• Title/Summary/Keyword: Src kinase

Search Result 78, Processing Time 0.033 seconds

생쥐 정소에서 C-terminal Src kinase (Csk) 발현과 Src kinase 활성의 조절

  • 계명찬;최진국;안현수;김영수
    • Proceedings of the Korean Society of Developmental Biology Conference
    • /
    • 2003.10a
    • /
    • pp.66-66
    • /
    • 2003
  • Protein tyrosine kinases는 표적단백질의 tyrosine 잔기를 인산화하는 효소로서 다양한 종류의 성장인자, peptide 호르몬, cytokine 수용체 하위의 세포 내 신호전달에 관여한다. Non-receptor tyrosine kinase의 일종인 c-Src는 세포막에서 발생한 ligand-receptor 상호작용 하위의 신호전달에서 중요한 역할을 하며 C-terminal Src kinase (Csk)는 Src kinase의 C-terminal tyrosine 잔기를 인산화시켜 Src kinase의 활성을 저해한다. 이러한 Src-Csk loop를 통한 세포 내 신호전달과정은 세포의 증식과 분화, 사멸 조절에 중요한 기능을 갖지만 정소의 발생과 분화 과정에서 Src-Csk loop의 발현 및 정자형성 과정에서의 기능은 밝혀지지 않았다. 본 연구에서는 생쥐 정소에서 출생 후 성적 성숙과정에서 Csk의 발현과 Src kinase 활성의 변동을 조사하였다. Csk mRNA 발현은 생 후 2주령 이하의 미성숙 정소에서 다량으로 발현되었고 사춘기 정소 이후에는 오히려 감소하였다. Csk 단백질의 발현 양상은 mRNA 발현양상과 일치하였다. c-Src kinase 활성은 생 후 2주에 급격히 증가하고 이 후 4주령에서 감소하다가 성체 (8주령)에서 다시 증가하여 가장 높았다. 성체 조직의 Csk 단백질 현존량이 미성숙 개체보다 적은 반면 Src kinase 활성은 가장 높아 Csk 발현의 감소는 Src kinase 활성을 증가하는 것으로 사료된다. 면역조직화학방법으로 정소 조직 내 Csk의 발현양상을 조사한 결과 Leydig cell, Sertoli cell, germ cell 등 도처에서 발현되었으며 Sertoli cell 에서의 발현은 세정관 상피의 구성에 따른 차이가 확인되었다. 성체의 세정관 내에서는 감수분열 이후의 정세포(spermatid)를 감싸고 있는 Sertoli cell의 강소측에서 강한 Csk 활성이 검출되어 생식세포의 분화과정 동안 세정관 상피의 조직재구성에 관여하는 것으로 사료된다. Leydig cell에서의 발현은 생후 1주령까지는 미미하였으나 이후 2주령 이후에는 다량으로 발현함이 확인되어 adult type Leydig cell에서 진행되는 steroidogenesis와의 관련성을 추측할 수 있다. 미성숙 정소로부터 분리한 Sertoli cell-enriched culture에 200 nM testosterone을 처리하였을 때 Csk mRNA의 발현의 증가를 확인할 수 있었으므로 androgen에 의한 Sertoli cell의 분화과정에 Csk가 관여하고 있음을 알 수 있다. 결론적으로 성적 성숙에 따른 생쥐 정소 내 Src-Csk loop의 발현과 Src kinase 활성의 변동은 정소 내 간충조직, 세정관 상피의 증식 및 기능적 분화 과정을 매개하는 생리적 활성분자 수용체 하위의 신호전달 과정에 Src-Csk loop에 의한 조절가능성을 확인할 수 있었다.

  • PDF

Roles of Src-family kinase isoforms, Lyn, Fyn, Fgr, and c-Src on degranulation in RBL-2H3 mast cells (비만세포의 탈과립에 대한 다양한 Src-family kinase의 역할)

