• 제목/요약/키워드: Exogenous DNA

검색결과 137건 처리시간 0.025초

CRISPR/Cas9-mediated generation of a Plac8 knockout mouse model

  • Lee, HyunJeong;Kim, Joo-Il;Park, Jin-Sung;Roh, Jae-il;Lee, Jaehoon;Kang, Byeong-Cheol;Lee, Han-Woong
    • Laboraroty Animal Research
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    • 제34권4호
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    • pp.279-287
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    • 2018
  • Placenta specific 8 (PLAC8, also known as ONZIN) is a multi-functional protein that is highly expressed in the intestine, lung, spleen, and innate immune cells, and is involved in various diseases, including cancers, obesity, and innate immune deficiency. Here, we generated a Plac8 knockout mouse using the CRISPR/Cas9 system. The Cas9 mRNA and two single guide RNAs targeting a region near the translation start codon at Plac8 exon 2 were microinjected into mouse zygotes. This successfully eliminated the conventional translation start site, as confirmed by Sanger sequencing and PCR genotyping analysis. Unlike the previous Plac8 deficient models displaying increased adipose tissue and body weights, our male Plac8 knockout mice showed rather lower body weight than sex-matched littermate controls, though the only difference between these two mouse models is genetic context. Differently from the previously constructed embryonic stem cell-derived Plac8 knockout mouse that contains a neomycin resistance cassette, this knockout mouse model is free from a negative selection marker or other external insertions, which will be useful in future studies aimed at elucidating the multi-functional and physiological roles of PLAC8 in various diseases, without interference from exogenous foreign DNA.

Insulin-like growth factor가 소장 점막 세포 증식에 미치는 영향

  • 윤정한
    • 한국영양학회:학술대회논문집
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    • 한국영양학회 1995년도 추계학술대회 초록
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    • pp.11-34
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    • 1995
  • Growth hormone (GH) plays a key role in regulating postnatal growth and can stimulate growth of animals by acting directly on specific receptors on the plasma membrane of tissues or indirectly through stimulating insulin-like growth factor (IGF)-I synthesis and secretion by the liver and other tissues. IGF-I and IGF-Ⅱ are polypeptides with structural similarity with proinsulin that stimulate cell proliferation by endocrine, paracrine and autocrine mechanisms. The initial event in the metabolic action of IGFs on target cells appears to be their binding to specific receptors on the plasma membrane. Current evidence indicates that the mitogenic actions of both IGFs are mediated primarily by binding to the type I IGF receptors, and that IGF action is also mediated by interactions with IGF-binding proteins (IGFBPs). Six distinct IGFBPs have been identified that are characterized by cell-specific interaction, transcriptional and post-translational regulation by many different effectors, and the ability to either potentiate or inhibit IGF actions. Nutritional deficiencies can have their devastating consequence during growth. Although IGF-I is the major mediator of GH's action on somatic growth, nutritional status of an organism is a critical regulator of IGF-I and IGFBPs. Various nutrient deficiencies result in decreased serum IGF-I levels and altered IGFBP levels, but the blood levels of GH are generally unchanged or elevated in malnutrition. Effects of protein, energy, vitamin C and D, and zinc on serum IGF and IGFBP levels and tissue mRNA levels were reviewed in the text. Multiple factors are involved in the regulation of intestinal epithelial cell growth and differentiation. Among these factors the nutritional status of individuals is the most important. The intestinal epithelium is an important site for mitogenic action of the IGFs in vivo, with exogenous IGF-I stimulating mucosal hyperplasia. Therefore, the IGF system appears to provide and important mechanism linking nutrition and the proliferation of intestinal epithelial cells. In order to study the detailed mechanisms by which intestinal mucosa is regulated, we have utilized IEC-6 cells, an intestinal epithelial cell line and Caco-2 cells, a human colon adenocarcinoma cell line. Like intestinal crypt cells analyzed in vivo or freshly isolated intestinal epithelial cells, IEC-6 cells and Caco-2 cells possess abundant quatities of both type Ⅰ and type Ⅱ IGF receptors. Exogenous IGFs stimulate, whereas addition of IGFBP-2 inhibits IEC-6 cell proliferation. To investigate whether endogenously secreted IGFBP-2 inhibit proliferation, IEC-6 cells were transfected with a full-length rat IGFBP-2 cDNA anti-sense expression construct. IEC-6 cells transfected with anti-sense IGFBP-2 protein in medium. These cells grew at a rate faster than the control cells indicating that endogenous IGFBP-2 inhibits proliferation of IEC-6 cells, probably by sequestering IGFs. IEC-6 cells express many characteristics of enterocyte, but do not undergo differentiation. On the other hand, Caco-2 cells undergo a spontaneous enterocyte differentiation. On the other hand, Caco-2 cells undergo a spontaneous enterocyte differentiation after reaching confluency. We have demonstrated that Caco-2 cells produce IGF-Ⅱ, IGFBP-2, IGFBP-3, and an as yet unidentified 31,000 Mr IGFBP, and that both mRNA and peptide secretion of IGFBP-2 and IGFBP-3 increased, but IGFBP-4 mRNA and protein secretion decreased after the cells reached confluency. These changes occurred in parallel to and were coincident with differentiation of the cells, as measured by expression of sucrase-isomaltase. In addition, Caco-2 cell clones forced to overexpress IGFBP-4 by transfection with a rat IGFBP-4 cDNA construct exhibited a significantly slower growth rate under serum-free conditions and had increased expression of sucrase-isomaltase compared with vector control cells. These results indicate that IGFBP-4 inhibits proliferation and stimulates differentiation of Caco-2 cells, probably by inhibiting the mitogenic actions of IGFs.

