• 제목/요약/키워드: cofilin1-like

검색결과 6건 처리시간 0.03초

Expression and Functional Analysis of cofilin1-like in Craniofacial Development in Zebrafish

  • Jin, Sil;Jeon, Haewon;Choe, Chong Pyo
    • 한국발생생물학회지:발생과생식
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    • 제26권1호
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    • pp.23-36
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    • 2022
  • Pharyngeal pouches, a series of outgrowths of the pharyngeal endoderm, are a key epithelial structure governing facial skeleton development in vertebrates. Pouch formation is achieved through collective cell migration and rearrangement of pouch-forming cells controlled by actin cytoskeleton dynamics. While essential transcription factors and signaling molecules have been identified in pouch formation, regulators of actin cytoskeleton dynamics have not been reported yet in any vertebrates. Cofilin1-like (Cfl1l) is a fish-specific member of the Actin-depolymerizing factor (ADF)/Cofilin family, a critical regulator of actin cytoskeleton dynamics in eukaryotic cells. Here, we report the expression and function of cfl1l in pouch development in zebrafish. We first showed that fish cfl1l might be an ortholog of vertebrate adf, based on phylogenetic analysis of vertebrate adf and cfl genes. During pouch formation, cfl1l was expressed sequentially in the developing pouches but not in the posterior cell mass in which future pouch-forming cells are present. However, pouches, as well as facial cartilages whose development is dependent upon pouch formation, were unaffected by loss-of-function mutations in cfl1l. Although it could not be completely ruled out a possibility of a genetic redundancy of Cfl1l with other Cfls, our results suggest that the cfl1l expression in the developing pouches might be dispensable for regulating actin cytoskeleton dynamics in pouch-forming cells.

산삼배양액을 급여한 돼지에서 근육의 프로테옴 분석 (Proteome Analysis of Pigs Fed with Tissue Culture Medium Waste after Harvest of Korean Wild Ginseng)

  • 설재원;채준석;강형섭;강춘성;인동철;박상열
    • 한국임상수의학회지
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    • 제28권1호
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    • pp.75-80
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    • 2011
  • Proteomics is a useful approach to know protein expression, post-translational modification and protein function. We investigated the protein expression pattern and identity in pigs fed with the tissue culture medium waste after harvest of Korean wild ginseng (TCM-KWG) (Panax ginseng). Two groups (n = 30/group) of pigs were administered with 0 (control) and 16 ml/L (treatment) TCM-KWG through drinking water. After 4 weeks, we examined the protein expression pattern of longissimus dorsi muscle by Two-dimensional electrophoresis analysis. TCM-KWG treatment significantly increased two spot's density, and markedly reduced one spot's density in the muscles. We identified 3 proteins (heat shock protein 90-alpha, myosin binding protein and cofilin 2) by the ESI-MS/MS (Q-TOF2, Micromass). These results demonstrate that TCM-KWG treatment may play a protection role against physiological stress in pigs, like as increased heat shock protein 90-alpha.

F-actin cytoskeleton이 Jurkat T 림파구의 microvilli 형성에 미치는 영향 (Involvement of F-Actin Cytoskeleton for Microvilli Formation of Jurkat T Lymphocyte)

  • 이재설;김해영;손기애;김지은;문경미;김광현;최은봉;이종환
    • 생명과학회지
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    • 제21권10호
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    • pp.1401-1406
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    • 2011
  • 면역세포는 외부 병원체 감염, 자연적 순환에 대하여 형태변화를 수반한다. T세포는 염증, 면역 감시, 이동, 그리고 혈관통과를 위해 uropod, filopodia, lamellipodia, 및 microvilli를 생산한다. 짧고 손가락 처럼 생긴 microvilli는 순환하고 있는 포유동물 면역세포 표면을 덮고 있다. 단핵세포와 호중구의 세포표면은 많이 다른데 membrane ruffle을 함유하고 있다. 본 연구는, T세포의 microvilli에 대하여 actin cytoskeleton과의 연관성에 대하여 탐구하였다. Actin 파괴자인 cytochalasin D 처리 후 SEM관찰을 통해서, Jurkat T세포의 microvilli를 보면 빠르게 사라지는 것을 알 수 있었다. 이와는 대조적으로 RhoA의 activator인 PMA는 LIMK와 cofilin 신호 전달을 통해서 microvilli 두께가 확장되는 것을 관찰 하였다. 또한, cytochalasin D 처리는 EL4 T세포의 극성을 사라지게 하는 것으로 보아 F-actin은 T세포의 극성 유지에도 영향을 미친다. 이상의 결과는 Actin cytoskeleton은 T세포에서 microvilli와 극성 유지에 관여하고 있는 것을 제시한다.

