• 제목/요약/키워드: Peptide domain

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HT-22 신경세포에서 아밀로이드 베타 펩티드에 의한 미토콘드리아와 세포 손상 기전에서 FUN14 도메인 함유 단백 1의 역할 (FUN14 Domain-Containing Protein 1 Is Involved in Amyloid Beta Peptide-Induced Mitochondrial Dysfunction and Cell Injury in HT-22 Neuronal Cells)

  • 강재훈;우재석
    • 생명과학회지
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    • 제34권1호
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    • pp.37-47
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    • 2024
  • Fun14 도메인 함유 단백 1(Fun14 domain-containing protein 1, FUNDC1)은 미토콘드리아 외막에 존재하는 단백질로, 미토콘드리아의 마이토파지(mitophage) 기전 조절에 관여하는 것으로 알려져 있다. 본 연구에서는 해마 뉴런 기원의 HT-22 세포에서 아밀로이드 베타 펩티드(Aβ)에 의한 미토콘드리아와 세포 손상 과정에서 FUNDC1의 개재 가능성과 역할을 조사하였다. HT-22 세포에서 Aβ를 처리하면 처리 시간에 의존적으로 FUNDC1의 발현 감소가 관찰되었다. 또한 MTT 환원능과 세포 내 ATP 농도, 미토콘드리아 막전압의 감소, 반응성 산소종의 생성과 미토콘드리아 Ca2+ 부하의 증가 등 미토콘드리아의 기능적 손상을 나타내는 지표들의 변화와 함께 세포사멸의 증가가 관찰되었다. FUNDC1의 발현을 일시적으로 차단한 세포군에서도 미토콘드리아의 기능적 손상을 나타내는 지표 변화와 세포사멸의 증가가 관찰되었다. 반면에 FUNDC1을 일시적으로 과발현시킨 세포군에서는 Aβ 처리에 의한 미토콘드리아 손상과 세포 사멸이 유의하게 억제되었다. 이와 같은 결과들은 Aβ에 의한 미토콘드리아와 세포 손상 기전에 FUNDC1이 중요하게 관여할 가능성을 시사한다.

Growth hormone and receptor gene mutations in Chinese Banna miniature pig

  • Deng, J.Z.;Hao, L.L.;Li, M.T.;Lang, S.;Zeng, Y.Z.;Liu, S.C.;Zhang, Y.L.
    • Animal cells and systems
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    • 제15권4호
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    • pp.310-314
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    • 2011
  • The Banna miniature pig (BNMP) is a representative miniature pig breed in China. Even though BNMP dwarfism is obvious, its underlying causative mutations remain unknown. In this study, the BNMP and Large White pig (LWP) serum growth hormone (GH) and insulin-like growth factor (IGF-1) levels were detected by ELISA and compared. BNMP serum IGF-1 levels were significantly lower than LWP levels (P<0.05). The miniature condition may arise from mutations in the GH and GH receptor (GHR) genes. Therefore, GH and GHR cDNA from the BNMP were cloned into a pMD18-T vector by RT-PCR using the total RNA obtained from the BNMP's pituitary and liver tissues. Sequencing results indicated that the open reading frame of the BNMP GH gene is composed of a 26-residue signal peptide and a 191-residue mature peptide. The coding sequence of the BNMP GHR gene contained 639 amino acids, including a signal peptide that is 18 amino acids long. Two amino acid substitutions, A09V and R22Q, were found in the signal peptide of the GH gene. Additionally, the S104P mutation was found in the BNMP's mature GH protein. Four mutations in the cytoplasmic domain of GHR may influence the downstream signal transduction of GHR, which needs further experimental evidence.

