• 제목/요약/키워드: genomic structure

검색결과 286건 처리시간 0.031초

Comparative Genomics Study of Interferon-$\alpha$ Receptor-1 in Humans and Chimpanzees

  • Kim, Il-Chul;Chi, Seung-Wook;Kim, Dae-Won;Choi, Sang-Haeng;Chae, Sung-Hwa;Park, Hong-Seog
    • Genomics & Informatics
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    • 제3권4호
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    • pp.142-148
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    • 2005
  • The immune response-related genes have been suggested to be the most favorable genes for positive selection during evolution. Comparing the entire DNA sequence of chimpanzee chromosome 22 (PTR22) with human chromosome 21 (HSA21), we have identified 15 orthologs having indel in their coding sequences. Among them, interferon-${\alpha}$ receptor-1 gene (IFNAR1), an immuneresponse-related gene, is subjected to comparative genomic analysis. Chimpanzee IFNAR1 showed the same genomic structure as human IFNAR1 (11 exons and 10 introns) except the 3 bp insertion in exon 4. The sequence alignment of IFNAR1 coding sequence indicated that 'ISPP' amino acid sequence motif is highly conserved in chimpanzee and other animals including mouse and chicken. However, the human IFNAR1 shows that one proline residue is missing in the sequence motif. The homology modeling of the IFNAR1 structures suggests that the proline deletion in human IFNAR1 leads to the formation of the following ${\alpha}$-helix, whereas two sequential prolines in chimpanzee IFNAR1 inhibit it. As a result, human IFNAR1 may adopt a characteristic structure distinct from chimpanzee IFNAR1. This human specific trait could contribute to specific immune response in the most optimized manner for humans. Further molecular biological studies on the IFNAR1 will help us to gain insights into the molecular implication of species-specific host-pathogen interaction in primate evolution.

Epinephrine 합성효소인 phenylethanolamine N-methyltransferase의 인간 genomic DNA의 유전자 크로닝 (Molecular Cloning of Human Genomic DNA for Epinephrine Synthesizing Enzyme, Phenylethanolamine N-Methyltransferase)

  • 서유현;허성오;전양숙;김현식;임정규;박찬웅
    • 대한약리학회지
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    • 제24권1호
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    • pp.1-10
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    • 1988
  • 카테콜아민 생합성에 관여하는 마지막 효소인 phenylethanolamine N-methyltransferase는 Norepinephrine을 epinephrine으로 전환시키는 중요한 효소이다. PNMT효소의 발현은 epinephrine 신경세포의 발현에 필수적이다. 따라서 PNMT유전자를 크로닝하여 그 구조를 결정하고, 유전자 발현연구를 하는 것은 상당히 중요한 일이다. 그러나 최근에 저자가 bovine cDNA를 처음으로 분리하여 그 구조를 보고한 것 외에는 아직까지 인간 PNMT cDNA나, 전체 genomic DNA의 분리 보고는 없다. 이에 저자들은 인간 PNMT유전자의 전체구조와 여러 종(species) 사이의 진화적인 관계를 규명하기 위해서 human genomic library(Charon 4A)를 만들고, 이 library 이용하여 bovine cDNA를 probe로 13.1 Kb길이의 genomic clone을 분리 크로닝하는데 성공하였다. 이 유전자는 두개의 EcoRI site가 포함되어 있어서, EcoRI제한효소에 의해서 7.5 Kb, 5.0 Kb,0.6 Kb로 분리되었으며, Southern과 dot blot 실험 에서 보면 5.0 Kb와 0.6 Kb에 exon이 흩어져 존재하고 있으며, 7.5 Kb는 flanking sequence로 판명되었다.

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The Short-Chain Fatty Acid Receptor GPR43 Modulates YAP/TAZ via RhoA

