• 제목/요약/키워드: $PLC{\beta}2$

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Jl 배아주세포를 이용한 효율적인 생식선 이행 카이미라의 생산 (Factors Affecting the Productivity of Germ-line Chimeras from Jl Embryonic Stem Cells)

  • 김선욱;구본실;정상균;이태훈;유성란;남윤이;김정림;현병화;신희섭;이경광;상병찬;유대열
    • 한국가축번식학회지
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    • 제25권1호
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    • pp.71-77
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    • 2001
  • 본 실험은 phospholipase C (PLC)-$\beta$-3 및 peroxiredoxin (Prx) II 유전자가 적중 ($\Delta$)된 J1 마우스 배아주 (embryonic stem) 세포로부터 생식선이행 카이미라 마우스생산을 위한 제반조건 및 배아주세포의 배양조건을 확립하기 위하여 수행되었다. 80% 이상의 정상핵형을 보이는 유전자 적중된 4개의 클론 ($\Delta$Pu II C3, $\Delta$Pu II C3, C10 및 15)으로부터 카이미라를 생산하였을 때 형태적으로 분화정도가 높은 클론 ($\Delta$PLC$\beta$-3 C3)의 이용은 카이미라의 생산율 (21.1%)과는 무관하게 카이미리즘 (< 20%)이 낮았고, 수컷 카이미라의 생산 빈도 (7/15, 46%)도 낮아지는 것으로 나타났다. 그러나 형태적으로 안정된 3개의 클론 ($\Delta$Prx II C3, C10 및 15)은 80% 이상의 높은 카이미리즘을 지닌 마우스 (9/13, 69.2%)를 생산하였고, 수컷 카이미라의 생산율 (l1/13, 84.6%)도 증대된 것으로 나타났다. 따라서 80% 이상의 정상핵형을 지닌 배아주 세포를 형태적으로 안정하게 유지하는 것이 카이미리즘이 높은 마우스를 생산하는데 결정적 요인으로 작용할 수 있는 것으로 확인되었다. 미세주입용 배반포를 효율적으로 생산하기 위해 5~10주령 사이의 C57BL/6J 암컷마우스를 교배 한 결과, 10주령 마우스가 미세주입가능한 3.5일령 배반포를 가장 많이 생산 (2.94개/마리)하였다. 또한 미세주입된 배반포를 이식하기 위해 ICR 및 ICR$\times$C57BL/6J F1 (IBF1)위임신 대리모를 사용하였을 때, IBF1이 복당 산자수 (2.8 vs. 5.6)가 많았고 카이미라 생산율 (0 vs. 35.3%)도 매우 높았다. 따라서 공여마우스의 주령 및 대리모의 선택이 카이미라 생산효율 향상에 중요한 요인으로 부각되었다. 결과적으로 핵형이 안정된 ES 세포를 동정하는 것은 물론 클로닝 과정중에 형태적으로 분화가 없도록 ES세포를 배양하는 것이 카이미리즘이 높은 마우스를 생산하고 아울러 생식선 이행 빈도를 증가시키는데 결정적인 역할을 하는 것으로 확인되었다.

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Multiple roles of phosphoinositide-specific phospholipase C isozymes

  • Suh, Pann-Ghill;Park, Jae-Il;Manzoli, Lucia;Cocco, Lucio;Peak, Joanna C.;Katan, Matilda;Fukami, Kiyoko;Kataoka, Tohru;Yun, Sang-Uk;Ryu, Sung-Ho
    • BMB Reports
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    • 제41권6호
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    • pp.415-434
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    • 2008
  • Phosphoinositide-specific phospholipase C is an effector molecule in the signal transduction process. It generates two second messengers, inositol-1,4,5-trisphosphate and diacylglycerol from phosphatidylinositol 4,5-bisphosphate. Currently, thirteen mammal PLC isozymes have been identified, and they are divided into six groups: PLC-$\beta$, -$\gamma$, -$\delta$, -$\varepsilon$, -$\zeta$ and -$\eta$. Sequence analysis studies demonstrated that each isozyme has more than one alternative splicing variant. PLC isozymes contain the X and Y domains that are responsible for catalytic activity. Several other domains including the PH domain, the C2 domain and EF hand motifs are involved in various biological functions of PLC isozymes as signaling proteins. The distribution of PLC isozymes is tissue and organ specific. Recent studies on isolated cells and knockout mice depleted of PLC isozymes have revealed their distinct phenotypes. Given the specificity in distribution and cellular localization, it is clear that each PLC isozyme bears a unique function in the modulation of physiological responses. In this review, we discuss the structural organization, enzymatic properties and molecular diversity of PLC splicing variants and study functional and physiological roles of each isozyme.