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가금 생산에서 천연 항산화제로서 식물성 Flavonoids의적용 (Application of Plant Flavonoids as Natural Antioxidants in Poultry Production)

  • 서문강민;장인석
    • 한국가금학회지
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    • 제49권4호
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    • pp.211-220
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    • 2022
  • 최근 닭은 고도화된 육종개량과 함께고밀도사육, 열스트레스, 환경 및 사료 오염 등과 같은내외적스트레스요인에 의해 체 조직에서 과도한 활성산소(ROS) 발생으로 산화적 스트레스가 매우 높다. 산화적 스트레스는 지질과 산화작용으로 DNA 손상, 세포사 등을 유발하여 닭의 건강과 복지에 심각한 문제를 유발한다. 닭은 이러한 내외적 산화적 스트레스에 따라 항산화 효소와 비효소적 항산화 물질에 의해 활성산소를 제거하는 방어 작용을 한다. 최근 영양학적 방법으로서 산화적 스트레스를 억제하는 식물성 flavonoids 사료첨가제 개발에 주목하고 있다. Favonoid를 닭에게 급여 시 소화기관 및 근육에서 지질과산화도 감소, 항산화력 및 항산화 효소 활성도가 증가하는 것으로 항산화제로서 가치가 높다. Flavonoids는 구조화합물이 활성산소와 결합하여 안정화할 수 있는 구조로서 ROS를 소거 또는 항산화 효소의 발현을 통해 ROS를 제거한다. 또한 금속 이온과 결합하 는 킬레이트화 작용, 산화효소 및 NO 생성 억제 등 다양한 항산화 작용이 있다. 그러나 문제점으로 flavonoid 화합물은 용해도가 낮아 소장 흡수세포에서 흡수율이 저하됨으로 이를 극복할 수 있는 체내 운반 기술의 개발이 필요하다. 또한 사료 섭취 시 flavonoid 농도가 가장 높은 곳이 위장관으로 이곳에서 명확한 항산화 효과를 나타내는 용량을 구명하여 첨가 수준을 결정하여야 한다. 항산화 작용기전은 스트레스에 따라 다양한 전사인자들(transcrptional factors)을 통해 스트레스 반응 유전자(vitagenes)의 발현을 유도한다. Flavonoid의 항산화 작용기전으로 Nrf-2와 Nf-kB 등과 같은 전사인사의 발현 과정과 vitagenes을 통해 효율적 항산화 효과를 나타내는 방법에 관한 연구도 중요하다. 닭에서 육종 및 사육 환경 요인에 따라 발생하는 산화 스트레스는 경제성과 더불어 동물복지 측면에서도 심각한 문제를 유발한다. Flavonoid 함유 천연 항산화제 개발과 적용은 가금 산업에서 향후 중요한 분야가 될 것으로 전망된다.

