• 제목/요약/키워드: Phosphatidylinositol-4,5-bisphosphate

검색결과 36건 처리시간 0.027초

Phospholipase C-β3 Mediates the Thrombin-induced Ca2+ Response in Glial Cells

  • Hwang, Jong-Ik;Shin, Kum-Joo;Oh, Yong-Seok;Choi, Jung-Woong;Lee, Zee-Won;Kim, Daesoo;Ha, Kwon-Soo;Shin, Hee-Sup;Ryu, Sung Ho;Suh, Pann-Ghill
    • Molecules and Cells
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    • 제19권3호
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    • pp.375-381
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    • 2005
  • Phospholipase C-${\beta}$ (PLC-${\beta}$) hydrolyses phosphatidylinositol 4,5-bisphosphate and generates inositol 1,4,5-trisphosphate in response to activation of various G protein-coupled receptors (GPCRs). Using glial cells from knock-out mice lacking either PLC-${\beta}1$ [PLC-${\beta}1$ (-/-)] or PLC-${\beta}3$ [PLC-${\beta}3$ (-/-)], we examined which isotype of PLC-${\beta}$ participated in the cellular signaling events triggered by thrombin. Generation of inositol phosphates (IPs) was enhanced by thrombin in PLC-${\beta}1$ (-/-) cells, but was negligible in PLC-${\beta}3$ (-/-) cells. Expression of PLC-${\beta}3$ in PLC-${\beta}3$ (-/-) cells resulted in an increase in pertussis toxin (PTx)-sensitive IPs in response to thrombin as well as to PAR1-specific peptide, while expression of PLC-${\beta}1$ in PLC-${\beta}1$ (-/-) cells did not have any effect on IP generation. The thrombin-induced $[Ca^{2+}]_i$ increase was delayed and attenuated in PLC-${\beta}3$ (-/-) cells, but normal in PLC-${\beta}1$ (-/-) cells. Pertussis toxin evoked a delayed $[Ca^{2+}]_i$ increase in PLC-${\beta}3$ (-/-) cells as well as in PLC-${\beta}1$ (-/-) cells. These results suggest that activation of PLC-${\beta}3$ by pertussis toxin-sensitive G proteins is responsible for the transient $[Ca^{2+}]_i$ increase in response to thrombin, whereas the delayed $[Ca^{2+}]_i$ increase may be due to activation of some other PLC, such as PLC-${\beta}4$, acting via PTx-insensitive G proteins.

G Protein-Coupled Receptor Signaling in Gastrointestinal Smooth Muscle

  • Sohn, Uy-Dong;Kim, Dong-Seok;Murthy, Karnam S.
    • The Korean Journal of Physiology and Pharmacology
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    • 제5권4호
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    • pp.287-297
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    • 2001
  • Contraction of smooth muscle is initiated by an increase in cytosolic $Ca^{2+}$ leading to activation of $Ca^{2+}$/ calmodulin-dependnet myosin light chain (MLC) kinase and phosphorylation of MLC. The types of contraction and signaling mechanisms mediating contraction differ depending on the region. The involvement of these different mechanisms varies depending on the source of $Ca^{2+}$ and the kinetic of $Ca^{2+}$ mobilization. $Ca^{2+}$ mobilizing agonists stimulate different phospholipases $(PLC-{\beta},\;PLD\;and\;PLA_2)$ to generate one or more $Ca^{2+}$ mobilizing messengers $(IP_3\;and\;AA),$ and diacylglycerol (DAG), an activator of protein kinase C (PKC). The relative contributions of $PLC-{\beta},\;PLA_2$ and PLD to generate second messengers vary greatly between cells and types of contraction. In smooth muscle cell derived form the circular muscle layer of the intestine, preferential hydrolysis of $PIP_2$ and generation of $IP_3$ and $IP_3-dependent\;Ca^{2+}$ release initiate the contraction. In smooth muscle cells derived from longitudinal muscle layer of the intestine, preferential hydrolysis of PC by PLA2, generation of AA and AA-mediated $Ca^{2+}$ influx, cADP ribose formation and $Ca^{2+}-induced\;Ca^{2+}$ release initiate the contraction. Sustained contraction, however, in both cell types is mediated by $Ca^{2+}-independent$ mechanism involving activation of $PKC-{\varepsilon}$ by DAG derived form PLD. A functional linkage between $G_{13},$ RhoA, ROCK, $PKC-{\varepsilon},$ CPI-17 and MLC phosphorylation in sustained contraction has been implicated. Contraction of normal esophageal circular muscle (ESO) in response to acetylcholine (ACh) is linked to $M_2$ muscarinic receptors activating at least three intracellular phospholipases, i.e. phosphatidylcholine-specific phospholipase C (PC-PLC), phospholipase D (PLD) and the high molecular weight (85 kDa) cytosolic phospholipase $A_2\;(cPLA_2)$ to induce phosphatidylcholine (PC) metabolism, production of diacylglycerol (DAG) and arachidonic acid (AA), resulting in activation of a protein kinase C (PKC)-dependent pathway. In contrast, lower esophageal sphincter (LES) contraction induced by maximally effective doses of ACh is mediated by muscarinic $M_3$ receptors, linked to pertussis toxin-insensitive GTP-binding proteins of the $G_{q/11}$ type. They activate phospholipase C, which hydrolyzes phosphatidylinositol bisphosphate $(PIP_2),$ producing inositol 1, 4, 5-trisphosphate $(IP_3)$ and DAG. $IP_3$ causes release of intracellular $Ca^{2+}$ and formation of a $Ca^{2+}$-calmodulin complex, resulting in activation of myosin light chain kinase and contraction through a calmodulin-dependent pathway.