  • Park, Bi-Oh;Kim, Seong Heon;Kim, Jong Hwan;Kim, Seon-Young;Park, Byoung Chul;Han, Sang-Bae;Park, Sung Goo;Kim, Jeong-Hoon;Kim, Sunhong
    • Molecules and Cells
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    • 제44권7호
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    • pp.458-467
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    • 2021
  • GPR43 (also known as FFAR2 or FFA2) is a G-protein-coupled receptor primarily expressed in immune cells, enteroendocrine cells and adipocytes that recognizes short-chain fatty acids, such as acetate, propionate, and butyrate, likely to be implicated in innate immunity and host energy homeostasis. Activated GPR43 suppresses the cAMP level and induces Ca2+ flux via coupling to Gαi and Gαq families, respectively. Additionally, GPR43 is reported to facilitate phosphorylation of ERK through G-protein-dependent pathways and interacts with β-arrestin 2 to inhibit NF-κB signaling. However, other G-protein-dependent and independent signaling pathways involving GPR43 remain to be established. Here, we have demonstrated that GPR43 augments Rho GTPase signaling. Acetate and a synthetic agonist effectively activated RhoA and stabilized YAP/TAZ transcriptional coactivators through interactions of GPR43 with Gαq/11 and Gα12/13. Acetate-induced nuclear accumulation of YAP was blocked by a GPR43-specific inverse agonist. The target genes induced by YAP/TAZ were further regulated by GPR43. Moreover, in THP-1-derived M1-like macrophage cells, the Rho-YAP/TAZ pathway was activated by acetate and a synthetic agonist. Our collective findings suggest that GPR43 acts as a mediator of the Rho-YAP/TAZ pathway.

Comparison of the Genomic Structure of the Heat Shock Protein-88(Hsp88) Genes in the Four Entomopathogenic Fungal Strains, Paecilomyces tenuipes Jocheon-1, P. tenuipes, Cordyceps militaris, and C. pruinosa

  • Liu, Ya-Qi;Park, Nam-Sook;Kim, Yong-Gyun;Kim, Keun-Ki;Park, Hyun-Chul;Son, Hong-Joo;Lee, Sang-Mong
    • International Journal of Industrial Entomology and Biomaterials
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    • 제25권1호
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    • pp.99-110
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    • 2012
  • Comparison on the genomic structure and phylogenetic relationship of the Hsp88 genes from P. tenuipes Jochoen-1, P. tenuipes, C. militaris and C. pruinosa was described. The Hsp88 genes from the three entomopathogenic strains, P. tenuipes Jocheon-1(strain), P. tenuipes(original species), and C. militaris contain the identical genomic structure, namely 5 introns and 6 exons with the length of 13, 62, 32, 1,438, 306, 288 nucleotides encoding 713 amino acid residues, whereas in case of C. pruinosa, it contains 4 introns and 5 exons with the length of 13, 62, 32, 1,744, 288 nucleotides encoding 713 amino acid residues. The genomic DNA length of the Hsp88 genes from P. tenuipes Jocheon-1 and P. tenuipes are both 2,600 nucleotides long in size. The Hsp88 genes from C. militaris and C. pruinosa are 2,582, 2,576 nucleotides long in size, respectively. Hsp88 genes of the P. tenuipes Jochoen-1, P. tenuipes, C. militaris and C. pruinosa also contain the conserved ATP-binding domain. Phylogenetic analysis of the Hsp genes of the four strains tested in this study showed that the fungal Hsp88 is divided into two separate clades, ascomycetes and deutromycete. Within the ascomycetes fungal clade, the P. tenuipes Jochoen-1 and P. tenuipes formed a subgroup, on the other hand, C. militaris and C. pruinosa formed another subgroup. Pair-wise comparison of P. tenuipes Jocheon-1 Hsp88 with those of P. tenuipes, C. militaris and C. pruinosa Hsp88s revealed significant identity in deduced amino acid sequence among these strains. The P. tenuipes Jocheon-1 Hsp88 showed 99% identity with the P. tenuipes, 97% identity with the C. militaris, and 98% identity with the C. pruinosa.

Birth of an 'Asian cool' reference genome: AK1

  • Kim, Changhoon
    • BMB Reports
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    • 제49권12호
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    • pp.653-654
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    • 2016
  • The human reference genome, maintained by the Genome Reference Consortium, is conceivably the most complete genome assembly ever, since its first construction. It has continually been improved by incorporating corrections made to the previous assemblies, thanks to various technological advances. Many currently-ongoing population sequencing projects have been based on this reference genome, heightening hopes of the development of useful medical applications of genomic information, thanks to the recent maturation of high-throughput sequencing technologies. However, just one reference genome does not fit all the populations across the globe, because of the large diversity in genomic structures and technical limitations inherent to short read sequencing methods. The recent success in de novo construction of the highly contiguous Asian diploid genome AK1, by combining single molecule technologies with routine sequencing data without resorting to traditional clone-by-clone sequencing and physical mapping, reveals the nature of genomic structure variation by detecting thousands of novel structural variations and by finally filling in some of the prior gaps which had persistently remained in the current human reference genome. Now it is expected that the AK1 genome, soon to be paired with more upcoming de novo assembled genomes, will provide a chance to explore what it is really like to use ancestry-specific reference genomes instead of hg19/hg38 for population genomics. This is a major step towards the furthering of genetically-based precision medicine.

