• Title/Summary/Keyword: Molecular evolution

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연관성 규칙에 기반한 보존된 단백질 도베인 조합의 식별 (Identification of Conserved Protein Domain Combination based on Association Rule)

  • 정석훈;장우혁;한동수
    • 한국정보과학회논문지:컴퓨팅의 실제 및 레터
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    • 제15권5호
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    • pp.375-379
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    • 2009
  • 도메인은 단백질의 진화와 삼차구조 및 분자 기능의 기본 단위체이다. 단백질은 한 개 이상의 도메인들로 구정 되며, 단백질의 기능 또한 각 도메인이 가진 기능의 집합으로 구현된다. 단백질은 특정 기능을 담당하기 위해 진화되어 왔으므로, 도메인 또한 단백질 내에서 기능을 위한 특정 조합 패턴, 즉 보존도메인 조합을 가진다. 본 논문은 각 도메인 조합의 진화상 보존 정도를 측정할 수 있는 연관성 규칙 기반 계산 기법을 제안한다. 제안된 기법은 기존 기법에서 주로 고려되었던 도메인 조합의 빈도뿐 아니라, 조합 내 소속 도메인간의 상호 의존도를 측정하여 주어진 조합의 보존 정도를 산출한다. 이를 기반으로 S.cerevisiae의 단백질을 대상으로 보존 도메인 조합을 추출하였으며, Gene Ontology를 이용하여 그 생물학적 의미를 분석하였다. 그 결과 제안된 기법으로 추출된 보존 도메인 조합은 기존의 것에 비해 조합 내 기능의 유사도가 높았으며, 따라서 제안된 기법이 생물학적 기능의 협업 위해 보존된 도메인 조합의 추출에 우수하다 할 것이다. 또한 S.cerevisiae 단백질체에는 서로 의존도가 높고 자주 나타나는 보존 도메인 조합이 존재하며, 그러한 조합들은 molecular function의 협업과 관련 있음을 밝혀냈다.

Evidence of Tandem Repeat and Extra Thiol-groups Resulted in the Polymeric Formation of Bovine Haptoglobin: A Unique Structure of Hp 2-2 Phenotype

  • Lai, Yi An;Lai, I Hsiang;Tseng, Chi Feng;Lee, James;Mao, Simon J.T.
    • BMB Reports
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    • 제40권6호
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    • pp.1028-1038
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    • 2007
  • Human plasma Hp is classified as 1-1, 2-1, and 2-2. They are inherited from two alleles Hp 1 and Hp 2, but there is only Hp 1 in almost all the animal species. Hp 2-2 molecule is extremely large and heterogeneous associated with the development of inflammatory-related diseases. In this study, we expressed entire bovine Hp in E. coli as a $\alpha\beta$ linear form. Interestingly, the antibodies prepared against this form could recognize the subunit of native Hp. In stead of a complicated column method, the antibody was able to isolate bovine Hp via immunoaffinity and gelfiltration columns. The isolated Hp is polymeric containing two major molecular forms (660 and 730 kDa). Their size and hemoglobin binding complex are significantly larger than that of human Hp 2-2. The amino-acid sequence deducted from the nucleotide sequence is similar to human Hp 2 containing a tandem repeat over the $\alpha$ chain. Thus, the Hp 2 allele is not unique in human. We also found that there is one additional -SH group (Cys-97) in bovine $\alpha$ chain with a total of 8 -SH groups, which may be responsible for the overall polymeric structure that is markedly different from human Hp 2-2. The significance of the finding and its relationship to structural evolution are also discussed.

탄저균 pagA 유전자의 분자적 다양성 (Molecular Diversity of pagA Gene from Baciilus anthracis)

  • 김성주;조기승;최영길;채영규
    • 미생물학회지
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    • 제37권1호
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    • pp.49-55
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    • 2001
  • 탄저(anthrax)는 그람양성이고 포자형성 세균인 탄저균(Bacillus anthracis)으로부터 발명되어진다. 탄저독소는 세가지 요소로 구성되어 있으며, 방어항원(PA)은 숙주세포 표면에서 탄저 독소단백질 및 이종단백질을 세포질 내로 이동시키는 역할을 한다. 본 연구에서는 PA의 분자적 다양성과 국내에서 탄저균의 진화를 이해하고 확인하기 위해 국내외에서 발견된 탄저균 4 균주와 기존에 보고된 탄저균 26 균주로부터 2,294 bp의 PA유전자(pagA)의 DNA 염기서열을 분식하였다. 탄저균 30 균주으로부터 PA유전자의 염기서열을 비교 분식한 결과, 8개 부위에서 돌연변이를 확인 하였다. 돌연변이가 일어난 부위에 따라서 탄저균을 10종류의 PA 유전자형과 4 종류의 PA 표현형으로 구분하였다. 한국 경주에서 분류된 B. anthracis BAK는 600번째 아미노산 alanine이 valine으로 바뀌어서 B. anthracis ATCC 14185 보다 LF와 PA의 결합 위치를 근접하게 하였다. 탄저균의 Pag의 염기서열을 통한 계통분석학적인 분석 결과는 염색체상에서의 분류와 일치하여 탄저균사이에서 pXO1 플라스미드의 수평적인 이동은 없는 것으로 사료된다.