배추 (Brassica campestris L.) 제 1엽의 생장조절에 대한 Nitric Oxide의 역할 (The Role of Nitric Oxide on the Growth Regulation of Chinese Cabbage (Brassica campestris L.) Primary Leaves)

  • 함정훈;진창덕
    • Journal of Plant Biotechnology
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    • 제32권4호
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    • pp.293-300
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    • 2005
  • 배추 유식물 제 1엽의 생장에 미치는 sodium nitroprusside(SNP: NO 공여체)의 생리적 효과를 NO에 의한 세포 분열조절의 가능성 수준에서 조사하였다. 배추 유식물에 서로 다른 농도의 SNP (0, 200, 500 및 $1000\;{\mu}M$)를 8일간 처리하고 배양한 결과 $200\;{\mu}M$ SNP 농도에서 최대 잎 생장을 보이면서 처리농도 의존 방식으로 잎의 생장에 영향을 끼쳤다. 잎의 생장반응과 일치하여, 잎의 엽록소 및 수용성 단백질 함량은 $200\;{\mu}M$농도에서 최대로 증가하여 각각 대조구의 142%와 134%수준을 보였으나, 오히려 $1000\;{\mu}M$처리농도에서는 엽록소의 경우 미미한 감소와 그리고 단백질 함량에서는 13%의 감소가 일어났다. 게다가, 잎 조직의 DNA와 RNA 함량 역시 $200\;{\mu}M$ 처리시 최대로 증가하여 각각 대조구의 142% 및 139% 수준을 보였으나, 반면에 $1000\;{\mu}M$ 농도에서는 각각 대조구의 80% 및 84% 수준까지 감소되었다. 세포벽 합성과 관련된 효소 활성도 변화에서 phenylalanine ammonia-lyase와 guaiacol peroxidase 활성도는 $200\;{\mu}M$ SNP 처리시 대조구에 비해 각각 최대 212%와 134% 증가 하였으나, $1000\;{\mu}M$ 농도에서는 두 효소 활성도 모두 유의한 변화를 보이지 않았다. 결론적으로, 이들 결과는 효과적인 농도에서의 SNP 처리에 의한 배추 제 1엽의 생장 촉진 현상은 세포분열 유도에 대한 NO의 능력에 기인될 수 있음을 제시하는 것이다.

Prostaglandin E2 Reverses Curcumin-Induced Inhibition of Survival Signal Pathways in Human Colorectal Carcinoma (HCT-15) Cell Lines

  • Shehzad, Adeeb;Islam, Salman Ul;Lee, Jaetae;Lee, Young Sup
    • Molecules and Cells
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    • 제37권12호
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    • pp.899-906
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    • 2014
  • Prostaglandin $E_2$ ($PGE_2$) promotes tumor-persistent inflammation, frequently resulting in cancer. Curcumin is a diphenolic turmeric that inhibits carcinogenesis and induces apoptosis. $PGE_2$ inhibits curcumin-induced apoptosis; however, the underlying inhibitory mechanisms in colon cancer cells remain unknown. The aim of the present study is to investigate the survival role of $PGE_2$ and whether addition of exogenous $PGE_2$ affects curcumininduced cell death. HCT-15 cells were treated with curcumin and $PGE_2$, and protein expression levels were investigated via Western blot. Reactive oxygen species (ROS) generation, lipid peroxidation, and intracellular glutathione (GSH) levels were confirmed using specific dyes. The nuclear factor-kappa B ($NF-{\kappa}B$) DNA-binding was measured by electrophoretic mobility shift assay (EMSA). $PGE_2$ inhibited curcumin-induced apoptosis by suppressing oxidative stress and degradation of PARP and lamin B. However, exposure of cells to the EP2 receptor antagonist, AH6809, and the PKA inhibitor, H89, before treatment with $PGE_2$ or curcumin abolished the protective effect of $PGE_2$ and enhanced curcumin-induced cell death. $PGE_2$ activates PKA, which is required for cAMP-mediated transcriptional activation of CREB. $PGE_2$ also activated the Ras/Raf/Erk pathway, and pretreatment with PD98059 abolished the protective effect of $PGE_2$. Furthermore, curcumin treatment greatly reduced phosphorylation of CREB, followed by a concomitant reduction of $NF-{\kappa}B$ (p50 and p65) subunit activation. $PGE_2$ markedly activated nuclear translocation of $NF-{\kappa}B$. EMSA confirmed the DNA-binding activities of $NF-{\kappa}B$ subunits. These results suggest that inhibition of curcumin-induced apoptosis by $PGE_2$ through activation of PKA, Ras, and $NF-{\kappa}B$ signaling pathways may provide a molecular basis for the reversal of curcumin-induced colon carcinoma cell death.

