• 제목/요약/키워드: TGF-$\beta$ superfamily

검색결과 23건 처리시간 0.026초

Overview of Transforming Growth Factor β Superfamily Involvement in Glioblastoma Initiation and Progression

  • Nana, Andre Wendindonde;Yang, Pei-Ming;Lin, Hung-Yun
    • Asian Pacific Journal of Cancer Prevention
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    • 제16권16호
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    • pp.6813-6823
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    • 2015
  • Glioblastoma, also known as glioblastoma multiforme (GBM), is the most aggressive of human brain tumors and has a stunning progression with a mean survival of one year from the date of diagnosis. High cell proliferation, angiogenesis and/or necrosis are histopathological features of this cancer, which has no efficient curative therapy. This aggressiveness is associated with particular heterogeneity of the tumor featuring multiple genetic and epigenetic alterations, but also with implications of aberrant signaling driven by growth factors. The transforming growth factor ${\beta}$ ($TGF{\beta}$) superfamily is a large group of structurally related proteins including $TGF{\beta}$ subfamily members Nodal, Activin, Lefty, bone morphogenetic proteins (BMPs) and growth and differentiation factor (GDF). It is involved in important biological functions including morphogenesis, embryonic development, adult stem cell differentiation, immune regulation, wound healing and inflammation. This superfamily is also considered to impact on cancer biology including that of GBM, with various effects depending on the member. The $TGF{\beta}$ subfamily, in particular, is overexpressed in some GBM types which exhibit aggressive phenotypes. This subfamily impairs anti-cancer immune responses in several ways, including immune cells inhibition and major histocompatibility (MHC) class I and II abolishment. It promotes GBM angiogenesis by inducing angiogenic factors such as vascular endothelial growth factor (VEGF), plasminogen activator inhibitor (PAI-I) and insulinlike growth factor-binding protein 7 (IGFBP7), contributes to GBM progression by inducing metalloproteinases (MMPs), "pro-neoplastic" integrins (${\alpha}v{\beta}3$, ${\alpha}5{\beta}1$) and GBM initiating cells (GICs) as well as inducing a GBM mesenchymal phenotype. Equally, Nodal promotes GICs, induces cancer metabolic switch and supports GBM cell proliferation, but is negatively regulated by Lefty. Activin promotes GBM cell proliferation while GDF yields immune-escape function. On the other hand, BMPs target GICS and induce differentiation and sensitivity to chemotherapy. This multifaceted involvement of this superfamily in GBM necessitates different strategies in anti-cancer therapy. While suppressing the $TGF{\beta}$ subfamily yields advantageous results, enhancing BMPs production is also beneficial.

Further Characterization of Activin A-induced IgA Response in Murine B Lymphocytes

  • Lee, Hwa-Joung;Kim, Pyeung-Hyeun
    • IMMUNE NETWORK
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    • 제9권4호
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    • pp.133-137
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    • 2009
  • We have recently shown that activin A, a member of TGF-$\beta$ superfamily, stimulates mouse B cells to express IgA isotype but other isotypes. In the present study, we further characterized effects of activin A on B cell growth and IgA expression. We found that activin A did not have effect on LPS-stimulated cell viability. In parallel, CFSE staining analysis revealed that activin A did not alter cell division. An increase of IgA secretion by activin A was completely abrogated by anti-activin A Ab but not by anti-TGF$\beta$1 Ab. In the same conditions, no other isotypes are significantly affected by each antibody treatment. Finally, activin A, as similar to TGF-$\beta$1, increased IgA secretion by mesenteric lymph node cells. These results suggest that activin A can specifically stimulate IgA response, independent of TGF-$\beta$ in the gut.