Sphingosine 1-Phosphate-induced Signal Transduction in Cat Esophagus Smooth Muscle Cells

  • Song, Hyun Ju;Choi, Tai Sik;Chung, Fa Yong;Park, Sun Young;Ryu, Jung Soo;Woo, Jae Gwang;Min, Young Sil;Shin, Chang Yell;Sohn, Uy Dong
    • Molecules and Cells
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    • 제21권1호
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    • pp.42-51
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    • 2006
  • We investigated the mechanism of contraction induced by S1P in esophageal smooth muscle cells. Western blot analysis demonstrated that $S1P_1$, $S1P_2$, $S1P_3$, and $S1P_5$ receptors existed in the cat esophagus. Only penetration of EDG-5 ($S1P_2$) antibody into permeabilized cells inhibited S1P-induced contraction. Pertussis toxin (PTX) also inhibited contraction, suggesting that it was mediated by $S1P_2$ receptors coupled to a PTXsensitive $G_i$ protein. Specific antibodies to $G_{i2}$, $G_q$ and $G_{\beta}$ inhibited contraction, implying that the S1P-induced contraction depends on PTX-insensitive $G_q$ and $G_{\beta}$ dimers as well as the PTX-sensitive $G_{i2}$. Contraction was not affected by the phospholipase $A_2$ inhibitor DEDA, or the PLD inhibitor ${\rho}$-chloromercuribenzoate, but it was abolished by the PLC inhibitor U73122. Incubation of permeabilized cells with $PLC{\beta}3$ antibody also inhibited contraction. Contraction involved the activation of a PKC pathway since it was affected by GF109203X and chelerythrine. Since $PKC{\varepsilon}$ antibody inhibited contraction, $PKC{\varepsilon}$ may be required. Preincubation of the muscle cells with the MEK inhibitor PD98059 blocked S1P-induced contraction, but the p38 MAP kinase inhibitor SB202190 did not. In addition, co-treatment of cells with GF 109203X and PD98059 did not have a synergistic effect, suggesting that these two kinases are involved in the same signaling pathway. Our data suggest that S1P-induced contraction in esophageal smooth muscle cells is mediated by $S1P_2$ receptors coupled to PTX-sensitive $G_{i2}$ proteins, and PTX-insensitive $G_q$ and $G_{\beta}$ proteins, and that the resulting activation of the $PLC{\beta}3$ and $PKC{\varepsilon}$ pathway leads to activation of a p44/p42 MAPK pathway.

The Signal Transduciton of Ginsenosides, Active Ingredients of Panax ginseng, in Xenopus oocyte: A Model System for Ginseng Study

