• 제목/요약/키워드: knockout mice

검색결과 214건 처리시간 0.025초

Importance of Sperm Capacitation, Removal of Cumulus Matrix, Acrosome Reaction, and Sperm-egg Fusion in the Process of In Vitro Fertilization

  • Kim, Ki-Sun;Hwang, Kyung-A;Kim, Hyoung-Chin;Nam, Ki-Hoan;Choi, Kyung-Chul
    • 한국수정란이식학회지
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    • 제26권4호
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    • pp.287-296
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    • 2011
  • Mammalian fertilization is a complex cascade process consisting of sperm migration through the female reproductive tract, physiological changes to sperm such as sperm capacitation and acrosome reaction, and sperm-egg interaction in the oviduct in vivo. On the other hand, in vitro fertilization (IVF) is a process by which egg cells are fertilized by sperm outside the body: in vitro. IVF has been used for a variety of purposes in reproductive biotechnology for human and animals. The discovery of sperm capacitation in 1951 promoted the development of IVF technology. In the initial stage of IVF, sperm capacitation in preincubation medium was shown to be essential to fuse with eggs. Besides, sperms should detour some of the in vivo regulations for IVF. This review introduces a general mammalian fertilization process, including sperm capacitation, removal of cumulus matrix, acrosome reaction, and sperm-egg fusion and focuses on the roles of key biochemical molecules, signal mechanisms, and genes involved during IVF and novel results of sperm-oocyte interaction elucidated in various gene-knockout mice models.

Loss of phospholipase D2 impairs VEGF-induced angiogenesis

  • Lee, Chang Sup;Ghim, Jaewang;Song, Parkyong;Suh, Pann-Ghill;Ryu, Sung Ho
    • BMB Reports
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    • 제49권3호
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    • pp.191-196
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    • 2016
  • Vascular endothelial growth factor (VEGF) is a key mediator of angiogenesis and critical for normal embryonic development and repair of pathophysiological conditions in adults. Although phospholipase D (PLD) activity has been implicated in angiogenic processes, its role in VEGF signaling during angiogenesis in mammals is unclear. Here, we found that silencing of PLD2 by siRNA blocked VEGF-mediated signaling in immortalized human umbilical vein endothelial cells (iHUVECs). Also, VEGF-induced endothelial cell survival, proliferation, migration, and tube formation were inhibited by PLD2 silencing. Furthermore, while Pld2-knockout mice exhibited normal development, loss of PLD2 inhibited VEGF-mediated ex vivo angiogenesis. These findings suggest that PLD2 functions as a key mediator in the VEGF-mediated angiogenic functions of endothelial cells.

Applications of Genetically Modified Tools to Safety Assessment in Drug Development

  • Kay, Hee-Yeon;Wu, Hong-Min;Lee, Seo-In;Kim, Sang-Geon
    • Toxicological Research
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    • 제26권1호
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    • pp.1-8
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    • 2010
  • The process of new drug development consists of several stages; after identifying potential candidate compounds, preclinical studies using animal models link the laboratory and human clinical trials. Among many steps in preclinical studies, toxicology and safety assessments contribute to identify potential adverse events and provide rationale for setting the initial doses in clinical trials. Gene modulation is one of the important tools of modern biology, and is commonly employed to examine the function of genes of interest. Advances in new drug development have been achieved by exploding information on target selection and validation using genetically modified animal models as well as those of cells. In this review, a recent trend of genetically modified methods is discussed with reference to safety assessments, and the exemplary applications of gene-modulating tools to the tests in new drug development were summarized.

Modulation of autophagy by miRNAs

  • Kim, Yunha;Lee, Junghee;Ryu, Hoon
    • BMB Reports
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    • 제48권7호
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    • pp.371-372
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    • 2015
  • MicroRNAs (miRNAs) can regulate the expression of genes that are involved in multiple cellular pathways. However, their targets and mechanism of action associated with the autophagy pathway are not fully investigated yet. EWSR1 (EWS RNA-Binding Protein 1/Ewing Sarcoma Break Point Region 1) gene encodes a RNA/DNA binding protein that is ubiquitously expressed and plays roles in numerous cellular processes. Recently, our group has shown that EWSR1 deficiency leads to developmental failure and accelerated senescence via processing of miRNAs, but its role in the regulation of autophagy remains elusive. In this context, we further investigated and found that EWSR1 deficiency triggers the activation of the DROSHA-mediated microprocessor complex and increases the levels of miR125a and miR351, which directly target Uvrag. Interestingly, the miR125a- and miR351-targeted reduction of Uvrag led to the inhibition of autophagy in both ewsr1 knockout (KO) MEFs and ewsr1 KO mice. In summary, our study demonstrates that EWSR1 is associated with the posttranscriptional regulation of Uvrag via miRNA processing. The regulation of autophagy pathway in miRNAs-Uvrag-dependent manner provides a novel mechanism of EWSR1 deficiency-related cellular dysfunction. [BMB Reports 2015; 48(7): 371-372]