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Genetic Diversity among Local Populations of the Gold-spotted Pond Frog, Rana plancyi chosenica (Amphibia: Ranidae), Assessed by Mitochondrial Cytochrome b Gene and Control Region Sequences

  • Min, Mi-Sook;Park, Sun-Kyung;Che, Jing;Park, Dae-Sik;Lee, Hang
    • Animal Systematics, Evolution and Diversity
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    • 제24권1호
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    • pp.25-32
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    • 2008
  • The Gold-spotted pond frog, Rana plancyi chosenica, designated as a vulnerable species by IUCN Red list. This species is a typical example facing local population threats and extinction due to human activities in South Korea. A strategic conservation plan for this endangered species is urgently needed. In order to provide information for future conservation planning, accurate information on the genetic diversity and taxonomic status is needed for the establishment of conservation units for this species. In this study, we used a molecular genetic approach using the mitochondrial cytochrome b gene and control region sequences to find the genetic diversity of gold-spotted pond frogs within South Korea. We sequenced the mitochondrial DNA cytochrome b gene and control region of 77 individuals from 11 populations in South Korea, and one from Chongqing, China. A total of 15 cytochrome b gene haplotypes and 34 control region haplotypes were identified from Korean gold-spotted pond frogs. Mean sequence diversity among Korean gold-spotted pond frogs was 0.31% (0.0-0.8%) and 0.51% (0.0-1.0%), respectively. Most Korean populations had at least one unique haplotype for each locus. The Taean, Ansan and Cheongwon populations had no haplotypes shared with other populations. There was a sequence divergence between Korean and Chinese gold-spotted pond frogs (1.3% for cyt b; 2.9% for control region). Analysis of genetic distances and phylogenetic trees based on both cytochrome b and control region sequences indicate that the Korean gold-spotted pond frog are genetically differentiated from those in China.

오징어과의 Kinesin Superfamily Proteins (KIFs)의 유전자분석 및 계통분석 (Sequences and Phylogenic Analysis of Squid New Kinesin Superfamily Proteins (KIFs))

  • 김상진;석대현
    • 생명과학회지
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    • 제22권3호
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    • pp.293-297
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    • 2012
  • 분자 운동 단백질은 신경세포 내의 세포체에서 특정 목적지까지 소포를 이동시키는데 관여한다. 오징어의 거대 축삭은 간단한 제거조작으로 축삭을 분리 가능하기 때문에 신경세포내 물질이동기전 연구의 좋은 모텔로 활용 가능하다. 이전연구에서 오징어 거대축삭의 소포들은 미세소관을 따라 이동하는 키네신 항체에 의하여 운반됨이 확인되었다. 본 연구는 오징어 뇌에 존재하는 키네신들을 크로닝하고, 분리된 유전자의 분석을 행하기 위하여 키네신 운동 도메인에서 잘 보존된 아미노산 배열에 해당되는 영역에 DNA primer을 이용하여 새로운 6종류의 키네신을 분리하였다. 오징어의 키네신들과 생쥐의 키네신들의 motor 영역의 아미노산분석에서 보존된 영역이 존재하며, Maximum Parsimony (MP) 방법, Neighbor-Joining (NJ) 방법, Minimum Evolution (ME) 방법, 그리고 Maximum likelihood (ML) 방법을 기초로 한 계통분석에서 생쥐의 키네신과 높은 상동성을 나타내었으며, 또한 계통수에서도 높은 상관관계가 확인되었다.

