulator of oocyte maturation, while Akt phosphorylation at Serine 473 may not be involved in the regulation of oocyte maturation.