• 제목/요약/키워드: two-component signal transduction proteins

검색결과 10건 처리시간 0.034초

Identification of Two-Component Regulatory Genes Involved in o-Xylene Degradation by Rhodococcus sp. Strain DK17

  • Kim, Doc-Kyu;Chae Jong-Chan;Zylstra Gerben J.;Sohn Ho-Yong;Kwon, Gi-Seok;Kim, Eung-Bin
    • Journal of Microbiology
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    • 제43권1호
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    • pp.49-53
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    • 2005
  • Putative genes for a two-component signal transduction system (akbS and akbT) were detected near the alkylbenzene-degrading operon of Rhodococcus sp. DK17. Sequence analysis indicates that AkbS possesses potential ATP-binding and histidine autophosphorylation sites in the N- and C-terminal regions, respectively, and that AkbT has a typical response regulator domain. Mutant analysis combined with RT-PCR experiments further shows that AkbS is required to induce the expression of o-xylene dioxygenase in DK17.

Inter-Domain Signal Transmission within the Phytochromes

  • Song, Pill-Soon
    • BMB Reports
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    • 제32권3호
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    • pp.215-225
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    • 1999
  • Phytochromes (with gene family members phyA, B, C, D, and E) are a wavelength-dependent light sensor or switch for gene regulation that underscore a number of photo responsive developmental and morphogenic processes in plants. Recently, phytochrome-like pigment proteins have also been discovered in prokaryotes, possibly functioning as an auto-phosphorylating/phosphate-relaying two-component signaling system (Yeh et al., 1997). Phytochromes are photochromically convertible between the light sensing Pr and regulatory active Pfr forms. Red light converts Pr to Pfr, the latter having a "switch-on" conformation. The Pfr form triggers signal transduction pathways to the downstream responses including the expression of photosynthetic and other growth-regulating genes. The components involved in and the molecular mechanisms of the light signal transduction pathways are largely unknown, although G-proteins, protein kinases, and secondary messengers such as $Ca^{2+}$ ions and cGMP are implicated. The 124-127 kDa phytochromes form homodimeric structures. The N-terminal half contains the tetrapyrrolic phytochromobilin for red/far-red light absorption. The C-terminal half includes both a dimerization motif and regulatory box where the red light signal perceived by the chromophore-domain is recognized and transduced to initiate the signal transduction cascade. A working model for the inter-domain signal communication within the phytochrome molecule is proposed in this Review.

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Regulation of Class II Bacteriocin Production by Cell-Cell Signaling

  • Quadri, Luis E.N.
    • Journal of Microbiology
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    • 제41권3호
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    • pp.175-182
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    • 2003
  • Production of ribosomally synthesized antimicrobial peptides usually referred to as bacteriocins is an inducible trait in several gram positive bacteria, particularly in those belonging to the group of lactic acid bacteria. In many of these organisms, production of bacteriocins is inducible and induction requires secretion and extracellular accumulation of peptides that act as chemical messengers and trigger bacteriocin production. These inducer peptides are often referred to as autoinducers and are believed to permit a quorum sensing-based regulation of bacteriocin production. Notably, the peptides acting as autoinducers are dedicated peptides with or without antimicrobial activity or the bacteriocins themselves. The autoinducer-dependent induction of bacteriocin production requires histidine protein kinases and response regulator proteins of two-component signal transduction systems. The current working model for the regulation of class II bacteriocin production in lactic acid bacteria and the most relevant direct and indirect pieces of evidence supporting the model are discussed in this minireview.