누에 유래의 dpp 유전자의 기능 및 유전체 연구를 통한 식의약용 신소재로서 활용 (Function and use of silkworm dpp gene)

  • 박승원
    • 한국잠사곤충학회지
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    • 제54권1_2호
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    • pp.1-5
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    • 2016
  • The dpp gene originated from the silkworms is an important gene that is well conserved in the genome of humans, cattle, rodents, poultry and Drosophila. The dpp gene belonging to the TGF-beta (Transforming Growth Factor-beta) superfamily is known to play an important role in several developmental stages. The $TGF-{\beta}$ gene family is a genetically well-conserved and playing an important role gene family in various species such as determining cell proliferation and differentiation, apoptosis and cell fate. In this review, we have confirmed the following studies data. The recent studies on the silkworm dpp gene have confirmed for the first time the biological functions such as promoting osteogenesis activity. In addition, previous data shows that dpp have developmental functions such as morphogenetic materials at the blastophyllum stage, induction of the mesoblast at the late embryonic stage and involved in the proliferation and morphogenesis of imaginal disc in adult development. We found the splice variant of the dpp gene originated from the wildtype silkworm by using comparative genomics. It has provided important data for basic research based on genetics studies of these processes may promote a better understanding of evolution. Silkworm is a medicinal insect and is approved for its safety. It is used as a natural antibiotic for promoting growth as a medical material, a health functional food, and a feed additive. Therefore, it is necessary to present various data to obtain more value of functional insect.

Role of Growth Differentiation Factor 9 and Bone Morphogenetic Protein 15 in Ovarian Function and Their Importance in Mammalian Female Fertility - A Review

  • Castro, Fernanda Cavallari de;Cruz, Maria Helena Coelho;Leal, Claudia Lima Verde
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권8호
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    • pp.1065-1074
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    • 2016
  • Growth factors play an important role during early ovarian development and folliculogenesis, since they regulate the migration of germ cells to the gonadal ridge. They also act on follicle recruitment, proliferation/atresia of granulosa cells and theca, steroidogenesis, oocyte maturation, ovulation and luteinization. Among the growth factors, the growth differentiation factor 9 (GDF9) and the bone morphogenetic protein 15 (BMP15), belong to the transforming growth factor beta (TGF-${\beta}$) superfamily, have been implicated as essential for follicular development. The GDF9 and BMP15 participate in the evolution of the primordial follicle to primary follicle and play an important role in the later stages of follicular development and maturation, increasing the steroidogenic acute regulatory protein expression, plasminogen activator and luteinizing hormone receptor (LHR). These factors are also involved in the interconnections between the oocyte and surrounding cumulus cells, where they regulate absorption of amino acids, glycolysis and biosynthesis of cholesterol cumulus cells. Even though the mode of action has not been fully established, in vitro observations indicate that the factors GDF9 and BMP15 stimulate the growth of ovarian follicles and proliferation of cumulus cells through the induction of mitosis in cells and granulosa and theca expression of genes linked to follicular maturation. Thus, seeking greater understanding of the action of these growth factors on the development of oocytes, the role of GDF9 and BMP15 in ovarian function is summarized in this brief review.

NSAID Activated Gene (NAG-1), a Modulator of Tumorigenesis

  • Eling, Thomas E.;Baek, Seung-Joon;Shim, Min-sub;Lee, Chang-Ho
    • BMB Reports
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    • 제39권6호
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    • pp.649-655
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    • 2006
  • The NSAID activated gene (NAG-1), a member of the TGF-$\beta$ superfamily, is involved in tumor progression and development. The over-expression of NAG-1 in cancer cells results in growth arrest and increase in apoptosis, suggesting that NAG-1 has anti-tumorigenic activity. This conclusion is further supported by results of experiments with transgenic mice that ubiquitously express human NAG-1. These transgenic mice are resistant to the development of intestinal tumors following treatment with azoxymethane or by introduction of a mutant APC gene. In contrast, other data suggest a pro-tumorigenic role for NAG-1, for example, high expression of NAG-1 is frequently observed in tumors. NAG-1 may be like other members of the TGF-$\beta$ superfamily, acting as a tumor suppressor in the early stages, but acting pro-tumorigenic at the later stages of tumor progression. The expression of NAG-1 can be increased by treatment with drugs and chemicals documented to prevent tumor formation and development. Most notable is the increase in NAG-1 expression by the inhibitors of cyclooxygenases that prevent human colorectal cancer development. The regulation of NAG-1 is complex, but these agents act through either p53 or EGR-1 related pathways. In addition, an increase in NAG-1 is observed in inhibition of the AKT/GSK-$3{\beta}$ pathway, suggesting NAG-1 alters cell survival. Thus, NAG-1 expression is regulated by tumor suppressor pathways and appears to modulate tumor progression.