  • Lee, Jun-Ho;Mun, Se-Hwan;Ko, Na-Young;Kim, Jie-Wan;Kim, Do-Kyun;Kim, Joo-Dong;Her, Erk;Choi, Wahn-Soo
    • Journal of Life Science
    • /
    • v.17 no.3 s.83
    • /
    • pp.350-355
    • /
    • 2007
  • The rat RBL-2H3 mast cells contain various Src-family kinases. Previous reports with this cell line indicated that Lyn activation is an important initial signaling for the activation of the cells. However, the role and location of other Src-family kinase isoforms which are expressed in the cells are not clear. In this study, we now show that isoforms of Src-family kinases, Lyn, fyn, Fgr, c-Src, and Yes are differentially expressed and located differently in the cells as indicated by RT-PCR, immunoblotting analysis, and confocal microscopy. Lyn and Fgr were located on plasma membrane but on the other hand c-Src and Yes were located on intracellular organelle. All of Src-family kinases were cloned and overexpressed for investigating the roles of the isoforms. Overexpression of Fyn and Fgr, not Lyn and c-Src, stimulated Ag-induced degranulation in the cells. Our findings strongly suggest for the first time that each of Src-family kinase isoform can regulate differentially $Fc{\varepsilon}RI$-mediated signaling in RBL-2H3 mast cells.

Studies on the Activation Mechanism of c-src Protein Tyrosine Kinase by Ginsenoside-Rgl

  • Hong, Hee-Youn;Yoo, Gyung-Soo;Choi, Jung-Kap
    • Journal of Ginseng Research
    • /
    • v.22 no.2
    • /
    • pp.133-139
    • /
    • 1998
  • We have studied an activation mechanism of $pp60^{c-src}$ protein tyroslne kinase (PTK) by ginsenoside-$Rg_1$ (G-$Rg_1$ ) in NIH(pMcsrc/foc)B c-src overexpressor cells. It was previously reported that G--$Rg_1$ stimulated the activation of c-src kinase at 20 pM with a 18 hr-incubation, increasing the activity by 2-4-fold over that of untreated control, and this effect was blocked by treatments of in- hibitors of either protein synthesis (cycloheximide) or RNA synthesis (actinomycin D) (Hong, H.Y. et at. Arch. Pharm. Res. 16, 114 (1993)). However, an amount of c-src protein itself in wild-type cells was not changed by G-$Rg_1$. When the cells mutated at one or two tyrosine residue(s) (Y416/527) that are important sites to regulate the kinase activity were treated with G-$Rg_1$, increases both in the activity of c-src kinase and in the expression of the protein were not observed. In addition, removal of extracellular calcium ion by EGTA or inhibition of PKC by H-7 canceled the G-$Rg_1$-induced activation of the kinase. Although the activation was little affected by G-$Rg_1$ with a calcium ionophore A23187, it was synergistically stimulated by treatment of G-Rgl and PMA, a PKC activator. Taken together, these results suggest that the activation of c-src kinase by G-$Rg_1$ is caused by an increase in the specific activity of the kinase, but not in amount of it, and is involved with both collular calcium ion and PKC. Further the increase in the specific activity of c-src kinase may result from altered phosphorylation at tyro-416 and -527.

  • PDF

Src Kinase Regulates Nitric Oxide-induced Dedifferentiation and Cyc1ooxygenase-2 Expression in Articular Chondrocytes via p38 Kinase-dependent Pathway

  • Yu, Seon-Mi;Lee, Won-Kil;Yoon, Eun-Kyung;Lee, Ji-Hye;Lee, Sun-Ryung;Kim, Song-Ja
    • IMMUNE NETWORK
    • /
    • v.6 no.4
    • /
    • pp.204-210
    • /
    • 2006
  • Background: Nitric oxide (NO) in articular chondrocytes regulates dedifferentiation and inflammatory responses by modulating MAP kinases. In this study, we investigated whether the Src kinase in chondrocytes regulates NO-induced dedifferentiation and cyclooxygenase-2 (COX-2) expression. Methods: Primary chondrocytes were treated with various concentrations of SNP for 24 h. The COX-2 and type II collagen expression levels were determined by immunoblot analysis, and prostaglandin $E_2\;(PGE_2)$ was determined by using a $PGE_2$ assay kit. Expression and distribution of p-Caveolin and COX-2 in rabbit articular chondrocytes and cartilage explants were determined by immunohistochemical staining and immunocytochemical staining, respectively. Results: SNP treatment stimulated Src kinase activation in a dose-dependent manner in articular chondrocytes. The Src kinase inhibitors PP2 [4-amino-5-(4-chlorophenyl)-7-(t-butyl)pyrazolo(3,4-d)pyrimidine], a significantly blocked SNP-induced p38 kinase and caveolin-1 activation in a dose-dependent manner. Therefore, to determine whether Src kinase activation is associated with dedifferentiation and/or COX-2 expression and $PGE_2$ production. As expected, PP2 potentiated SNP-stimulated dedifferentiation, but completely blocked both COX-2 expression and $PGE_2$ production. And also, levels of p-Caveolin and COX-2 protein expression were increased in SNP-treated primary chondrocytes and osteoarthritic and rheumatoid arthritic cartilage, suggesting that p-Caveolin may playa role in the inflammatory responses of arthritic cartilage. Conclusion: Our previously studies indicated that NO caused dedifferentiation and COX-2 expression is regulated by p38 kinase through caveolin-1 (1). Therefore, our results collectively suggest that Src kinase regulates NO-induced dedifferentiation and COX-2 expression in chondrocytes via p38 kinase in association with caveolin-1.