Regulation of Tumor Neceosis Factor-${\alpha}$ Receptors and Signal Transduction Pathways

  • Han, Hyung-Mee
    • Toxicological Research
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    • 제8권2호
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    • pp.343-357
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    • 1992
  • Tumor necrosis factor-${\alpha}$(TNF), a polypeptide hormone secreted primarily by activated macrophages, was originally identified on the basis of its ability to cause hemorrhagic necrosis and tumor regression in vivo. Subsequently, TNF has been shown to be an important component of the host responses to infection and cancer and may mediate the wasting syndrome known as cachexia. These systemic actions of TNF are reflected in its diverse effects on target cells in vitro. TNF initiates its diverse cellular actions by binding to specific cell surface receptors. Although TNF receptors have been identified on most of animal cells, regulation of these receptors and the mechanisms which transduce TNF receptor binding into cellular responses are not well understood. Therefore, in the present study, the mechanisms how TNF receptors are being regulated and how TNF receptor binding is being transduced into cellular responses were investigated in rat liver plasma membranes (PM) and ME-180 human cervical carcinoma cell lines. $^{125}I$-TNF bound to high ($K_d=1.51{\pm}0.35nM$)affinity receptors in rat liver PM. Solubilization of PM with 1% Triton X-100 increased both high affinity (from $0.33{\pm}0.04\;to\;1.67{\pm}0.05$ pmoles/mg protein) and low affinity (from $1.92{\pm}0.16\;to\;7.57{\pm}0.50$ pmoles/mg protein) TNF binding without affecting the affinities for TNF, suggesting the presence of a large latent pool of TNF receptors. Affinity labeling of receptors whether from PM or solubilized PM resulted in cross-linking of $^{125}I$-TNF into $M_r$ 130 kDa, 90 kDa and 66kDa complexes. Thus, the properties of the latent TNF receptors were similar to those initially accessible to TNF. To determine if exposure of latent receptors is regulated by TNF, $^{125}I$-TNF binding to control and TNF-pretreated membranes were assayed. Specific binding was increased by pretreatment with TNF (P<0.05), demonstrating that hepatic PM contains latent TNF receptors whose exposure is promoted by TNF. Homologous up-regulation of TNF receptors may, in part, be responsible for sustained hepatic responsiveness during chronic exposure to TNF. As a next step, the post-receptor events induced by TNF were examined. Although the signal transduction pathways for TNF have not been delineated clearly, the actions of many other hormones are mediated by the reversible phosphorylation of specific enzymes or target proteins. The present study demonstrated that TNF induces phosphorylation of 28 kDa protein (p28). Two dimensional soidum dodecyl sulfate-polyacrylamide gel electrophoresis(SDS-PAGE) resolved the 28kDa phosphoprotein into two isoforms having pIs of 6.2 and 6.1. The pIs and relative molecular weight of p28 were consistent with those of a previously characterized mRNA cap binding protein. mRNA cap binding proteins are a class of translation initiation factors that recognize the 7-methylguanosine cap structure found on the 5' end of eukaryotic mRNAs. In vitro, these proteins are defined by their specific elution from affinity columns composed of 7-methylguanosine 5'-triphosphate($m^7$GTP)-Sepharose. Affinity purification of mRNA cap binding proteins from control and TNF treated ME-180 cells proved that TNF rapidly stimulates phosphorylation of an mRNA cap binding protein. Phosphorylation occurred in several cell types that are important in vitro models of TNF action. The mRNA cap binding protein phosphorylated in response to TNF treatment was purifice, sequenced, and identified as the proto-oncogene product eukaryotic initiation factor-4E(eIF-4E). These data show that phosphorylation of a key component of the cellular translational machinery is a common early event in the diverse cellular actions of TNF.

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MgADP 결합 및 아미노산 치환 Nitrogenase Fe 단백질의 구조 및 기능 분석 (Structural and Functional Analysis of Nitrogenase Fe Protein with MgADP bound and Amino Acid Substitutions)