Functional analysis of Bombyx mori Decapentaplegic gene for bone differentiation in a mammalian cell

  • Park, Seung-Won;Goo, Tae-Won;Choi, Gwang-Ho;Kang, Seok-Woo;Kim, Sung-Wan;Kim, Seong-Ryul
    • International Journal of Industrial Entomology and Biomaterials
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    • 제27권1호
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    • pp.159-165
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    • 2013
  • Bone morphogenetic proteins (BMPs) belong to the transforming growth factor (TGF-${\beta}$) superfamily and are involved in osteoblastic differentiation. The largest TGF-${\beta}$ superfamily subgroup shares genetic homology with human BMPs (hBMPs) and silkworm decapentaplegic (dpp). In addition, hBMPs are functionally interchangeable with Drosophila dpp. Bombyx mori dpp may induce bone formation in mammalian cells. To test this hypothesis, we synthesized the 1,285-base pairs cDNA of full-length B. mori dpp using total RNAs obtained from the fat body of 3-day-old of the $5^{th}$ instar larvae and cloned the cDNA into the pCEP4 mammalian expression vector. Next, B. mori dpp was expressed in C3H10T1/2 cells. The target cells transfected with the pCEP4-Bm dpp plasmid showed biological functions similar to those of osteogenic differentiation induction growth factors such as hBMPs. We determined the relative mRNA expression rates of Runt-related transcription factor 2 (RUNX2), osterix, osteocalcin, and alkaline phosphatase (ALP) to validate the osteoblast-specific differentiation effects of B. mori dpp by performing quantitative real-time RT-PCR. Interestingly, mRNA expression levels of the 3 marker genes except RUNX2, in cells expressing B. mori dpp were much higher than those in control cells and C3H10T1/2 cells transfected with pCEP4. These results suggested that B. mori dpp signaling regulates osterix expression during osteogenic differentiation via RUNX2-independent mechanisms.

생쥐 난소의 발생단계에 따른 Growth Differentiation Factor-9의 유전자 발현 (Expression of Growth Differentiation Factor-9 in the Mouse Ovaries at Different Developmental Stages)

  • 윤세진;이경아;고정재;차광열
    • 한국발생생물학회지:발생과생식
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    • 제3권1호
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    • pp.95-100
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    • 1999
  • Growth/differentiation factor-9 (GDF-9)은 transforming growth factor $\beta$ (TGF-$\beta$) superfamily의 member로서 난소의 난자에서만 특이적으로 발현되며 정상적인 난포발달에 있어 필수적인 성숙인자로 최근에 알려졌다. 본 연구는 RT-PCR을 통해 생쥐의 원시난포에서의 GDF-9 mRNA의 발현 여부와 함께 난포의 발달단계에 따른 상대적인 발현량을 분석하고자 실시하였다. 본 실험에는 ICR 생쥐를 사용하여 질전 (vaginal plug)이 확인된 날을 1일로 하여 임신 19일의 태아와 태어난 날을 1일로 하여 생후 1일, 10일, 21일, 28일된 생쥐 난소를 실험에 사용하였다. 각 발달단계의 난소조직으로부터 total RNA를 추출하여 GDF-9 유전자 발현 여부를 확인하였으며 이들을 $\beta$-actin에 대해 상대적인 정량분석을 하였다. GDF-9 유전자 발현은 아직은 성장을 시작하지 않은 임신 19일의 태아의 난소, 대부분이 원시난포로 이루어진 태어난 날의 생쥐 난소에서도 확인되었으며, 성장이 왕성하게 진행되고 있는 난포 즉, antrum 형성 이전의 growing follicles이 주를 이루는 생후 10일째의 난소에서 가장 높은 GDF-9 유전자 발현이 관찰되었다. 나머지 단계의 난소에서는 거의 비슷한 정도로 발현함을 관찰할 수 있었다. 본 연구의 결과는 생쥐의 원시난포에도 GDF-9 transcript가 존재한다는 것을 확실하게 증명하였으며, GDF-9이 생쥐의 초기 난포발달에 중요한 역할을 할 것이라는 가능성을 시사한다.