Salviae Radix Suppresses Mast Cell-mediated Allergic Response: Inhibition of Src-family Kinase (단삼추출물의 Src-family Kinase 억제에 의한 항앨러지 효과)

  • Kim, Young-Mi
    • YAKHAK HOEJI
    • /
    • v.52 no.5
    • /
    • pp.370-375
    • /
    • 2008
  • In this study, the anti-allergic activity and mechanim of Salviae radix (SR) were investigated. The ethanol extract of SR showed significant inhibitory effect on degranulation from antigen-stimulated mast cells and it also inhibited the expression and secretion of TNF-${\alpha}$ and IL-4 in antigen-stimulated RBL-2H3 cells. In the mast cell-mediated local animal allergy model, it suppressed the passive cutaneous anaphylaxis in a dose-dependent manner. As its mechanism of action, SR inhibited the activating phosphorylation of Syk, a downstream signaling molecule of Src-family kinase, for the activation of mast cells. The results of the study indicate that the anti-allergic activity of SR is mediated by the inhibition of Src-family kinase in mast cells.

KF-1607, a Novel Pan Src Kinase Inhibitor, Attenuates Obstruction-Induced Tubulointerstitial Fibrosis in Mice

  • Dorotea, Debra;Lee, Seungyeon;Lee, Sun Joo;Lee, Gayoung;Son, Jung Beom;Choi, Hwan Geun;Ahn, Sung-Min;Ha, Hunjoo
    • Biomolecules & Therapeutics
    • /
    • v.29 no.1
    • /
    • pp.41-51
    • /
    • 2021
  • Src family kinases (SFKs), an important group of non-receptor tyrosine kinases, are suggested to be excessively activated during various types of tissue fibrosis. The present study investigated the effect of KF-1607, an orally active and a newly synthesized Src kinase inhibitor (SKI) with proposed low toxicity, in preventing the progression of renal interstitial fibrosis. Unilateral ureteral obstruction (UUO) surgery was performed in 6-week-old male C57BL/6 mice to induce renal interstitial fibrosis. Either KF-1607 (30 mg/kg, oral gavage) or PP2 (2 mg/kg, intraperitoneal injection), a common experimental SKI, was administered to mice for seven days, started one day prior to surgery. UUO injury-induced SFK expression, including Src, Fyn, and Lyn kinase. SFK inhibition by KF-1607 prevented the progression of tubular injury in UUO mice, as indicated by decreases in albuminuria, urinary KIM-1 excretion, and kidney NGAL protein expression. Renal tubulointerstitial fibrosis was attenuated in response to KF-1607, as shown by decreases in α-SMA, collagen I and IV protein expression, along with reduced Masson's trichrome and collagen-I staining in kidneys. KF-1607 also inhibited inflammation in the UUO kidney, as exhibited by reductions in F4/80 positive-staining and protein expression of p-NFκB and ICAM. Importantly, the observed effects of KF-1607 were similar to those of PP2. A new pan Src kinase inhibitor, KF-1607, is a potential pharmaceutical agent to prevent the progression of renal interstitial fibrosis.

Stimulatory Effect of Ginsenosides on $pp60^{c-src}$ Protein Tyrosine Kinase

  • Hong, Hee-Youn;Park, Seon-Yang;Lee, Seung-Ki;Yoo, Gyurng-Soo;Choi, Jung-Kap
    • Archives of Pharmacal Research
    • /
    • v.16 no.2
    • /
    • pp.114-117
    • /
    • 1993
  • Ginsenosides present in the roots of panax ginseng C.A. Meyer were shown to induce a stimulatory effect on the overexpressed cellular chicken c-src protein tyrossine kinase in NH3T3 cells. Among 4 ginsenosides studied $(G-Rb_2,\;G-Rc,\;G-Re\;and\;G-Rg_1),\;G-Rg_1$ showed the most stimulatory effect at $16.7\mu{g/ml}$ ginsenoside concentration increasing the activity by 2-4 times. Inhibitors of either protein synthesis or RNA synthesis blocked the activation of c-src proein tyrosine kinase. These results suggest that the csrc kinase activation apprars to involve an increase in the amount of protein of the kinase by transcriptional control mechanism rather than an increase in the kinase activity.