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Dual regulatory effects of PI(4,5)P2 on TREK-2 K+ channel through antagonizing interaction between the alkaline residues (K330 and R355-357) in the cytosolic C-terminal helix

  • Kim, Sung Eun;Kim, Myoung-Hwan;Woo, Joohan;Kim, Sung Joon
    • The Korean Journal of Physiology and Pharmacology
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    • 제24권6호
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    • pp.555-561
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    • 2020
  • TWIK-related two-pore domain K+ channel-2 (TREK-2) has voltage-independent activity and shows additional activation by acidic intracellular pH (pHi) via neutralizing the E332 in the cytoplasmic C terminal (Ct). We reported opposite regulations of TREK-2 by phosphatidylinositol 4,5-bisphosphate (PIP2) via the alkaline K330 and triple Arg residues (R355-357); inhibition and activation, respectively. The G334 between them appeared critical because its mutation (G334A) endowed hTREK-2 with tonic activity, similar to the mutation of the inhibitory K330 (K330A). To further elucidate the role of putative bent conformation at G334, we compared the dual mutation forms, K330A/G334A and G334A/R355-7A, showing higher and lower basal activity, respectively. The results suggested that the tonic activity of G334A owes to a dominant influence from R355-7. Since there are additional triple Arg residues (R377-9) distal to R355-7, we also examined the triple mutant (G334A/R355-7A/R377-9A) that showed tonic inhibition same with G334A/R355-7A. Despite the state of tonic inhibition, the activation by acidic pHi was preserved in both G334A/R355-7A and G334A/R355-7A/R377-9A, similar to the R355-7A. Also, the inhibitory effect of ATP could be commonly demonstrated under the activation by acidic pHi in R355-7A, G334A/R355-7A, and G334A/R355-7A/R377-9A. These results suggest that the putative bent conformation at G334 is important to set the tug-of-war between K330 and R355-7 in the PIP2-dependent regulation of TREK-2.

H9 Inhibits Tumor Growth and Induces Apoptosis via Intrinsic and Extrinsic Signaling Pathway in Human Non-Small Cell Lung Cancer Xenografts

  • Kim, Min-Je;Kwon, Sae-Bom;Ham, Seung Hoon;Jeong, Eui-Suk;Choi, Yang-Kyu;Choi, Kang Duk;Hong, Jin Tae;Jung, Seung Hyun;Yoon, Do-Young
    • Journal of Microbiology and Biotechnology
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    • 제25권5호
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    • pp.648-657
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    • 2015
  • H9, a novel herbal extract, demonstrated cytotoxicity in A549 non-small cell lung cancer (NSCLC) cell lines. In this study, we investigated whether H9, and/or co-treatment with an anticancer drug, pemetrexed (PEM), inhibited tumor growth in BALB/c nude mice models bearing A549 NSCLC cells. The mice were separated into groups and administered H9 and PEM for 2 weeks. Protein and mRNA levels were detected using western blotting and reverse transcription polymerase chain reaction, respectively; immunohistochemistry (IHC) was also performed on the tumor tissues. H9 and co-treatment with PEM induced the cleavage of proapoptotic factors, such as caspase-3, caspase-8, caspase-9, and poly(ADP)-ribose polymerase (PARP). Expression levels of cell-death receptors involving Fas/FasL, TNF-related apoptosisinducing ligands (TRAIL), and TRAIL receptors were increased by H9 and co-treatment with PEM. Furthermore, analysis of levels of cell-cycle modulating proteins indicated that tumor cells were arrested in the G1/S phase. In addition, the phosphatidylinositol-4,5-bisphosphate 3-kinase (PI3K)/Akt survival signaling pathways were inhibited by H9 and co-treatment with PEM. In conclusion, H9 and co-treatment with PEM inhibited tumor growth in BALB/c nude mice models bearing A549 NSCLC cells. These results indicate that H9 and co-treatment with PEM can be used as an anticancer therapy in NSCLC.

