• Title/Summary/Keyword: human-to-human (H2H)

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Generation of Transgenic Chickens that Produce Bioactive Human Thrombopoietin (재조합 hTPO를 생산하는 형질전환 닭의 개발)

  • Kwon, Mo-Sun;Koo, Bon-Chul;Roh, Ji-Yeol;Lee, Hyun-A;Kim, Te-Oan
    • Reproductive and Developmental Biology
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    • v.32 no.3
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    • pp.159-166
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    • 2008
  • We report here the generation of transgenic chickens that produce human Thrombopoietin (hTPO) using replication-defective Moloney murine leukemia virus (MoMLV)-based vectors packaged with vesicular stomatitis virus G glycoprotein (VSV-G). For the retrovirus vectors, we used hCMV (human Cytomegalovirus) internal promoter to drive the hTPO gene. After confirming the expression of the hTPO gene in various target cells, the concentrated solution of recombinant retrovirus was injected beneath the blastoderm of non-incubated chicken embryos (stage X). The biological activity of the recombinant hTPO in target cell was significantly higher than its commercially available counterpart. Out of 132 injected eggs, 11 chicks hatched after 21 days of incubation and 4 hatched chicks were found to express vector-encoded hTPO gene. However, 3 out of the 4 transgenics died within one month of hatching. The major significance of this study is that it is one of the very few successful reports on the production of transgenic chickens as bioreactors aiming mass production of commercially valuable and biological active human cytokine proteins.

High-yield Production of Functional Human Lactoferrin in Transgenic Cell Cultures of Siberian Ginseng(Acanthopanax senticosus)

  • Jo, Seung-Hyun;Kwon, Suk-Yoon;Park, Doo-Sang;Yang, Kyoung-Sil;Kim, Jae-Whune;Lee, Ki-Teak;Kwak, Sang-Soo;Lee, Haeng-Soon
    • Biotechnology and Bioprocess Engineering:BBE
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    • v.11 no.5
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    • pp.442-448
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    • 2006
  • Human lactoferrin (hLf) is an iron-binding glycoprotein that has been considered to play many biological roles in the human, including the stimulation of the immune system, antimicrobial and anti-inflammatory effects, and regulation of iron absorption. We generated transgenic Siberian ginseng (Acanthopanax senticosus) cell cultures producing a functional hLf protein using the signal peptide sequence from the endoplasmic reticulum and driven by an oxidative stress-inducible SWPA2 promoter which is highly expressed in plant cell cultures. The production of hLf increased proportionally to cell growth and showed a maximal level (up to 3.6% of total soluble protein) at the stationary phase in suspension cultures. Full-length hLf protein was identified by immunoblot analysis in transgenic cell cultures of Siberian ginseng. Recombinant hLf (rhLf) was purified from suspension cells of Siberian ginseng by ammonium sulfate precipitation, cation-exchange and gel filtration chromatography. N-terminal sequences of rhLf were identical to native hLf (nhLf). The overall monosaccharide composition of rhLf showed the presence of plant specific xylose while sialic acid is absent. Antibacterial activity of purified rhLf was higher than that of nhLf. Taken together, we anticipate that medicinal Siberian ginseng cultured cells, as demonstrated by this study, will be a biotechnologically useful source for commercial production of functional hLf not requiring further purification.

Effect of Human Follicular Fluid (hFF) and Temperatures on the Motility of Testicular Sperm Cultured In Vitro (고환 내 정자의 체외배양 중 운동성에 미치는 인간 난포액과 온도의 영향)