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ATF3를 통한 caffeic acid phenethyl ester에 의한 NAG-1 유전자의 발현 증가 (Caffeic Acid Phenethyl Ester Induces the Expression of NAG-1 via Activating Transcription Factor 3)

  • 박민희;정정욱;이성호;백승준;김종식
    • 생명과학회지
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    • 제28권1호
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    • pp.37-42
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    • 2018
  • NAG-1 단백질은 TGF-${\beta}$ superfamily 유전자로서 암세포의 apoptosis를 유도하고 항암 활성과 관련이 있는 것으로 알려져 있다. 본 연구에서는 프로폴리스 유래의 파이토케미칼 CAPE (caffeic acid phenethyl ester)에 의한 항암유전자 NAG-1의 발현과 발현조절에 대해 연구하였다. 인간 대장암 세포주 HCT116에서 CAPE의 처리에 의해 농도의존적, 시간의존적으로 NAG-1의 발현이 증가됨을 확인하였다. 게다가, 다른 대장암 세포주인 LOVO 세포주에서도 농도의존적으로 NAG-1의 발현이 증가됨을 확인하였다. p53-null HCT116세포주를 이용한 실험에서 CAPE에 의한 NAG-1의 발현은 전사조절인자인 p53에 의존하지 않음을 증명하였다. 또한, 3가지 종류의 NAG-1 프로모터 construct를 이용한 실험에서, cis-element 후보가 -474와 -1,086사이에 있음을 증명하였다. CAPE에 의해 전사조절인자인 ATF3와 CREB의 발현이 변화되는 지를 확인한 결과, CREB은 전혀 발현이 증가되지 않는 반면 ATF3는 CAPE 처리에 의해 농도의존적으로 발현이 증가함을 확인하였다. 그리고, pCG-ATF3와 pCREB의 cotransfection 실험에서 CREB은 NAG-1의 발현에 영향을 못 미치는 반면, ATF3의 과대발현에 의해 NAG-1의 발현이 증가됨을 확인하였다. 결론적으로, CAPE에 의한 NAG-1의 발현은 주로 전사조절인자인 ATF3를 경유하여 일어남을 시사한다.

둥근성게(Strongylocentrotus nudus)의 Smad3와 Estrogen Receptor-related $Receptor\;{\beta}$ like 1 유전자 발현 (Gene Expression of Smad3 and Estrogen Receptor-related $Receptor\;{\beta}$ like 1 in Sea Urchin, Strongylocentrotus nudus)

  • 정유정;손영창
    • 한국발생생물학회지:발생과생식
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    • 제11권1호
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    • pp.43-47
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    • 2007
  • Transforming growth $factor-{\beta}(TGF-{\beta})$ 신호의 매개자 역할을 하는 Smad 계열 단백질은 발생과정에 중요한 역할을 한다고 알려져 있다. Estrogen receptor(ER)와 구조적으로 유사한 estrogen receptor-related receptor(ERR)은 포유동물에서 후기 배발생기에 외배엽 형성과 관련이 되어 있는 고아핵수용체이다. 본 연구에서는 해양무척추동물의 초기발생과정과 계절번식기 동안에 Smad3와 ERR의 유전자 발현이 발생과정과 성숙에 어떠한 연관성을 갖고 있는지 알아보기 위하여, 동해안 연안에 주로 서식하는 극피동물문 둥근성게과 둥근성게(Strongylocentrotus nudus)를 재료로 하여 계절별 및 배발생 과정중에 Smad3와 $ERR{\beta}$ like 1의 mRNA 농도를 real-time PCR 방법으로 조사하였다. Smad3 mRNA는 샘플링을 시작한 2004년 2월의 생식소와 비교하면 4월부터 그 농도가 증가하기 시작하여 6월까지 증가하였으며, 산란기인 8월에 감소하였다가 10월부터 12월까지 높은 수준을 유지하였다. $ERR{\beta}$ like 1 mRNA는 6월까지 낮은 수준이었으나, 산란기인 8월에 급증한 후 다시 감소하였다. 수정란부터 초기 유생기까지 발생과정을 분석한 결과, Smad3 mRNA는 8세포기 및 16세포기에 높은 발현이 관측되었다. 한편, $ERR{\beta}$ like 1 mRNA는 포배기, 낭배기, 초기 유생기에 현저하게 높은 발현패턴을 보였다. 이상의 결과로부터 둥근성게의 산란기 및 발생배의 발생후기에 $ERR{\beta}$ like 1이 중요한 역할을 담당할 것으로 추정되며, 초기 난할시기에는 Smad3의 관련성이 시사되었다.

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