  • Jeong, Mi-Suk;Jang, Se-Bok
    • 생명과학회지
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    • 제14권5호
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    • pp.752-760
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    • 2004
  • Nitrogenase 촉매에서 Fe-단백질을 포함하는 [4Fe-4S] 클라스터의 기능은 기질의 결합과 환원 자리를 포함하는 MoFe-단백질로 핵산 의존 전자 주개로 작용하는 것이다. 이러한 방법의 Fe-단백질의 기능은 Mofe-단백질과 상호작용을 위해 적합한 구조를 갖추며 전자 전달을 위한 추진력을 제공하기 위해 산화 환원 퍼텐셜을 변화시키는 능력에 의존한다. Nitrogenase Fe-단백질에 MgADP가 결합한 (혹은 떨어진) 구조적 정보는 핵산 결합 자리로부터 MoFe-단백질과의 결합력을 조절하기 위한 장거리 상호작용 메커니즘을 제시한다. 스위치 I과 II의 두 가지 경로가 뉴클레오티드의 신호전달 메커니즘을 담당한다. MgADP가 결합된 Fe-단백질의 구조는 Fe 단백질이 핵산과 결합할 때 관찰되는 [4Fe-4S] 클라스터의 생물리학적 특성 변화의 기초를 제공한다. 스위치, I과 II의 핵산 의존 신호전달 경로에서 특정 아미노산이 치환된 nitrogenase Fe-단백질의 구조들이 X-선 회절법에 의해서 결정되었다. 이들 경로는 아미노산 치환 연구, 구조 분석, 유사한 핵산 의존 신호전달 경로에 이용된 다른 단백질 등에 의해서도 분석되었다. 이들 경로가 거대분자 착물 형성과 분자간 전자 전달을 위한 MgADP 결합과 가수분해의 신호전달 경로로의 타당성이 조사되었다. 이러한 결과는 nitrogenase Fe 단백질과 MoFe-단백질 착물에서 Fe-단백질의 변이와 상호작용의 생물리학적 및 생화학적 특성을 위한 기초적 자료를 제공할 것이다.

ECM 단백질이 IMR-32 및 SK-N-SH 세포주 신경축색생장에 미치는 영향 (Analyses of the Neurite Outgrowth and Signal Transduction in IMR-32 and SK-N-SH Cells by ECM Proteins)

  • 최윤정;김철우;허규정
    • 한국동물학회지
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    • 제38권4호
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    • pp.542-549
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    • 1995
  • Extracellular matrix(ECM) 단백질이 SK-N-SH 및 IMR-32 세포주가 신경계 세포로 분화되는 데 미치는 영향을 조사하였다. Laminin과 collagen으로 도말한 배양기에서 7일간 배양했을 때 SK-N-SH세포는 잘 발달된 신경측색생장을 보였으나 IMR-32세포는 뚜렷한 형태변화를 나타내지 않았다. 왜 IMR-32세포가 ECM 단백질에 반응을 하지 않는가를 규명하기 위하여 ECM단백질에 의한 초기 신호전달기작을 두 세포주에서 분석하였다. ECM 단백질을 도말한 배양기에 세포를 깔았을 때 한시간 만에 tyrosine 인산화된 단백질이 두 세포 모두 증가함을 볼 수 있었다. 아울러 focal adhesion kinase(FAK)의 tyrosine 인산화도 두 세포주 모두에서 증가하였다. 이러한 결과는 두 세포주가 ECM 단백질에 의한 초기 신호전달체계가 정상임을 의미한다. 신경세포 분화과정에 증가한다고 알려진 Bcl-2 및 NSE의 량을 ECM 단백질 처리후 조사하였을 때 SK-N-SH 세포주는 두 단백질이 증가 했지만 IMR-32 세포주는 변화가 없었다. 이러한 결과는 IMR-32 세포주가 ECM 단백질에 반응하지 않는 것이 ECM 단백질에 의한 신호전달체계에 문제가 있다기 보다 신경계세포로 분화되는 데 필요한 유전인자의 발현조절에 문제가 있음을 시사한다.

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Effect of gacS and gacA Mutations on Colony Architecture, Surface Motility, Biofilm Formation and Chemical Toxicity in Pseudomonas sp. KL28