  • PDF

Effects of Ginsenosides on $pp60^{c-src}$ Kinase, Intracellular Calcium and Cell Proliferation in NIH 373 Cells

  • Hong, Hee-Youn;Yoo, Gyurng-Soo;Choi, Jung-Kap
    • Journal of Ginseng Research
    • /
    • v.22 no.2
    • /
    • pp.126-132
    • /
    • 1998
  • In the present study, we examined effects of ginseng saponins (ginsenosides) on pp60c-src protein tyrosine kinase (PTK) activity, intracellular calcium concentration ([$Ca^{2+}$]i), and cell proliferation in NIH3T3 cells. Eight different ginsenosides [ginsenoside-Rb1 (G-$Rb_1$), -$Rb_2$, -Rc, -Rd, -Re, -Rf, -$Rg_1$, -$Rg_2$) and ginseng total saponin (GTS) were used for these experiments. All ginsenosides and GTS tested stimulated the activation of $pp60^{c-src}$ kinase, and especially G-$Rb_1$,-Rd,-$Rg_1$, and -$Rg_1$ showed a higher stimulatory effect than others at 16.7 $\mu\textrm{g}$/ml of ginsenosides with a 18 hr-incubation, increasing the activity by 4.5, 3.5, 3.5, and 3.0-fold, respectively, over that of untreated control. In addition, both G-Rd and -$Rg_2$)Rg2 increased ($Ca^{2+}$), to 202 and 334 nM, respectively, about 2-3-fold above the basal level within 7min at 250 $\mu\textrm{g}$/yml of ginsenosides. The increases of ($Ca^{2+}$), were eliminated by Pretreatment of EGTA, an extracellular calcium chelator, suggtasting that they result from an influx of calcium ion from extracellular medium rather than an efflux from intracellular calcium store, endoplasmic reticulum (ER). All ginsenosides studied enhanced cell proliferation to 1.2-1.4-fold over that of untreated control at 5~250 $\mu\textrm{g}$/ml of concentrations. Interestingly the promotion of cell proliferation by ginsenosides corresponded with the activation of c-src kinase, which is an early step in the mitogenic signaling cascade. Taken together, we suggest that some ginsenosides may lead to cellProliferation via the activation of cellular signal transduction Pathway involving $pp60^{c-src}$ kinase.

  • PDF

Independent Regulation of Endothelial Nitric Oxide Synthase by Src and Protein Kinase A in Mouse Aorta Endothelial Cells

  • Boo, Yong-Chool
    • Journal of Applied Biological Chemistry
    • /
    • v.48 no.3
    • /
    • pp.120-126
    • /
    • 2005
  • Endothelial nitric oxide synthase (eNOS) plays a critical role in vascular biology and pathophysiology. Its activity is regulated by multiple mechanisms such as calcium/calmodulin, protein-protein interactions, sub-cellular locations and phosphorylation at various sites. Phosphorylation of eNOS-Ser1177 (based on mouse sequence) has been identified as an important mechanism of eNOS activation. However, signaling pathway leading to it phosphorylation remains controversial. The regulation of eNOS-Ser1177 phosphorylation by Src and protein kinase A (PKA) was investigated in the present study using cultured mouse aorta endothelial cells. Expression of a constitutively active Src mutant in the cells enhanced phosphorylation of eNOS and protein kinase B (Akt). The Src-stimulated phosphorylation was not attenuated by the expression of a dominant negative PKA regulatory subunit. Neither activation nor inhibition of PKA activity had any significant effect on tyrosine phosphorylation of activation or inactivation site in Src. Based on the results of this study, it is suggested that Src/Akt pathway and PKA signaling may regulate eNOS phosphorylation independently. The existence of multiple mechanisms for eNOS phosphorylation may guarantee endothelial nitric oxide production in various cellular contexts which is essential for maintenance of vascular health.