Designing Signal Peptides for Efficient Periplasmic Expression of Human Growth Hormone in Escherichia coli

  • Jeiranikhameneh, Meisam;Moshiri, Farzaneh;Falasafi, Soheil Keyhan;Zomorodipour, Alireza
    • Journal of Microbiology and Biotechnology
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    • 제27권11호
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    • pp.1999-2009
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    • 2017
  • The secretion efficiency of a protein in a Sec-type secretion system is mainly determined by an N-terminal signal peptide and its combination with its cognate protein. Five signal peptides, namely, two synthetic Sec-type and three Bacillus licheniformis alpha-amylase-derived signal peptides, were compared for periplasmic expression of the human growth hormone (hGH) in E. coli. Based on in silico predictions on the signal peptides' cleavage efficiencies and their corresponding mRNA secondary structures, a number of amino acid substitutions and silent mutations were considered in the modified signal sequences. The two synthetic signal peptides, specifically designed for hGH secretion in E. coli, differ in their N-terminal positively charged residues and hydrophobic region lengths. According to the mRNA secondary structure predictions, combinations of the protein and each of the five signal sequences could lead to different outcomes, especially when accessibility of the initiator ATG and ribosome binding sites were considered. In the experimental stage, the two synthetic signal peptides displayed complete processing and resulted in efficient secretion of the mature hGH in periplasmic regions, as was demonstrated by protein analysis. The three alpha-amylase-derived signal peptides, however, were processed partially from their precursors. Therefore, to achieve efficient secretion of a protein in a heterologous system, designing a specific signal peptide by using a combined approach of optimizations of the mRNA secondary structure and the signal peptide H-domain and cleavage site is recommended.

돼지 신장의 Angiotensin I Converting Enzyme cDNA 클로닝 (Cloning of Pig Kidney cDNA Encoding an Angiotensin I Converting Enzyme)

  • 윤장호;윤주억;홍광원
    • Applied Biological Chemistry
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    • 제49권4호
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    • pp.293-297
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    • 2006
  • 포유류의 조직에 널리 분포되어 있으며 혈압 조절에 중요한 역할을 하는 Angiotensin-converting enzyme(ACE)은 아연을 함유하는 dipeptidase로서 angiotensin I을 가수분해하여 강력한 혈압상승제인 angiotensin II를 생성하는 효소이다. 최근에 돼지의 난소에서 ACE 활성이 측정되었으며, 돼지의 신장에서 ACE 단백질이 분리되어 그 특성이 알려졌다. 그러나 돼지의 어떠한 ACE DNA 염기서열도 아직까지 보고 된 바는 없다. 그러므로 본 연구에서 reverse transcriptase-polymerase chain reaction(RT-PCR)을 이용하여 돼지의 신장 ACE cDNA를 클로닝하고 그 염기서열을 분석하였다. ACE cDNA는 1309개의 아미노산으로 구성되어 있으며 그 분자량은 150kDa이다. 염기서열로부터 유추한 아미노산의 서열을 분석한 결과, N 말단의 33개 아미노산이 signal peptide 역할을 하는 것으로 보이며, C 말단 근처의 짧은 transmembrane 영역은 세포막에 anchor역할을 하는 것으로 보인다. 돼지 신장의 ACE에서 두 개의 매우 유사한 amino acid peptidase domain은 tandem duplication 되어 있으며, 각각의 domain은 다른 포유류의 체세포 ACE들과 마찬가지로 putative metal-binding site(His-Glu-Met-Gly-His)를 하나씩 가지고 있는 것으로 나타났다. 돼지 신장 ACE 서열과 인간, 토끼, 쥐 등과 같은 포유류의 ACE 아미노산 서열들과의 상동성 비교는 진화과정 중 두 domain이 매우 잘 보전되어 왔음을 보여주고 있다.