Carboxypeptidase E Is a Novel Modulator of RANKL-Induced Osteoclast Differentiation

  • Kim, Hyun-Ju;Hong, JungMin;Yoon, Hye-Jin;Yoon, Young-Ran;Kim, Shin-Yoon
    • Molecules and Cells
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    • 제37권9호
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    • pp.685-690
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    • 2014
  • Osteoclasts are large polykaryons that have the unique capacity to degrade bone and are generated by the differentiation of myeloid lineage progenitors. To identify the genes involved in osteoclast development, we performed microarray analysis, and we found that carboxypeptidase E (CPE), a prohormone processing enzyme, was highly upregulated in osteoclasts compared with their precursors, bone marrow-derived macrophages (BMMs). Here, we demonstrate a novel role for CPE in receptor activator of NF-${\kappa}B$ ligand (RANKL)-induced osteoclast differentiation. The overexpression of CPE in BMMs increases the formation of tartrate-resistant acid phosphatase (TRAP)-positive multinuclear osteoclasts and the expression of c-Fos and nuclear factor of activated T cells c1 (NFATc1), which are key regulators in osteoclastogenesis. Furthermore, employing CPE knockout mice, we show that CPE deficiency attenuates osteoclast formation. Together, our data suggest that CPE might be an important modulator of RANKL-induced osteoclast differentiation.

Signal Transduction of the Cytokine Receptor

  • Watanabe, Sumiko
    • Animal cells and systems
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    • 제2권2호
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    • pp.153-164
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    • 1998
  • Cytokines regulate proliferation, differentiation and functions of haemotopoietic cells. Each cytokine possesses a variety of activities on various target cells (pleiotropy) and various cytokines have similar and overlapping activities on the same target cells (redundancy). The nature of these cytokine activities predicts unique feature of cytokine receptors, namely, cytokine has multiple receptors, different cytokines share a common receptor, and different cytokine receptors are linked to common signaling pathways. cDNA cloning of genes for cytokine receptors revealed distinct sets of receptor family with different structural features. The cytokine receptor superfamily consists of a largest family, and contains more than twenty cytokine receptor subunits. This receptor has common structural features in both extracellular and intracellular regions without tyrosine kinase domain. Another striking feature of the receptor is to share common subunit of multiple cytokines, which partly explains the redundancy of activities of some cytokines. Recent studies revealed detailed signaling events of the cytokine receptor, the primary activation of JAK and subsequent phosphorylation of tyrosine residues of receptor, and various cellular proteins. Many SH2 containing adapter proteins play an important role in cytokine signals, and this system has similarities with tyrosine kinase receptor signal transduction. STAT may mainly account for cytokine specific functions as suggested by knockout mice studies. It is of importance to note that cytokine activates multiple signaling pathways and the balance and combination of related signaling events may determine the specificity of functions of cytokines.

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A Synaptic Model for Pain: Long-Term Potentiation in the Anterior Cingulate Cortex

  • Zhuo, Min
    • Molecules and Cells
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    • 제23권3호
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    • pp.259-271
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    • 2007
  • Investigation of molecular and cellular mechanisms of synaptic plasticity is the major focus of many neuroscientists. There are two major reasons for searching new genes and molecules contributing to central plasticity: first, it provides basic neural mechanism for learning and memory, a key function of the brain; second, it provides new targets for treating brain-related disease. Long-term potentiation (LTP), mostly intensely studies in the hippocampus and amygdala, is proposed to be a cellular model for learning and memory. Although it remains difficult to understand the roles of LTP in hippocampus-related memory, a role of LTP in fear, a simplified form of memory, has been established. Here, I will review recent cellular studies of LTP in the anterior cingulate cortex (ACC) and then compare studies in vivo and in vitro LTP by genetic/pharmacological approaches. I propose that ACC LTP may serve as a cellular model for studying central sensitization that related to chronic pain, as well as pain-related cognitive emotional disorders. Understanding signaling pathways related to ACC LTP may help us to identify novel drug target for various mental disorders.