  • Nah Seung-Yeol;Lee Sang-Mok
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2002년도 학술대회지
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    • pp.66-83
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    • 2002
  • Recently, we have provided evidence that ginsenosides, the active components of Panax ginseng, utilize pertussis toxin (PTX)-insensitive $G{\alpha}_{q/11}-phospholipase\;C-{\beta}3(PLC-{\beta}3)$ signal transduction pathway for the enhancement of $Ca^{2+}-activated\;Cl^{-}$ current in the Xenopus oocyte (British J. Pharmacol. 132, 641-647, 2001; JBC 276, 48797-48802, 2001). Other investigators have shown that stimulation of receptors linked to $G{\alpha}-PLC$ pathway inhibits the activity of G proteincoupled inwardly rectifying $K^+$ (GIRK) channel. In the present study, we sought to determine whether ginsenosides influenced the activity of GIRK 1 and GIRK 4 (GIRK 1/4) channels expressed in the Xenopus oocyte, and if so, the underlying signal transduction mechanism. In oocyte injected with GIRK 1/4 channel cRNAs, bath-applied ginsenosides inhibited high potassium (HK) solution-elicited GIRK current $(EC_{50}:4.9{\pm}4.3\;{\mu}g/ml).$ Pretreatment of the oocyte with PTX reduced the HK solution-elicited GIRK current by $49\%,$ but it did not alter the inhibitory ginsenoside effect on GIRK current. Prior intraoocyte injection of cRNA(s) coding $G{\alpha}_q,\;G{\alpha}_{11}\;or\;G{\alpha}_q/G{\alpha}_{11},\;but\;not\;G{\alpha}_{i2}\;or\;G{\alpha}_{oA}$ attenuated the inhibitory ginsenoside effect. Injection of cRNAs coding $G{\beta}_{1{\gamma}2}$ also attenuated the ginsenoside effect. Similarly, injection of the cRNAs coding regulators of G protein signaling 1, 2 and 4 (RGS1, RGS2 and RGS4), which interact with $G{\alpha}_i\;and/or\;G{\alpha}_{q/11}$ and stimulates the hydrolysis of GTP to GDP in active GTP-bound $G{\alpha}$ subunit, resulted in a significant reduction of ginsenoside effect on GIRK current. Preincubation of GIRK channel-expressing oocyte in PLC inhibitor (U73122) or protein kinase C (PKC) inhibitor (staurosporine or chelerythrine) blocked the inhibitory ginsenoside effect on GIRK current. On the other hand, intraoocyte injection of BAPTA, a free $Ca^{2+}$ chelator, had no significant effect on the ginsenoside action. Taken together, these results suggest that ginsenosides inhibit the activity of GIRK 1/4 channel expressed in the Xenopus oocyte through a PTX-insensitive and $G{\alpha}_{q/11}$-,PLC-and PKC-mediated signal transduction pathway.

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A Gene Encoding Phosphatidyl Inositol-specific Phospholipase C form Cryphonectria parasitica Modulates the Hypoviral-modulated Laccase1 Expression

  • Kim, Dae-Hyuk
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2005년도 International Meeting of the Microbiological Society of Korea
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    • pp.159-161
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    • 2005
  • Hypovirus infection of the chestnut blight fungus Cryphonectria parasitica is a useful model system to study the hypoviral regulation of fungal gene expression. The hypovirus is known to downregulate the fungal laccase1 (lac 1), the modulation of which is tightly governed by the inositol triphosphate ($IP_3$) and calcium second messenger system in a virus-free strain. We cloned the gene cplc1 encoding a phosphatidyl inositol-specific phospholipase C (PLC), in order to better characterize the fungal gene regulation by hypovirus. Sequence analysis of the cplc1 gene indicated that the protein product contained both the X and Y domains, which are the two conserved regions found in all known PLCs, with a 133 amino acid extension between the 2nd ${\beta}$-strand and the ${\alpha}$-helix in the X domain. In addition, the gene organization appeared to be highly similar to that of a ${\delta}$ type PLC. Disruption of the cplc1 gene resulted in slow growth and produced colonies characterized by little aerial mycelia and deep orange in color. In addition, down regulation of lac1 expression was observed. However, temperature sensitivity, osmosensitivity, virulence, and other hypovirulence-associated characteristics did not differ from the wild-type strain. Functional complementation of the cplc1-null mutant with the PLC1 gene from Saccharomyces cerevisiae restored lac1 expression, which suggests that the cloned gene encodes PLC activity. The present study indicates that the cplc1 gene is required for appropriate mycelial growth, and that it regulates the lac1 expression, which is also modulated by the hypovirus. Although several PLC genes have been identified in various simple eukaryotic organisms, the deletion analysis of the cplc1 gene in this study appears to be the first report on the functional analysis of PLC in filamentous fungi.

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Identification of phospholipase Cβ downstream effect on transient receptor potential canonical 1/4, transient receptor potential canonical 1/5 channels