Large Conformational Changes and Molecular Recognition in Signal Transduction: Calmodulin and Active Transport/Chemosensory Receptors

  • QUIOCHO, FLORANTE A.
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1997년도 학술발표회
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    • pp.9-10
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    • 1997
  • Calmodulin: very large conformation change of helix uncoiling, hinge-bending and domain rotation. Calmodulin (CaM) is the principal Ca$\^$2+/ -dependent regulator of a variety of important eukaryotic cellular processes. In many of these processes, calmodulin activates a plethora of target enzymes, and the calmodulin-binding domains in several targets have been shown to residue in a region of about 18-residue peptide segment.(omitted)

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Evolutionary Explanation for Beauveria bassiana Being a Potent Biological Control Agent Against Agricultural Pests

  • Han, Jae-Gu
    • 한국균학회소식:학술대회논문집
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    • 한국균학회 2014년도 춘계학술대회 및 임시총회
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    • pp.27-28
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    • 2014
  • Beauveria bassiana (Cordycipitaceae, Hypocreales, Ascomycota) is an anamorphic fungus having a potential to be used as a biological control agent because it parasitizes a wide range of arthropod hosts including termites, aphids, beetles and many other insects. A number of bioactive secondary metabolites (SMs) have been isolated from B. bassiana and functionally verified. Among them, beauvericin and bassianolide are cyclic depsipeptides with antibiotic and insecticidal effects belonging to the enniatin family. Non-ribosomal peptide synthetases (NRPSs) play a crucial role in the synthesis of these secondary metabolites. NRPSs are modularly organized multienzyme complexes in which each module is responsible for the elongation of proteinogenic and non-protein amino acids, as well as carboxyl and hydroxyacids. A minimum of three domains are necessary for one NRPS elongation module: an adenylation (A) domain for substrate recognition and activation; a tholation (T) domain that tethers the growing peptide chain and the incoming aminoacyl unit; and a condensation (C) domain to catalyze peptide bond formation. Some of the optional domains include epimerization (E), heterocyclization (Cy) and oxidation (Ox) domains, which may modify the enzyme-bound precursors or intermediates. In the present study, we analyzed genomes of B. bassiana and its allied species in Hypocreales to verify the distribution of NRPS-encoding genes involving biosynthesis of beauvericin and bassianolide, and to unveil the evolutionary processes of the gene clusters. Initially, we retrieved completely or partially assembled genomic sequences of fungal species belonging to Hypocreales from public databases. SM biosynthesizing genes were predicted from the selected genomes using antiSMASH program. Adenylation (A) domains were extracted from the predicted NRPS, NRPS-like and NRPS-PKS hybrid genes, and used them to construct a phylogenetic tree. Based on the preliminary results of SM biosynthetic gene prediction in B. bassiana, we analyzed the conserved gene orders of beauvericin and bassianolide biosynthetic gene clusters among the hypocrealean fungi. Reciprocal best blast hit (RBH) approach was performed to identify the regions orthologous to the biosynthetic gene cluster in the selected fungal genomes. A clear recombination pattern was recognized in the inferred A-domain tree in which A-domains in the 1st and 2nd modules of beauvericin and bassianolide synthetases were grouped in CYCLO and EAS clades, respectively, suggesting that two modules of each synthetase have evolved independently. In addition, inferred topologies were congruent with the species phylogeny of Cordycipitaceae, indicating that the gene fusion event have occurred before the species divergence. Beauvericin and bassianolide synthetases turned out to possess identical domain organization as C-A-T-C-A-NM-T-T-C. We also predicted precursors of beauvericin and bassianolide synthetases based on the extracted signature residues in A-domain core motifs. The result showed that the A-domains in the 1st module of both synthetases select D-2-hydroxyisovalerate (D-Hiv), while A-domains in the 2nd modules specifically activate L-phenylalanine (Phe) in beauvericin synthetase and leucine (Leu) in bassianolide synthetase. antiSMASH ver. 2.0 predicted 15 genes in the beauvericin biosynthetic gene cluster of the B. bassiana genome dispersed across a total length of approximately 50kb. The beauvericin biosynthetic gene cluster contains beauvericin synthetase as well as kivr gene encoding NADPH-dependent ketoisovalerate reductase which is necessary to convert 2-ketoisovalarate to D-Hiv and a gene encoding a putative Gal4-like transcriptional regulator. Our syntenic comparison showed that species in Cordycipitaceae have almost conserved beauvericin biosynthetic gene cluster although the gene order and direction were sometimes variable. It is intriguing that there is no region orthologous to beauvericin synthetase gene in Cordyceps militaris genome. It is likely that beauvericin synthetase was present in common ancestor of Cordycipitaceae but selective gene loss has occurred in several species including C. militaris. Putative bassianolide biosynthetic gene cluster consisted of 16 genes including bassianolide synthetase, cytochrome P450 monooxygenase, and putative Gal4-like transcriptional regulator genes. Our synteny analysis found that only B. bassiana possessed a bassianolide synthetase gene among the studied fungi. This result is consistent with the groupings in A-domain tree in which bassianolide synthetase gene found in B. bassiana was not grouped with NRPS genes predicted in other species. We hypothesized that bassianolide biosynthesizing cluster genes in B. bassiana are possibly acquired by horizontal gene transfer (HGT) from distantly related fungi. The present study showed that B. bassiana is the only species capable of producing both beauvericin and bassianolide. This property led to B. bassiana infect multiple hosts and to be a potential biological control agent against agricultural pests.