베타 튜불린에 의한 포스포리파제 C-감마1의 활성화 (Phospholipase C-γ Activation by Direct Interaction with β-Tubulin Isotypes)

  • 이인범;김성국;최장현;서판길;장종수
    • 생명과학회지
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    • 제16권4호
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    • pp.612-617
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    • 2006
  • 포스포리파제 C-감마1$(phospholipase\;C-{\gamma}\;1;\;PLC-{\gamma}\;1)$은 활성화될 경우 세포 내의 이차전령인 inositol 1,4,5-trisphosphate$(IP_3)$와 diacylglycerol(DG)을 생성하는 중요한 세포 신호전달 분자이다. 튜불린은 미세소관과 방추사의 주요 구성 단백질로서 알파형과 베타형의 두 가지 동위형이 있는데 이들은 모든 진핵세포에 존재하면서 이형 이합체를 형성한다. 이 중 베타형 튜불린은 사람의 경우 6종의 또 다른 동위형이 존재하는 것으로 밝혀졌는데 이들은 각 조직에서 그 발현양상이 서로 다르게 나타난다. 이전의 연구에서 우리들은 $PLC-{\gamma}\;1$과 4종의 베타튜불린 동위형 즉, ${\beta}1$, ${\beta}2$, ${\beta}3$${\beta}6$이 세포 내에서 서로 결합할 수 있으며 또한 외부의 자극이 전달될 경우 이들 4종의 동위형이 $PLC-{\gamma}\;1$을 활성화시켜 준다는 사실을 보고한 바 있다. 이번 실험에서는 이전의 연구에서 조사하지 못하였던 베타 튜불린의 나머지 두 가지 동위형 즉, ${\beta}4$${\beta}5$$PLC-{\gamma}\;1$에 결합하여 $PLC-{\gamma}\;1$의 활성을 증가시켜줌으로서 세포 내에서의 신호전달계를 조절하고 있음을 확인하였다. 이 결과는 이전의 연구결과와 연관 지워볼 때, 6종의 모든 베타형 튜불린은 세포 외부의 자극이 있을 경우 $PLC-{\gamma}\;1$을 활성화시켜줌을 시사한다.

인체 폐암조직에서 Phospholipase C-$\gamma1$의 활성화 단백, AHNAK의 발현양상 (Increased Expression of Phospholipase C-$\gamma1$ Activator Protein, AHNAK in Human Lung Cancer Tissues)

  • 오윤정;박준성;최소연;정성철;이선민;황성철;이이형;한명호;이기범;류한영;하만준;배윤수;이서구
    • Tuberculosis and Respiratory Diseases
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    • 제47권3호
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    • pp.347-355
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    • 1999
  • 배경: Phospholipase C(PLC)는 세포의 성장, 분화, 변형(transformation)과 관련된 세포내 신호 전달과정에 중추적인 역할을 하는 효소이다. 이들 중 PLC-$\gamma$는 tyrosine kinase의 인산화에 의해 주로 활성화되는 데, 최근에 phosphatidic acid(PA), phosphatidy-linositol 3, 4, 5-trisphosphate($PIP_3$), tau 단백에 의한 활성화 기전이 밝혀진 바 있다. 특히 tau 단백은 bovine brain에서 arachidonic acid와 함께 PLC-$\gamma$를 활성화시키는 것으로 알려져 PLC-$\gamma$$PLA_2$ 사이의 cross-talk이 이루어질 가능성이 제시되고 있다. 최근 보고에 의하면 tau 단백과 같은 기전으로 PLC-${\gamma}1$ 활성화시키는 단백이 bovine lung에서 발견되었고, 이 활성화 단백을 정제 및 클론하여 AHNAK 단백임이 확인된 바 있다. 또한 PLC-${\gamma}1$이 유방암, 대장암, 위암 등에서 증가되어 있어 발암 과정과 연관되어 있음이 보고되어 왔으나 PLC-${\gamma}1$의 활성화 단백인 AHNAK 단백에 대해서는 질병과 관련되어 연구된 것이 아직 없는 실정이며 저자 등은 폐암 조직과 정상 폐조직에서 AHNAK 단백의 발현 양상을 연구하여 폐암의 발암과정에 AHNAK 단백이 관여함을 밝히고자 하였다. 대상 및 방법: 아주대학교 병원에 내원하여 폐암으로 수술을 받은 환자의 폐암 조직과 동일 환자의 정상 폐조직에서 AHNAK 단백의 발현양상을 western blot 분석과 면역조직화학적 염색방법을 통하여 조사하였다. 결과: 14예의 편평상피암 세포조직 중 8예 (57.1 %)와 14예의 선암 세포조직 모두에서 정상 대조군에 비해 AHNAK 단백의 발현이 증가하였고, 70 kDa~200kDa의 여러가지 분자량을 가지는 띠모양으로 나타났다. 면역조직화학적 염색에서도 정상 폐조직보다 폐암 조직내에서 강한 발색반응을 보였다. 결론: PLC-${\gamma}1$의 활성화 단백인 AHNAK 단백이 폐암 조직에서 정상 조직보다 과발현된 것은, AHNAK 단백이 PLC-${\gamma}1$을 활성화시켜 폐암의 발생 기전에 관여할 수 있음을 뒷받침한다고 하겠다.

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