Proteomic Analysis of Bovine Longissimus Muscle Satellite Cells during Adipogenic Differentiation

  • Rajesh, Ramanna Valmiki;Park, Mi-Rim;Heo, Kang-Nyeong;Yoon, Du-Hak;Kim, Tae-Hun;Lee, Hyun-Jeong
    • Asian-Australasian Journal of Animal Sciences
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    • 제24권5호
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    • pp.685-695
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    • 2011
  • Satellite cells are skeletal muscle progenitor/stem cells that reside between the basal lamina and plasma membranes of skeletal fibers in vivo. These cells can give rise to both myogenic and adipogenic cells. Given the possible role for differentiation of satellite cells into adipocytes in marbling and in some pathological disorders like sarcopenia, knowledge of the proteins involved in such process remains obscure. Using two-dimensional polyacrylamide gel electrophoresis coupled with mass spectrometry, we investigated the proteins that are differentially expressed during adipogenic differentiation of satellite cells from bovine longissimus muscle. Our proteome mapping strategy to identify the differentially expressed intracellular proteins during adipogenic differentiation revealed a total of 25 different proteins. The proteins up-regulated during adipogenic differentiation of satellite cells like Cathepsin H precursor, Retinal dehydrogenase 1, Enoyl-CoA hydratase, Ubiquinol-cytochrome-c reductase, T-complex protein 1 subunit beta and ATP synthase D chain were found to be associated with lipid metabolism. The down-regulated proteins like LIM protein, annexin proteins, cofilin-1, Rho GDP-dissociation inhibitor 1 and septin-2, identified in the present study were found to be associated with myogenesis. These results clearly demonstrate that the adipogenic conversion of muscle satellite cells is associated with the up-regulated and down-regulated proteins involved in adipogenesis and myogenesis respectively.

Proteomic Analysis of Differential Protein Expression in Fibroblast-like Synoviocytes of Pig

  • O, Baatartsogt.;So, Hyun-Kyung;Cho, In-Hee;Lee, Jeong-Soo;Lim, Hee-Kyung;Lee, Jong-Ha;Kim, Eun-Kuk;Choi, Kung-Duk
    • 한국축산식품학회:학술대회논문집
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    • 한국축산식품학회 2006년도 정기총회 및 제37차 춘계 국제학술발표대회
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    • pp.122-127
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    • 2006
  • The innermost structures of synovium consist of one to three layers of cells generally identified as synovial lining cells(SLC). The present studies were initiated to determine the protein expression patterns of fibroblast-like synovial(FLS) cells derived from the synovia of rheumatoid arthritis. Post-traumatic arthritis(PTA) is one of the most common causes of secondary osteoarthritis, and usually affects younger people. The proteins were separated by two-dimensional polyacrylamide gel electrophoresis and RNA expression investigated by RT-PCR Proteome analyses led to the identification of more than 1,500 protein spots and of 11 differently expressed protein spots among them. Six proteins were down-regulated, and five proteins were up-regulated in ACL-transected synovial tissue. Among these, spots 3 and 8 were identified as cofilin-1 and smooth muscle protein $22-\alpha$, respectively, Therefore, the proteome analysis of synovial tissue is a useful approach to investigate a joint after an injury and can be used to understand the pathogenesis of PTA.

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nArgBP2 as a hub molecule in the etiology of various neuropsychiatric disorders

  • Lee, Sang-Eun;Chang, Sunghoe
    • BMB Reports
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    • 제49권9호
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    • pp.457-458
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    • 2016
  • Recent studies have strongly implicated postsynaptic scaffolding proteins such as SAPAP3 or Shank3 in the pathogenesis of various mood disorders, including autism spectrum disorder, bipolar disorder (BD), and obsessive-compulsive disorders. Neural Abelson-related gene-binding protein 2 (nArgBP2) was originally identified as a protein that interacts with SAPAP3 and Shank3. Recent study shows that the genetic deletion of nArgBP2 in mice leads to manic/bipolar-like behavior resembling symptoms of BD. However, the function of nArgBP2 at synapse, or its connection with the synaptic dysfunctions, is completely unknown. This study provides compelling evidence that nArgBP2 regulates the spine morphogenesis through the activation of Rac1/WAVE/PAK/cofilin pathway, and that its ablation causes a robust and selective inhibition of excitatory synapse formation, by controlling actin dynamics. Our results revealed the underlying mechanism for the synaptic dysfunction caused by nArgBP2 downregulation that associates with analogous human BD. Moreover, since nArgBP2 interacts with key proteins involved in various neuropsychiatric disorders, our finding implies that nArgBP2 could function as a hub linking various etiological factors of different mood disorders.