  • 신지수;손지온;이동률;김계성;정태규;김낙근;한지은;이우식;윤태기
    • Journal of Embryo Transfer
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    • v.19 no.1
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    • pp.11-18
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    • 2004
  • The aim of this study was to evaluate the improvement of testicular sperm motility following different culture conditions such as human follicular fluid (hFF) and temperature. Testicular tissues obtained from azoospermia (n=21) were minced into small pieces by blade and recovered sperm suspension were cultured in Ham's F10 with or without 40% hFF at different temperatures (Group I: 37$^{\circ}C$/with hFF, Group II: 32$^{\circ}C$/withGroup III: 37$^{\circ}C$/without, Group IV:32$^{\circ}C$ /without The motility and viability of sperm were monitored during culture for 48 hours. Initial motility of testicular sperm was 10.9$\pm$1.9%. After 24 hours culture, sperm motility was 23.5$\pm$2.1% (Group I), 8.1$\pm$1.1% (Group II), 10.4$\pm$ 1.4% (Group III) and 4.0$\pm$0.8% (Group IV), respectively. After 48 hours, the motility had been changed as 32$\pm$2.3% (Group I), 14.3$\pm$1.7% (Group II), 5.3 $\pm$1.4% (Group III) and 4.3$\pm$0.9% (Group IV). In hFF group (I and II), sperm motility of group I cultured at 37$^{\circ}C$ was higher than those of group II at 32$^{\circ}C$. But, sperm viability of group I cultured at 37$^{\circ}C$ was lower than those of group II at 32$^{\circ}C$ (54.4$\pm$4.1% vs. 59.4$\pm$3.7%) after cultured for 48 hours. We acquired the best motility of testicular sperm when performed in vitro culture for 48 hours in hFF supplemented medium at 37$^{\circ}C$. Increase of sperm motility by in vitro culture could be useful tool fur human TESE-ICSI program.

A splice variant of human Bmal1 acts as a negative regulator of the molecular circadian clock

  • Lee, Jiwon;Park, Eonyoung;Kim, Ga Hye;Kwon, Ilmin;Kim, Kyungjin
    • Experimental and Molecular Medicine
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    • v.50 no.12
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    • pp.6.1-6.10
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    • 2018
  • Bmal1 is one of the key molecules that controls the mammalian molecular clock. In humans, two isoforms of Bmal1 are generated by alternative RNA splicing. Unlike the extensively studied hBmal1b, the canonical form of Bmal1 in most species, the expression and/or function of another human-specific isoform, hBmal1a, are poorly understood. Due to the lack of the N-terminal nuclear localization signal (NLS), hBMAL1a does not enter the nucleus as hBMAL1b does. However, despite the lack of the NLS, hBMAL1a still dimerizes with either hCLOCK or hBMAL1b and thereby promotes cytoplasmic retention or protein degradation, respectively. Consequently, hBMAL1a interferes with hCLOCK:hBMAL1b-induced transcriptional activation and the circadian oscillation of Period2. Moreover, when the expression of endogenous hBmal1a is aborted by CRISPR/Cas9-mediated knockout, the rhythmic expression of hPer2 and hBmal1b is restored in cultured HeLa cells. Together, these results suggest a role for hBMAL1a as a negative regulator of the mammalian molecular clock.

Heterologous Expression of Human SLC1A5v2 as a Functional Glutamine Transporter in Escherichia coli

  • E Young Kim;Ji Won Park;Ok Bin Kim
    • Microbiology and Biotechnology Letters
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    • v.51 no.1
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    • pp.37-42
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    • 2023
  • Neutral and non-essential amino acid, glutamine (Gln), plays an essential role in supplying nitrogen to all the amino acids and nucleotides in the mammalian body. Gln is also the most important carbon source that provides intermediates for gluconeogenesis and fatty acid synthesis and supplements the tricarboxylic acid cycle in fast-growing cancer cells. Among the known 14 Gln transporter genes, soluted carrier family 1 member 5 (SLC1A5) has been reported to be closely associated with cancer cell growth. Three variants (v1, v2, and v3) have been derived from SLC1A5. Here, we established a heterologous gene expression system for the active form of human SLC1A5 variant-2 (hSLC1A5v2) in Escherichia coli. v2 is the smallest variant that has not yet been studied. Four expression systems were investigated: pBAD, pCold, pET, and pQE. We also addressed the problem of codon usage bias. Although pCold and pET overexpressed hSLC1A5v2 in E. coli, they were functionally inactive. hSLC1A5v2 using the pBAD system was able to catalyze the successful transport of Gln, even if it was not highly expressed. Initial activity of hSLC1A5v2 for [14C] Gln uptake in E. coli reached up to 6.73 μmole·min-1·gDW-1 when the cell was induced with 80 mM L-arabinose. In this study, we demonstrated a heterologous expression system for the human membrane protein, SLC1A5, in E. coli. Our results can be used for the functional comparison of SLC1A5 variants (v1, v2, and v3) in future studies, to facilitae the developement of SLC1A5 inhibitors as effective anticancer drugs.