  • Choi, Kyung-Soon;Veeraragouda, Yaligara;Cho, Kyoung-Mi;Lee, Soo-O;Jo, Geuk-Rae;Cho, Kyung-Yun;Lee, Kyoung
    • Journal of Microbiology
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    • 제45권6호
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    • pp.492-498
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    • 2007
  • GacS and GacA proteins form a two component signal transduction system in bacteria. Here, Tn5 transposon gacS and gacA (Gac) mutants of Pseudomonas sp. KL28, an alkylphenol degrader, were isolated by selecting for smooth colonies of strain KL28. The mutants exhibited reduced ability to migrate on a solid surface. This surface motility does not require the action of flagella unlike the well-studied swarming motility of other Pseudomonas sp. The Gac mutants also showed reduced levels of biofilm and pellicle formation in liquid culture. In addition, compared to the wild type KL28 strain, these mutants were more resistant to high concentrations of m-cresol but were more sensitive to $H_2O_2$, which are characteristics that they share with an rpoS mutant. These results indicate that the Gac regulatory cascade in strain KL28 positively controls wrinkling morphology, biofilm formation, surface translocation and $H_2O_2$ resistance, which are important traits for its capacity to survive in particular niches.

Anti-Phosphoserine/Phosphothreonine/Phesphotyrosine Antibody Immunoaffinity Column Chromatography를 이용한 Streptomyces griseus의 인산화 단백질 동정 (Identification of Protein Kinases by Anti-phosphoserine/Phosphothreonine/Phosphotyrosine Antibody Immunoaffinity Column Chromatographies in Streptomyces griseus.)

  • 정용훈;김종희
    • 한국미생물·생명공학회지
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    • 제35권2호
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    • pp.112-117
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    • 2007
  • Protein kinase는 진핵생물과 원핵생물을 포함하는 모든 생명체에서 세포생존에 절대적으로 중요한 조절 기능을 담당한다. 일반적으로 원핵생물은 histidine 과 aspartic acid kinase로 구성된 bacterial two-component regulatory system에 의하여 환경변화에 따른 유전자의 발현이 조절되지만, 방선균을 비롯한 고등 원핵생물에서는 진핵생물성의 serine/threonine kinase들이 세포분화와 같은 분화과정을 조절하고 있다. Streptomycin 생산균인 Streptomyces griseus 균주에서도 다양한 serine/threonine kinase들이 존재하는 것으로 추정되며, 이들의 기능을 밝히는 것은 생명현상을 이해하는 중요한 열쇠를 제공해 줄 것으로 기대된다. 따라서, S. griseus로부터 protein kinase 를 동정하는 연구를 실시하였으며, 기존의 복잡한 chromatography법의 단점을 보완하기 위해 anti-phosphothreonine, anti-phosphoserine, anti-phosphotyrosine antibody를 이용한 immunoaffinity column chromatography 방법을 도입하였다. 실험 결과 약 14, 29, 31, 35, 40, 52, 56, 60 kDa의 단백질을 효과적으로 동정 할 수 있었으며, nonradioactive protein kination assay 방법으로 이들의 인산화능을 확인하였다.

포유동물의 생식과 페로몬 (Mammalian Reproduction and Pheromones)