Crystal Structure of Histidine Triad Nucleotide-Binding Protein from the Pathogenic Fungus Candida albicans

  • Jung, Ahjin;Yun, Ji-Sook;Kim, Shinae;Kim, Sang Ryong;Shin, Minsang;Cho, Dong Hyung;Choi, Kwang Shik;Chang, Jeong Ho
    • Molecules and Cells
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    • 제42권1호
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    • pp.56-66
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    • 2019
  • Histidine triad nucleotide-binding protein (HINT) is a member of the histidine triad (HIT) superfamily, which has hydrolase activity owing to a histidine triad motif. The HIT superfamily can be divided to five classes with functions in galactose metabolism, DNA repair, and tumor suppression. HINTs are highly conserved from archaea to humans and function as tumor suppressors, translation regulators, and neuropathy inhibitors. Although the structures of HINT proteins from various species have been reported, limited structural information is available for fungal species. Here, to elucidate the structural features and functional diversity of HINTs, we determined the crystal structure of HINT from the pathogenic fungus Candida albicans (CaHINT) in complex with zinc ions at a resolution of $2.5{\AA}$. Based on structural comparisons, the monomer of CaHINT overlaid best with HINT protein from the protozoal species Leishmania major. Additionally, structural comparisons with human HINT revealed an additional helix at the C-terminus of CaHINT. Interestingly, the extended C-terminal helix interacted with the N-terminal loop (${\alpha}1-{\beta}1$) and with the ${\alpha}3$ helix, which appeared to stabilize the dimerization of CaHINT. In the C-terminal region, structural and sequence comparisons showed strong relationships among 19 diverse species from archea to humans, suggesting early separation in the course of evolution. Further studies are required to address the functional significance of variations in the C-terminal region. This structural analysis of CaHINT provided important insights into the molecular aspects of evolution within the HIT superfamily.

Increased mRNA Stability and Expression Level of Croceibacter atlanticus Lipase Gene Developed through Molecular Evolution Process

  • Jeong, Han Byeol;Kim, Hyung Kwoun
    • Journal of Microbiology and Biotechnology
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    • 제31권6호
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    • pp.882-889
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    • 2021
  • In order to use an enzyme industrially, it is necessary to increase the activity of the enzyme and optimize the reaction characteristics through molecular evolution techniques. We used the error-prone PCR method to improve the reaction characteristics of LipCA lipase discovered in Antarctic Croceibacter atlanticus. Recombinant Escherichia coli colonies showing large halo zones were selected in tributyrin-containing medium. The lipase activity of one mutant strain (M3-1) was significantly increased, compared to the wild-type (WT) strain. M3-1 strain produced about three times more lipase enzyme than did WT strain. After confirming the nucleotide sequence of the M3-1 gene to be different from that of the WT gene by four bases (73, 381, 756, and 822), the secondary structures of WT and M3-1 mRNA were predicted and compared by RNAfold web program. Compared to the mean free energy (MFE) of WT mRNA, that of M3-1 mRNA was lowered by 4.4 kcal/mol, and the MFE value was significantly lowered by mutations of bases 73 and 756. Site-directed mutagenesis was performed to find out which of the four base mutations actually affected the enzyme expression level. Among them, one mutant enzyme production decreased as WT enzyme production when the base 73 was changed (T→ C). These results show that one base change at position 73 can significantly affect protein expression level, and demonstrate that changing the mRNA sequence can increase the stability of mRNA, and can increase the production of foreign protein in E. coli.

한국 고유 담수어종 참갈겨니(Zacco koreanus) 개체군의 계통지리학 및 집단유전학 연구 (Phylogeographic and population genetic study of a Korean endemic freshwater fish species, Zacco koreanus)

  • 김유림;장지은;최희규;이혁제
    • 환경생물
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    • 제38권4호
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    • pp.650-657
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    • 2020
  • 본 연구는 동해유입하천(강릉 연곡천, 양양 남대천), 한강수계(섬강, 속사천), 낙동강수계(길안천)에 서식하는 참갈겨니(Zacco koreanus) 개체군을 대상으로 채집된 110개체로부터 미토콘드리아 DNA COI 유전자(mitochondrial DNA cytochrome oxidase I)를 분자마커로 이용하여 계통지리학적 분석을 수행하고, 추가적으로 강릉 연곡천 상·중·하류 개체군을 대상으로 집단유전학적 분석을 수행하였다. 계통지리학 분석 결과, 동해유입하천과 한강수계의 참갈겨니 개체군은 동일한 단일계통을 나타내었고, 낙동강수계의 개체군은 상이한 계통으로 분기됨을 나타내었으며, 다른 수계 계통과의 유전적 거리 수치 범위가 평균 4.0%(3.7~4.2%)로서 동일종 이상 수준을 보여 잠재종 가능성을 시사하였다. 참갈겨니가 서식하는 수계에 따른 형태학적 차이는 연구된 바 있으나 DNA 염기서열의 변이를 이용한 분자유전학적 연구는 부족한 실정이므로 본 연구 결과는 향후 낙동강수계 참갈겨니 개체군의 계통분류학적 연구에 기초자료로 활용될 수 있을 것으로 판단된다. 추후 집단유전체학 및 생태학적 분석을 통하여 관찰된 낙동강수계 계통이 다른 종, 잠재종 혹은 단순히 큰 수준의 종내 변이를 나타내는지에 대한 추가적인 연구가 필요하다. 강릉 연곡천 상·중·하류에 서식하는 개체군의 집단유전학 분석을 통해 중류의 개체군이 상대적으로 높은 다양성을 나타냈으며 상·중·하류 개체군 간의 유전적 차이는 나타나지 않았다. 이는 상·중·하류 개체군 간 유전자 확산이 원활하게 이루어지고 있음을 의미하며 하천의 개체군 간 연결성을 판단할 수 있는 지표로 활용될 수 있다. 하지만 생태학적 시간 스케일의 연구에 더 적합한 분자마커를 이용한 추후 연구가 필요할 것으로 사료된다.