Human Embryonic Stem Cells - a Potential Vaccine for Ovarian Cancer

  • Zhang, Zu-Juan;Chen, Xin-Hua;Chang, Xiao-Hong;Ye, Xue;Li, Yi;Cui, Heng
    • Asian Pacific Journal of Cancer Prevention
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    • v.13 no.9
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    • pp.4295-4300
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    • 2012
  • Objective: To investigate the therapeutic potential of human embryonic stem cells (hESCs) as a vaccine to induce an immune response and provide antitumor protection in a rat model. Methods: Cross-reactivity of antigens between hESCs and tumour cells was screened by immunohistochemistry. Fischer 344 rats were divided into 7 groups, with 6 rats in each, immunized with: Group 1, hESC; Group 2, pre-inactivated mitotic NuTu-19; Group 3 PBS; Group 4, hESC; Group 5, pre-inactivated mitotic NuTu-19; Group 6, PBS; Group 7, hESC only. At 1 (Groups 1-3) or 4 weeks (Groups 4-6) after the last vaccination, each rat was challenged intraperitoneally with NuTu-19. Tumor growth and animal survival were closely monitored. Rats immunized with H9 and NuTu-19 were tested by Western blot analysis of rat orbital venous blood for cytokines produced by Th1 and Th2 cells. Results: hESCs presented tumour antigens, markers, and genes related to tumour growth, metastasis, and signal pathway interactions. The vaccine administered to rats in Group 1 led to significant antitumor responses and enhanced tumor rejection in rats with intraperitoneal inoculation of NuTu-19 cells compared to control groups. In contrast, rats in Group 4 did not display any elevation of antitumour responses. Western blot analysis found cross-reactivity among antibodies generated between H9 and NuTu-19. However, the cytokines did not show significant differences, and no side effects were detected. Conclusion: hESC-based vaccination is a promising modality for immunotherapy of ovarian cancer.

Cytotoxicity of Compound K (IH-901) and Ginsenoside Rh2, Main Biotransformants of Ginseng Saponins by Bifidobacteria, against Some Tumor Cells

  • Shin, Ji-Eun;Park, Eun-Kyung;Kim, Eun-Jin;Hong, Yoon-Hee;Lee, Kyung-Tae;Kim, Dong-Hyun
    • Journal of Ginseng Research
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    • v.27 no.3
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    • pp.129-134
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    • 2003
  • When ginsenoside $R_{*}$b1/ and $R_{b2}$ were anaerobically incubated with human fecal microflora, these ginsenosides were metabolized to compound K (IH-901). When ginsenoside $R_{g3}$ was anaerobically incubated with human fecal microflora, the ginsenoside $R_{g3}$ was metabolized it to ginsenoside $R_{h2}$. Among ginsenosides, IH-901 and 20(S)-ginsenoside $R_{h2}$ exhibited the most potent cyotoxicity against tumor cells: 50% cytotoxic concentrations of IH-901 in the media with and without fetal bovine serum (FBS) were 27.1-31.6 $\mu$M and 0.1-0.61 $\mu$M, and those of 20(S)-ginsenoside $R_{h2}$ were 37.5->50 and 0.7-7.1 $\mu$M, respectively. The cytotoxic potency of ginsenosides was IH-901>20(S)-ginsenoside R $h_{h2}$》20(S)-ginsenoside $R_{g3}$>ginsenoside $R_{b1}$(equation omitted) $R_{b2}$.EX>$R_{b2}$./.