  • 이성호
    • 한국발생생물학회지:발생과생식
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    • 제10권3호
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    • pp.159-168
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    • 2006
  • 설치류를 포함한 대부분의 포유동물은 페로몬 반응을 중개하는 두 개의 화학감각 시스템(chemosensory system)을 갖고 있는데, 각각 주후각시스템(main olfactory system, MOS)과 부후각시스템(accesory olfactory system, AOS)이다. MOS에 속하는 화학감각뉴런들은 주후각 상피 내에 위치하며, AOS에 속하는 화학감각뉴런들은 비강 윗부분의 서골비기관(vomeronasal organ, VNO)에 위치한다. 공기 중의 비휘발성 페로몬 성분들은 구개 위쪽으로 열린 관을 통해 VNO의 내강으로 이동한다. 페로몬 수용체 단백질들은 크게 두 개의 슈퍼패밀리 V1R과 V2R로 나뉘는데, 이들은 구조적으로 큰 차이가 있으며 MOS에서 발현되는 후각 수용체들과는 무관하다. 이들은 7개의 막관통 도메인을 갖는 G-단백질 결부 단백질(seven transmembrane domain G-protein coupled proteins, V1R은 $G_{{\alpha}i2}$와, 그리고 V2R은 $G_{0\;{\alpha}}$와 연관)이다. V2R은 비고전적 MHC Ib 유전자 산물인 M10과 기타 8개의 M1 패밀리 단백질들과 함께 작용한다. 그 외 VNO 뉴런의 중요한 구성 분자는 TrpC2로, 이는 transient receptor potential(TRP)의 양이온 채널 단백질이며 세포내 신호전달과정에서 중요한 역할을 할 것으로 추정된다. 포유동물의 화학적 의사소통과정에서 페로몬은 작용 모드 또는 효과에 따라 4종류로 분류할 수 있는데, 프라이머(primer), 신호자(signaler), 조정자(modulator) 그리고 방출자(releaser)이다. 근본적으로 이들 화학신호에 대한 반응들은 개체 간, 심지어는 한 개체 내에서도 다양할 수 있다. 이러한 다양성은 페로몬이 스테로이드 호르몬들과 함께 또는 단독으로, 신경전달물질들과 같은 비스테로이드 요인들의 후각정보 처리 과정에 미치는 각종 조절의 차이에 의해 나타날 수 있다. 이러한 조절은 유리한 사회적, 환경적인 조건들을 갖도록 수용자의 생식 축에 미치는 영향을 증강 또는 촉진한다. 가장 좋은 예는 수컷 생쥐의 소변 중의 테스토스테론 의존적인 주요 요단백질(major urinary proteins, MUPs)에 의한 임신방지효과(Bruce 효과)이다. 흥미롭게도 생쥐 GnRH 뉴런은 냄새와 페로몬 양자 모두로부터 페로몬 신호를 수용하는 것 같다. 비록 상당한 논란의 소지는 있지만, 그간의 연구들은 생식과 기타 여러 기능들 사이에 복잡한 상호교차 관계가 있음을 시사한다. 여기서 GnRH 뉴런은 다양한 원천으로부터의 정보를 통합하고, 다시 다양한 뇌기능을 조절하는 것으로 보인다.

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Three Non-Aspartate Amino Acid Mutations in the ComA Response Regulator Receiver Motif Severely Decrease Surfactin Production, Competence Development, and Spore Formation in Bacillus subtilis

  • Wang, Xiaoyu;Luo, Chuping;Liu, Youzhou;Nie, Yafeng;Liu, Yongfeng;Zhang, Rongsheng;Chen, Zhiyi
    • Journal of Microbiology and Biotechnology
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    • 제20권2호
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    • pp.301-310
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    • 2010
  • Bacillus subtilis strains produce a broad spectrum of bioactive peptides. The lipopeptide surfactin belongs to one well-known class, which includes amphiphilic membrane-active biosurfactants and peptide antibiotics. Both the srfA promoter and the ComP-ComA signal transduction system are an important part of the factor that results in the production of surfactin. Bs-M49, obtained by means of low-energy ion implantation in wild-type Bs-916, produced significantly lower levels of surfactin, and had no obvious effects against R. solani. Occasionally, we found strain Bs-M49 decreased spore formation and the development of competence. Blast comparison of the sequences from Bs-916 and M49 indicate that there is no difference in the srfA operon promoter PsrfA, but there are differences in the coding sequence of the comA gene. These differences result in three missense mutations within the M49 ComA protein. RT-PCR analyses results showed that the expression levels of selected genes involved in competence and sporulation in both the wild-type Bs-916 and mutant M49 strains were significantly different. When we integrated the comA ORF into the chromosome of M49 at the amyE locus, M49 restored hemolytic activity and antifungal activity. Then, HPLC analyses results also showed the comA-complemented strain had a similar ability to produce surf actin with wild-type strain Bs-916. These data suggested that the mutation of three key amino acids in ComA greatly affected the biological activity of Bacillus subtilis. ComA protein 3D structure prediction and motif search prediction indicated that ComA has two obvious motifs common to response regulator proteins, which are the N-terminal response regulator receiver motif and the C-terminal helix-turn-helix motif. The three residues in the ComA N-terminal portion may be involved in phosphorylation activation mechanism. These structural prediction results implicate that three mutated residues in the ComA protein may play an important role in the formation of a salt-bridge to the phosphoryl group keeping active conformation to subsequent regulation of the expression of downstream genes.