The Pleiotropy of Telomerase against Cell Death

  • Sung, Young Hoon;Choi, Yoon Sik;Cheong, Cheolho;Lee, Han-Woong
    • Molecules and Cells
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    • 제19권3호
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    • pp.303-309
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    • 2005
  • The end of eukaryotic genomic DNA is capped by a specialized structure called as "telomere" which consists of the repetitive array of nucleotide sequence, TTAGGG, in humans and mice, and a variety of binding proteins. Telomerase is a ribonucleoprotein (RNP) complex responsible for the elongation of telomeres to maintain the genomic integrity, and is composed of telomerase reverse transcriptase (TERT), telomerase RNA component (TERC), and their associated factors regulating the catalytic activity of telomerase. Although it is now apparent that telomerase protects cells from apoptosis via the maintenance of genomic integrity by stabilizing telomeres, our understanding for the physiological role of telomerase is yet far from completion, and emerging evidence suggests that telomerase has additional extratelomeric roles in mediating cell survival and anti-apoptotic functions against various cytotoxic stresses. Here we summarize and discuss how telomerase and telomeres are involved in mediating cellular protection against apoptosis.

Random Sequence Analysis of the Genomic DNA of Methanopyrus kandleri and Molecular Cloning of the Gene Encoding a Homologue of the Catalytic Subunit of Carbon Monoxide Dehydrogenase

  • Shin, Hyun-Seock;Ryu, Jae-Ryeon;Han, Ye-Sun;Choi, Yong-Jin;Yu, Yeon-Gyu
    • Journal of Microbiology and Biotechnology
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    • 제9권4호
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    • pp.404-413
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    • 1999
  • Methanopyrus kandleri is a hyperthermophilic methanogen that represents one of the most heat-resistant organisms: the maximum growth temperature of M. kandleri is $110^{\circ}C$. A random sequence analysis of the genomic DNA of M. kandleri has been performed to obtain genomic information. More than 200 unique sequence tags were obtained and compared with the sequences in the GenBank and PIR databases. About 30% of the analyzed tags showed strong sequence similarity to previously identified genes involved in various cellular processes such as biosynthesis, transport, methanogenesis, or metabolism. When statistics relating to the frequency of codons were examined, the sequenced open reading frames showed highly biased codon usage and a high content of charged amino acids. Among the identified genes, a homologue of the catalytic subunit of carbon monoxide dehydrogenase (CODH) that reduces $CO_2$ to CO was cloned and sequenced in order to examine its detailed gene structure. The cloned gene includes consensus promoters. The amino acid sequence of the cloned gene shows a strong homology with the CODH genes from methanogenic Archaea, especially in the presumed binding sites for Fe-S centers.

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포스트게놈 시대의 국내 유전체연구 현황: 한국적 거버넌스의 제도적 다형성 연구 (Topography of Post-Genomic Researches in Korea: Governance and Institutional Polymorphism)

  • 이준석
    • 과학기술학연구
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    • 제15권1호
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    • pp.145-180
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    • 2015
  • 인간게놈프로젝트(HGP)는 지난 세기말 미국 영국 프랑스 중국 독일 일본의 컨소시엄이 수행한 거대과학이다. 그러나 한국에서의 HGP는 부족한 재원과 정부의 지원 미비 등으로 인해 일부 전문가 및 소수 난치병 환우들의 주장에도 불구하고 수행되지 못하였다. 이처럼 '90년대-한국의-HGP'는 구성되지 못했지만 포스트게놈 시대에 들어오면서 유전체의학이 활성화될 수 있게 된 사회적 메커니즘을 본 연구는 삼중나선 모델에 기반하여 분석하고자 한다. 포스트게놈 시대의 국내 유전체의학 연구들은 대학-기업-정부의 전통적 삼중나선 분류로는 정확히 설명이 안 되는 하이브리드 조직들을 중심으로 비로소 수행될 수 있었다. 국내 대학의 선도적 유전체연구자들은 기금부족 문제를 해결하기 위해 필수적으로 기업을 설립해야 했고, 이는 상업적 이익을 위해 선택적으로 벤처기업을 설립하는 선진국의 기업가적 대학과는 매우 다른 모습이다. 두 개의 사례연구를 통해 본 논문은 이 조직들이 사실상 뚜렷이 구별되기 어려운 대학과 기업의 연구 중합체(research assemblage)임을 보인다. 비슷한 맥락에서, 기업을 창업하지 않은 대학의 다른 유전체 연구자들도 정부와의 접점에서 구성되는 다양한 조직들을 통하고서야 비로소 유전체 연구를 수행할 수 있었다. 본고에서 '90년대-한국의-HGP'가 수행되지 못한 과학임을 주장하는 것은 결코 아니지만, 수행되지 못한 과학의 개념과 맥락적 유사성을 가졌던 게놈 연구가 활성화되기 위해서는 삼중나선의 변형적 수용이 필요했다는 점을 최종적으로 보이고자 한다.