Human ChlR1 Stimulates Endonuclease Activity of hFen1 Independently of ATPase Activity

  • Kim, Do-Hyung;Kim, Jeong-Hoon;Park, Byoung Chul;Lee, Do Hee;Cho, Sayeon;Park, Sung Goo
    • Bulletin of the Korean Chemical Society
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    • v.35 no.10
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    • pp.3005-3008
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    • 2014
  • Human ChlR1 protein (hChlR1), a member of the cohesion establishment factor family, plays an important role in the segregation of sister chromatids for maintenance of genome integrity. We previously reported that hChlR1 interacts with hFen1 and stimulates its nuclease activity on the flap-structured DNA substrate covered with RPA. To elucidate the relationship between hChlR1 and Okazaki fragment processing, the effect of hChlR1 on in vitro nuclease activities of hFen1 and hDna2 was examined. Independent of ATPase activity, hChlR1 stimulated endonuclease activity of hFen1 but not that of hDna2. Our findings suggest that the acceleration of Okazaki fragment processing near cohesions may aid in reducing the size of the replication machinery, thereby facilitating its entry through the cohesin ring.

Epidemiological Characterization of Adenovirus and Human Bocavirus Detected Acute Respiratory Patients in Busan (부산지역 호흡기감염증 환자로부터 분리한 아데노바이러스와 보카바이러스의 유행양상 분석)

  • Hwang, Su-Jeong;Kim, Nam-Ho;Park, Dong-Ju;Ku, Pyung-Tae;Lee, Mi-Ok;Jin, Sung-Hyun
    • Journal of Life Science
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    • v.27 no.3
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    • pp.275-282
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    • 2017
  • Adenovirus (ADV) and human bocavirus (hBoV) cause acute respiratory tract infections, and are often associated with increased rates of hospitalization and death, particularly in infants and young children. The aim of this study was to analyze the clinical features and molecular phylogeny of ADV and hBoV isolated in Busan, from January 2011 to November 2013. In total, 3,230 specimens (throat swabs) were collected from patients with influenza-like illnesses and acute respiratory tract infections. Multiplex real-time RT-PCR was performed to detect eight respiratory viru [rhinovirus, adenovirus, respiratory syncytial virus, human coronavirus, human metapneumovirus, human bocavirus, parainfluenza virus and influenza virus] and detected 1,485(46.0%) cases. Among 1,485 positive specimens, 257(8.0%) cases were ADV and 68(2.1%) cases of hBoV. A significant clinical feature of ADV is fever and headache whereas hBoV is wheezing. Serotypic distributions of isolated ADV and hBoV were analyzed by sequencing of hexon and VP1/VP2 gene, respectively. ADV was identified seven different serotypes(1~6, 8), revealing a high similarity among the isolates (>97%). The predominant types of ADV were type 1 in 2011, type 3 and 4 in 2012, type 3 in 2013, respectively. ADV type 3 was major causative type during outbreaks in 2013. All of the hBoV was identified as hBoV type 1.

Gamma-Irradiation and Doxorubicin Treatment of Normal Human Cells Cause Cell Cycle Arrest Via Different Pathways

  • Lee, Seong Min;Youn, BuHyun;Kim, Cha Soon;Kim, Chong Soon;Kang, ChulHee;Kim, Joon
    • Molecules and Cells
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    • v.20 no.3
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    • pp.331-338
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    • 2005
  • Ionizing radiation and doxorubicin both produce oxidative damage and double-strand breaks in DNA. Double-strand breaks and oxidative damage are highly toxic and cause cell cycle arrest, provoking DNA repair and apoptosis in cancer cell lines. To investigate the response of normal human cells to agents causing oxidative damage, we monitored alterations in gene expression in F65 normal human fibroblasts. Treatment with ${\gamma}$-irradiation and doxorubicin altered the expression of 23 and 68 known genes, respectively, with no genes in common. Both agents altered the expression of genes involved in cell cycle arrest, and arrested the treated cells in $G_2M$ phase 12 h after treatment. 24 h after ${\gamma}$-irradiation, the percentage of $G_1$ cells increased, whereas after doxorubicin treatment the percentage of $G_2M$ cells remained constant for 24 h. Our results suggest that F65 cells respond differently to ${\gamma}$-irradiation- and doxorubicin-induced DNA damage, probably using entirely different biochemical pathways.