Thraustochytrium sp. 26185 균주에서의 $\Delta5$ desaturase 유전자 클로닝 및 Pichia pastoris 내에서의 기능적 발현 (Cloning of a $\Delta5$ desaturase from Thraustochytrium sp. 26185 and Functional Expression in Pichia Pastoris)

  • 정태호;이수진;오효정;김근중;허병기
    • KSBB Journal
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    • 제20권2호
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    • pp.93-99
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    • 2005
  • 불포화지방산의 생합성능이 뛰어나다고 알려진 Thraustochytrids 균주 중 26185를 대상으로 arachidonic acid (AA C20:4 n-6)를 포함하는 PUFA 생산에 관여하는 유전자의 하나로서 key enzyme인 desaturase를 보다 효율적이고 안정적인 방법으로 cloning한 후 결과물을 분석하였다. 이를 위해 실험균주인 26185 균주를 대상으로 효율적인 전체 nucleic acids 추출법을 개발하였으며 관련된 기법의 활용을 통해 일반적으로 활용이 가능한 효과적이 방법임을 확인하였다. 확보된 유전체를 통한 direct PCR의 결과물을 기존에 알려진 cDNA 합성방법에 의한 결과물과 비교하였을 때 동일한 결과물임을 확인하였다. 이는 Thraustochytrids 관련 균주로부터 지방산 생합성에 관련된 효소군을 탐색하는 방법이 cDNA 합성방법에 의하지 않고 보다 직접적으로 진행될 수 있음을 제안할 수 있는 하나의 결과물로 생각되어진다. 획득된 유전자를 같은 진핵세포인 P. pastoris를 숙주로 하여 유전자를 도입하고 활성을 재현성 있게 규명함으로써 인공진화 혹은 재조합균체의 개발이 가능하다는 사실을 부분적으로 제시할 수 있었다.

암종양유전자 SETDB1과 FosB 발현에 대한 p53의 음성 조절기작 (Negative Regulation of Tumor Suppressor p53 at the Promoter Regions of Oncogenic SETDB1 and FosB Genes)

  • 윤현지;나한흠;김근철
    • 생명과학회지
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    • 제30권12호
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    • pp.1070-1077
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    • 2020
  • 암세포에 항암제를 처리하게 되면, 세포증식, 이동성 또는 약물 내성과 관련된 많은 유전자들의 발현 변화가 발생하며, 유전자 발현 변화는 상호간의 조절 네트워크에 의해 밀접하게 연결될 수도 있다고 추측된다. 본 연구에서 p53 유전자 유무가 다른 A549와 H1299 인간 폐암세포에 독소루비신을 처리하면, 원종양유전자인 FosB의 발현은 증가하지만, 원종양유전자인 SETDB1의 발현은 감소하지만, 단백질 발현의 양적인 차이가 발생한다는 사실을 알 수 있었다. TF motif binding 분석 프로그램을 이용하여 SETDB1과 FosB 프로모터지역에서의 p53단백질의 결합가능성을 분석한 결과, SETDB1의 경우 18부위, FosB의 경우 21 부위의 p53 결합부위를 예측할 수 있었다. SETDB1과 FosB 프로모터의 subcloning하여 luciferase 분석을 수행한 결과, p53은 SETDB1과 FosB을 음성적으로 조절한다는 사실을 알 수 있었다. 또한, H1299 세포에 p53의 과발현은 SETDB1 과 FosB의 발현을 감소시킬 수 있음을 RT-PCR, western blot, qPCR, 면역염색 실험을 통해 확인하였다. 이러한 결과를 종합하여 본다면, p53에 의한 SETDB1과 FosB 유전자 발현 조절은 항암제 처리과정에서 나타나는 암세포의 사멸과 생존에 대한 기능적 조절 네트워크로 사료된다.