Cryptic variation, molecular data, and the challenge of conserving plant diversity in oceanic archipelagos: the critical role of plant systematics

  • Crawford, Daniel J.;Stuessy, Tod F.
    • 식물분류학회지
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    • 제46권2호
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    • pp.129-148
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    • 2016
  • Plant species on oceanic islands comprise nearly 25% of described vascular plants on only 5% of the Earth's land surface yet are among the most rare and endangered plants. Conservation of plant biodiversity on islands poses particular challenges because many species occur in a few and/or small populations, and their habitats on islands are often disturbed by the activity of humans or by natural processes such as landslides and volcanoes. In addition to described species, evidence is accumulating that there are likely significant numbers of "cryptic" species in oceanic archipelagos. Plant systematists, in collaboration with others in the botanical disciplines, are critical to the discovery of the subtle diversity in oceanic island floras. Molecular data will play an ever increasing role in revealing variation in island lineages. However, the input from plant systematists and other organismal biologists will continue to be important in calling attention to morphological and ecological variation in natural populations and in the discovery of "new" populations that can inform sampling for molecular analyses. Conversely, organismal biologists can provide basic information necessary for understanding the biology of the molecular variants, including diagnostic morphological characters, reproductive biology, habitat, etc. Such basic information is important when describing new species and arguing for their protection. Hybridization presents one of the most challenging problems in the conservation of insular plant diversity, with the process having the potential to decrease diversity in several ways including the merging of species into hybrid swarms or conversely hybridization may generate stable novel recombinants that merit recognition as new species. These processes are often operative in recent radiations in which intrinsic barriers to gene flow have not evolved. The knowledge and continued monitoring of plant populations in the dynamic landscapes on oceanic islands are critical to the preservation of their plant diversity.

Comparative Analysis of the Conserved Functions of Arabidopsis DRL1 and Yeast KTI12

  • Jun, Sang Eun;Cho, Kiu-Hyung;Hwang, Ji-Young;Abdel-Fattah, Wael;Hammermeister, Alexander;Schaffrath, Raffael;Bowman, John L.;Kim, Gyung-Tae
    • Molecules and Cells
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    • 제38권3호
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    • pp.243-250
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    • 2015
  • Patterning of the polar axis during the early leaf developmental stage is established by cell-to-cell communication between the shoot apical meristem (SAM) and the leaf primordia. In a previous study, we showed that the DRL1 gene, which encodes a homolog of the Elongator-associated protein KTI12 of yeast, acts as a positive regulator of adaxial leaf patterning and shoot meristem activity. To determine the evolutionally conserved functions of DRL1, we performed a comparison of the deduced amino acid sequence of DRL1 and its yeast homolog, KTI12, and found that while overall homology was low, well-conserved domains were presented. DRL1 contained two conserved plant-specific domains. Expression of the DRL1 gene in a yeast KTI12-deficient yeast mutant suppressed the growth retardation phenotype, but did not rescue the caffeine sensitivity, indicating that the role of Arabidopsis Elongator-associated protein is partially conserved with yeast KTI12, but may have changed between yeast and plants in response to caffeine during the course of evolution. In addition, elevated expression of DRL1 gene triggered zymocin sensitivity, while overexpression of KTI12 maintained zymocin resistance, indicating that the function of Arabidopsis DRL1 may not overlap with yeast KTI12 with regards to toxin sensitivity. In this study, expression analysis showed that class-I KNOX genes were downregulated in the shoot apex, and that YAB and KAN were upregulated in leaves of the Arabidopsis drl1- 101 mutant. Our results provide insight into the communication network between the SAM and leaf primordia required for the establishment of leaf polarity by mediating histone acetylation or through other mechanisms.