Olig2 Transcription Factor in the Developing and Injured Forebrain; Cell Lineage and Glial Development

  • Ono, Katsuhiko;Takebayashi, Hirohide;Ikenaka, Kazuhiro
    • Molecules and Cells
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    • 제27권4호
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    • pp.397-401
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    • 2009
  • Olig2 transcription factor is widely expressed throughout the central nervous system; therefore, it is considered to have multiple functions in the developing, mature and injured brain. In this mini-review, we focus on Olig2 in the forebrain (telencephalon and diencephalon) and discuss the functional significance of Olig2 and the differentiation properties of Olig2-expressing progenitors in the development and injured states. Short- and long-term lineage analysis in the developing forebrain elucidated that not all late Olig2+ cells are direct cohorts of early cells and that Olig2 lineage cells differentiate into neurons or glial cells in a region- and stage-dependent manner. Olig2-deficient mice revealed large elimination of oligodendrocyte precursor cells and a decreased number of astrocyte progenitors in the dorsal cortex, whereas no reduction in the number of GABAergic neurons. In addition to Olig2 function in the developing cortex, Olig2 is also reported to be important for glial scar formation after injury. Thus, Olig2 can be essential for glial differentiation during development and after injury.

Allergic effects of Der p 38 and Der f 38: A Comparison

  • Ji-Sook Lee
    • 대한의생명과학회지
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    • 제29권3호
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    • pp.206-209
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    • 2023
  • Asthma is a chronic and allergic inflammation in the lung, mainly caused by house dust mites (HDM). Recent studies have reported Der p 38 and Der f 38 (Dermatophagoides pteronyssinus and D. farinae, respectively) as crucial allergens of HDMs. This study investigates the different allergic effects of Der p 38 and Der f 38 in an asthma-like mouse model. Lung infiltration of neutrophils was induced by intranasal administration of Der p 38 and Der f 38, with stronger infiltration being observed after exposure to Der p 38. Intranasal and intraperitoneal administration of Der p 38 induced the infiltration of neutrophils and eosinophils in the lung, which was similar to the effect subsequent to Der f 38 administration. Although the number of mast cells was increased, no significant difference was obtained between the effects of both allergens. In TLR4 knockout BALB/c mice, Der p 38 and Der f 38 had no effect on the infiltration of neutrophils, eosinophils, and mast cells. Additionally, allergenicity induced by Der p 38 and Der f 38 in the basophils of Der p38+/Der f 38+ asthmatic subjects was similar, although Der f 38 presented stronger allergenicity in basophils of Der p38+/Der f 38+ allergic patients than Der p 38. These findings contribute to understanding the role of similar allergen components derived from different species in the pathogenesis of allergic diseases.

천식유발 마우스에서의 폐 내 세포조성 변화와 IL-4 및 IL-10의 발현 양상 (The Change of Cell Distribution in the lung and the Expression Pattern of IL-4 and IL-10 in Asthma Induced Mouse)

  • 이수진;박세종;리천주;장양호;최농훈
    • 생명과학회지
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    • 제16권5호
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    • pp.780-787
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    • 2006
  • 본 연구진은 일차로 BALB/C 마우스를 이용하여 항원으로 ovalbumin을 사용하여 천식을 유발하여 폐 내 세포구성에 미치는 영향을 다른 실험방법에 의해 만들어진 천식모델과 비교하여 살펴보았고 이차로 천식 발생에 중요한 역할을 하는 것으로 알려진 IL-4와 IL-10 knock out (KO) 마우스를 이용하여 천식모델을 구축하여 천식인자를 가진 개체에서의 반응과 천식관련인자가 결핍된 개체에서의 반응성의 차이를 살펴보았다. 천식의 유발은 실험 1일째 $20\;{\mu}g$ ovalbumin으로 감작시킨 후 실험 14일에 재감작을 시켰다. 그 후 nebulizer를 이용하여 nasal inhalation을 28일, 29일, 30일에 실시하여 천식을 유발시켰다. 천식 유발의 확인은 기관지폐포 세척술로 채취한 폐 내 세포액을 이용하여 총 세포수 및 염증세포의 증가와 폐 내 세포와 폐조직의 염색을 통해 분포율을 확인하였다. 천식의 발병 과정에서 IgE 관련 과민반응을 주도하는 IL-4와 Th2 세포의 기능을 억제한다고 알려진 IL-10의 면역화학염색을 통해 그 발현정도를 관찰하였다. BALB/c 마우스의 천식유발군의 경우 천식의 특징인 염증세포의 증가와 호산구의 증가와 세기관지 주위 염증세포의 침윤 및 기도 상피의 비후를 관찰할 수 있었다. 따라서 본 실험에 응용된 천식유발 방법은 적합하였으며 천식유발 절차가 성공적으로 수행되었음을 확인하였다. IL-4 및 IL-10 KO 마우스를 이용한 천식유발군의 경우 BALB/c 마우스를 이용한 천식유발군보다 호산구의 증가 정도가 미약하게 관찰되었고, 폐조직 내 염증세포의 침윤 정도도 감소하였다. 천식매개인자인 IL-4와 IL-10의 면역조직화학염색 결과에서도 양성반응이 거의 나타나지 않았다. 본 연구 결과, IL-10이 IL-4와 같이 천식과 관련하여 세기관지 염증 반응을 증가시키는 역할을 하는 것으로 생각된다.