Developmental Genetic Analysis of Avian Primordial Germ Cells and the Application to Poultry Biotechnology

  • Kagami, H.
    • 한국가금학회지
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    • 제28권2호
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    • pp.135-142
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    • 2001
  • A novel sterategy has been established to determine the origin of the Primordial Germ Cells (PGCs) in avian embryos directly and the developmental fate of the PGCs for the application to Poultry biotechnology. Cells were removed from 1) the centre of area pellucida, 2) the outer of area pellucida and 3) the area opaca of the stage X blastoderm (Eyal-Giladi & Kochav, 1976). When the cells were removed from the centre of area pellucida, the mean number of circulating PGCs in blood was significantly decreased in the embryo at stage 15 (Hamburger & Hamilton, 1951) as compared to intact embryos. When the cells were replenished with donor cells, no reduction in the PGCs number was observed. The removal of cells at the outer of area pellucida or at the area opaca had no effect on the number of PGCs. In case, another set of the manipulated embryos were cultured ex vivo to the hatching and reared to the sexual maturity, the absence of germ cells and degeneration of seminiferous tubules was observed in resulting chickens derived from the blastoderm in which the cells were removed from the centre of the area pellucida. It was concluded that the avian Primordial Germ cells are originated at the center of area pellucida. Developmental ability of the cells to differentiate into somatic cells and germ cells in chimeras were analyzed. Somatic chimerism was detected as black feather attributed from donor cells. Molecular identification by use of female - specific DNA was performed. It was confirmed that the donor cells could be differentiated into chimeric body and erythrocytes. Donor cells retained the ability to differentiate into germline in chimeric gonads. More than 70% of the generated chimeras transmitted donor derived gametes to their offspring indicating that the cells at the center of area pellucida had the high ability to differentiate into germ cells. A molecular technique to identify germline chimerism has been developed by use of gene scan analysis. Strain specific DNA fragments were amplified by the method. It would be greatly contributed for the detection of germline chimerism. Mixed- sex chimeras which contained both male and female cells were produced to investigate the developmental fate of male and female cells in ovary and testes. The sex combinations of donor and recipient of the resulting chimeras were following 4 pairs; (1) chimeras (ZZ/ZZ) produced by a male donor (ZZ) and a male recipient (ZZ), (2) chimeras (ZW/ZW) produced by a female donor (ZW) and a female recipient (ZW), (3) chimeras (ZZ/ZW) Produce by a male donor (ZZ) and a female recipient (ZW), (4) chimeras (ZW/ZZ) produced by a female donor (ZW) and a male recipient (ZZ). It was found that genetically male avian germ cells could differentiate into functional ova and that genetically female germ cells can differentiate into functional spermatozoa in the gonad of the mixed- sex chimeras. An ability for introduction of exogenous DNA into the PGCs from stage X blastoderms were analyzed. Two reporter genes, SV-$\beta$gal and RSV-GFP, were introduced into the PGCs. Expression of bacterial/gal was improved by complexing DNA with liposome detectedcc in 75% of embryos at 3 days embryos. At the embryos incubated for 1 day, expression of the GFP was observed all the embryos. At day 3 of incubation, GFP was detected in about 70% of the manipulated embryos. In case of GFP, expression of the transgene was detected in 30 %e of the manipulated embryos. These results suggested that the cells is one of the most promising vectors for transgenesis. The established strategy should be very powerfull for application to poultry biotechnology.