Apriona germari Larval Cuticle Protein Genes: Genomic Structure of Three Cuticle Protein Genes and cDNA Cloning of a Novel Cuticle Protein

  • Zheng Gui Zhong;Kim Bo-Yeon;Yoon Hyung-Joo;Wei Ya Dong;Xijie Guo;Jin Byung-Rae;Shon Hung-Dae
    • International Journal of Industrial Entomology and Biomaterials
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    • 제14권1호
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    • pp.51-56
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    • 2007
  • In a previous study, three larval cuticle protein genes were cloned from the mulberry longicorn beetle, Apriona germari (Comp. Biochem. Physiol. B 136, 803-811, 2003). In the present study, the genomic structures of these three larval cuticle protein genes (AgLCP9.2, AgLCP12.6 and AgLCP12.3) were elucidated. All three cuticle protein genes consist of one intron and two exons. Southern blot analysis of genomic DNA suggested that three cuticle protein genes are a single copy gene. In addition, a novel larval cuticle protein gene, AgLCP10.6, was cloned from A. germari in this study. The AgLCP10.6 cDNA contains an ORF of 300 nucleotides that are capable of encoding a 100-amino acid polypeptide with a predicted molecular mass of 10.6 kDa. The amino acid sequence deduced from the AgLCP10.6 cDNA contained a type-specific consensus sequence identifiable in other insect cuticle proteins and is most homologous to Drosophila melanogaster cuticle protein ACP65A (51 % protein sequence identity). Northern blot analysis revealed that AgLCP10.6 showed epidermis-specific expression.

포도 캠벨 품종으로부터 과육 특이발현 VVTL1-homolog 유전자의 분석 (Gene Analysis of A Fruit-specific Thaumatin-like Protein, VVTL1-homolog, from Campbell Cultivar of Grape)

  • 김인중;김석만
    • 식물조직배양학회지
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    • 제28권5호
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    • pp.255-261
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    • 2001
  • VVTL1은 포도 과육에서 특이적으로 다량 발현되는, PR5 계열의 thaumatin과 높은 상동성을 나타내는 단백질로서, 품종에 따라 염기서열의 차이를 나타낸다고 알려져 있다. 현재까지 포도의 VVTL1에 대해서 몇몇 연구가 진행되었지만, 우리나라에서 가장 많이 재배되는 품종인 캠벨에서는 전혀 이루어지지 않았다. 본 연구에서는 캠벨 품종으로부터 VVTL1-homolog 유전자의 게놈 DNA를 분리하여, 염기서열을 분석하였다. VVTL1-homolog 유전자는 일반적으로 PR5 유전자의 구조와 동일한 구조인, intron이 없는 하나의 exon으로만 구성되어 있었다. 염기서열로부터 추론된 VVTL1-homolog 단백질의 아미노산 서열은 VVTL1을 비롯한 다른 품종의 포도에서 분리된 TLP와는 달리 염기성의 등전점을 가지고 있었다. Primer extension 분석을 통해 전사개시 부위를 결정하였고, promoter영역을 포함하는 5'upstream 지역에 전사에 중요한 TATA box (4개)와 CAAT box (1개)가 존재하였으나, 이들의 위치와 수는 다른 PR5 유전자의 promoter와는 다랐다. 이러한 연구결과는 VVTL1-homolog 유전자의 발현이 과육 성숙과정동안 abscisic acid와 스트레스 또는 자극에 의해 발현이 유도되고 있음을 제시해준다. 포도 과육특이발현 promoter인 VVTL1-homolog 유전자의 promoter 분리는, 유전자의 도입에 의해 유용형질을 과육에 나타내는 포도품종을 개발하고자 할 때 효율적으로 사용될 수 있을 것으로 사료된다.

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