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Structural Analysis of the Ectodomain of HIV Gp41 and Implication on the Gp41 Assisted Membrane Fusion

  • Ryu, Jae-Ryen;Lee, Jung;Suh, Mu-Jin;Yu, Yeong-Sook;Yu, Yeon-Gyu
    • 한국생물물리학회:학술대회논문집
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    • 한국생물물리학회 1996년도 정기총회 및 학술발표회
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    • pp.33-33
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    • 1996
  • An ectodomain of gp41, the transmembrane fusion protein of HIV, without the fusion peptide region was expressed using pET system in E. coli. The expressed protein gp41core, was isolated as inclusion body and was purified by ion-exchange chromatography after solubilized in 6M urea. The purified denatured protein was renaturated and the folded domain of gp41core was identified by the presence of the proteolysis resistence domain and a high content of ${\alpha}$-helical secondary structure. (omitted)

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Glucose Transporters and Insulin Action : Some Insights into Diabetes Management

  • Jung, Chan-Y.;Lee, Wan
    • Archives of Pharmacal Research
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    • 제22권4호
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    • pp.329-334
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    • 1999
  • Insulin stimulates glucose uptake in muscle and adipose cells primarily by recruiting GLUT4 from an intracellular storage pool to the plasma membrane. Dysfunction of this process known as insulin resistance causes hyperglycemia, a hallmark of diabetes and obesity. Thus the understanding of the mechanisms underlying this process at the molecular level may give an insight into the prevention and treatment of these health problems. GLUT4 in rat adipocytes, for example, constantly recycles between the cells surface and an intracellular pool by endocytosis and exocytosis, each of which is regulated by an insulin-sensitive and GLUT4-selective sorting mechanism. Our working hypothesis has been that this sorting mechanism includes a specific interaction of a cytosolic protein with the GLUT4 cytoplasmic domain. Indeed, a synthetic peptide of the C-terminal cytoplasmic domain of GLUT4 induces an insulin-like GLUT4 recruitment when introduced in rat adipocytes. Relevance of these observations to a novel euglycemic drug design is discussed.

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NMR Studies on the N-terminal Acetylation Domain of Histone H4

  • 방은정;이창훈;윤종복;청주희;이대윤;이원태
    • Bulletin of the Korean Chemical Society
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    • 제22권5호
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    • pp.507-513
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    • 2001
  • Histones, nuclear proteins that interact with DNA to form nucleosomes, are essential for both the regulation of transcription and the packaging of DNA within chromosomes. The N-terminal domain of histone H4 which contains four acetylation sites at lysines, may play a separate role in chromatin structure from the remainder of the H4 chain. NMR data suggest that H4NTP peptide does have relating disordered structure at physiological pH, however, it has a defined structure at lower pH conditions. The solution structure calculated from NMR data shows a well structured region comprising residues of Val21-Asp24. In addition, our results suggest that the H4NTP prefers an extended backbone conformation at acetylation sites, however, it (especially Lys 12 ) became more defined structures after acetylation for its optimum function.