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노화의 기전과 예방 (Mechanism of aging and prevention)

  • 김재식
    • IMMUNE NETWORK
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    • 제1권2호
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    • pp.104-108
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    • 2001
  • Aging is a senescence and defined as a normal physiologic and structural alterations in almost all organ systems with age. As Leonard Hayflick, one of the first gerontologists to propose a theory of biologic aging, indicated that a theory of aging or longevity satisfies the changes of above conditions to be universal, progressive, intrinsic and deleterious. Although a number of theories have been proposed, it is now clear that cell aging (cell senescence) is multifactorial. No single mechanism can account for the many varied manifestations of biological aging. Many theories have been proposed in attempt to understand and explain the process of aging. Aging is effected in individual by genetic factors, diet, social conditions, and the occurrence of age-related diseases as diabetes, hypertension, and arthritis. It involves an endogenous molecular program of cellular senescence as well as continuous exposure throughout life to adverse exogenous influences, leading to progressive infringement on the cell's survivability so called wear and tear. So we could say the basic mechanism of aging depends on the irreversible and universal processes at cellular and molecular level. The immediate cause of these changes is probably an interference in the function of cell's macromolecules-DNA, RNA, and cell proteins-and in the flow of information between these macromolecules. The crucial questions, unanswered at present, concerns what causes these changes in truth. Common theories of aging are able to classify as followings for the easy comprehension. 1. Biological, 1) molecular theories - a. error theory, b. programmed aging theory, c. somatic mutation theory, d. transcription theory, e. run-out-of program theory, 2) cellular theories - a. wear and tear theory, b. cross-link theory, c. clinker theory, d. free radical theory, e. waste product theory, 3) system level theory-a. immunologic/autoimmune theory, 4) others - a. telomere theory, b. rate of living theory, c. stress theory, etc. Prevention of aging is theoretically depending on the cause or theory of aging. However no single theory is available and no definite method of delaying the aging process is possible by this moment. The most popular action is anti-oxidant therapy using vitamin E and C, melatonin and DHEA, etc. Another proposal for the reverse of life-span is TCP-17 and IL-16 administration from the mouse bone marrow B cell line study for the immunoglobulin VDJ rearrangement with RAG-1 and RAG-2. Recently conclusional suggestion for the extending of maximum life-span thought to be the calory restriction.

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Identification of a Novel Human Zinc Finger Gene, ZNF438, with Transcription Inhibition Activity

  • Zhong, Zhaomin;Wan, Bo;Qiu, Yun;Ni, Jun;Tang, Wenwen;Chen, Xinya;Yang, Yun;Shen, Suqin;Wang, Ying;Bai, Meirong;Lang, Qingyu;Yu, Long
    • BMB Reports
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    • 제40권4호
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    • pp.517-524
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    • 2007
  • There were many different families of zinc finger proteins that contained multiple cysteine and/or histidine residues and used zinc to stabilize their folds. The classical C2H2 zinc finger proteins were the founding members of this superfamily and were among the most abundant proteins in eukaryotic genomes. C2H2 proteins typically contained several C2H2 fingers that made tandem contacts along the DNA. Here we reported a novel C2H2 type zinc finger gene, ZNF438, which encoded 828 amino acids that formed five zinc finger domains. Bioinformatics analysis revealed that the ZNF438 was mapped to human chromosome 10p11.2 and shared 62% identity with rat and mouse homologues. RT-PCR analysis indicated that it was ubiquitously expressed in 18 human adult tissues. With immunofluorescence assay, it was shown that the exogenous Flag-tagged ZNF438 was located in nucleus of COS-7 cells. To further explore the function of ZNF438, we examined the transcriptional activity of ZNF438 protein by transfecting recombinant pM-ZNF438 into mammalian cells. The subsequent analysis based on the duel luciferase assay system showed that ZNF438 was a transcriptional repressor.