  • Ko, Juyeon;Myeong, Jongyun;Kwak, Misun;Jeon, Ju-Hong;So, Insuk
    • The Korean Journal of Physiology and Pharmacology
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    • 제23권5호
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    • pp.357-366
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    • 2019
  • $G{\alpha}_q$-coupled receptor stimulation was implied in the activation process of transient receptor potential canonical (TRPC)1/4 and TRPC1/5 heterotetrameric channels. The inactivation occurs due to phosphatidylinositol 4,5-biphosphate ($PI(4,5)P_2$) depletion. When $PI(4,5)P_2$ depletion was induced by muscarinic stimulation or inositol polyphosphate 5-phosphatase (Inp54p), however, the inactivation by muscarinic stimulation was greater compared to that by Inp54p. The aim of this study was to investigate the complete inactivation mechanism of the heteromeric channels upon $G{\alpha}_q$-phospholipase $C{\beta}$ ($G{\alpha}_q-PLC{\beta}$) activation. We evaluated the activity of heteromeric channels with electrophysiological recording in HEK293 cells expressing TRPC channels. TRPC1/4 and TRPC1/5 heteromers undergo further inhibition in $PLC{\beta}$ activation and calcium/protein kinase C (PKC) signaling. Nevertheless, the key factors differ. For TRPC1/4, the inactivation process was facilitated by $Ca^{2+}$ release from the endoplasmic reticulum, and for TRPC1/5, activation of PKC was concerned mostly. We conclude that the subsequent increase in cytoplasmic $Ca^{2+}$ due to $Ca^{2+}$ release from the endoplasmic reticulum and activation of PKC resulted in a second phase of channel inhibition following $PI(4,5)P_2$ depletion.

생쥐 소장 카할세포에서 발생하는 향도잡이 기능의 올란자핀 효능에 관한 연구 (Effects of Olanzapine on the Pacemaker Potentials of Interstitial Cells of Cajal in Murine Small Intestine)

  • 김병주
    • 생명과학회지
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    • 제29권9호
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    • pp.1010-1015
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    • 2019
  • 카할세포는 위장관에서 향도잡이 역할을 한다. 본연구에서는 생쥐 소장 카할세포에서 발생되는 향도잡이 기능에서 올란자핀의 역할을 연구하였다. 패치클램프 방법을 사용하여 향도잡이 전압을 측정하였다. 올란자핀에 의해서 카할세포 향도잡이 전압이 탈분극 되었으며, 이 탈분극은 무스카린성 3번 수용체 억제제에 의해서 억제 되었다. 세포내 $GDP{\beta}S$을 넣어주니 올란자핀에 의해 향도잡이 전압 탈분극이 억제되었다. 또한, 세포밖 $Na^+$ 농도 감소와 비선택성 양이온 통로 억제제에 의해서 올란자핀에 의한 향도잡이 전압 탈분극이 억제 되었다. 세포내 PLC기전의 억제제인 U-73122에 의해서 올란자핀에 의한 향도잡이 전압 탈분극이 억제 되었다. 이러한 결과로 올란자핀은 무스카린성 3번 수용체를 통해서 세포내 G 단백질과 PLC기전 및 세포밖 $Na^+$이 관여함을 알 수 있었다. 따라서 올란자핀은 카할세포를 통해서 장운동성을 조절 할 수 있을 것으로 생각된다.

편도암의 방사선 치료 성적 (Results of Coventional Radiotherapy for Carcinomas of the Tonsillar Region)

  • 나병식;남택근;안성자;정웅기
    • Radiation Oncology Journal
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    • 제15권2호
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    • pp.97-104
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    • 1997
  • 목적 : 근치적 목적으로 통상적인 방사선 단독치료 또는 유도화학 방사선 병용요법을 받은 편도암 환자들을 대상으로 생존율과 예후인자를 후향적으로 분석하여 이들 치료방법의 역할을 평가하고자 하였다. 대상 및 방법 : 1985년 11월부터 1993년 12월까지 근치적 목적의 통상적 방사선 치료를 받은 총 34명의 편도암 환자 중 16명은 방사선 단독치료를, 다른 18명은 유도화학 방사선 병용요법으로 치료하였고 유도화학 약제는 cisplatin과 5-fluorouracil 또는 pepleomycin으로 1회에서 3회까지 시행하였다. 방사선 치료는 6MV-X선으로 하루 1.8Gy씩 주 5회 시행하여 원발병소에는 55.0-86.4Gy(중앙값; 66.6), 경부 임파절 병소에는 55.8-90Gy(중앙값; 69.7)까지 시행하였다. 결과 :추적기간은 4-118개월(중앙값; 13.5)이었고 남녀비는 31:3 이었고 연령분포는 33-79세 (중앙값; 56.5)였다. 전체 환자의 5년 생존율은 $32\%$였다.. 병기 I+II(n=8), II(n=13), III(n=13)기의 5년 생존율은 각각 $47\%,\;29\%,\;25\%$였다(p=0.33). 병기 72(n=13), 73(n=10), 74(n=7)의 5년 생존율은 각각 $38\%,\;27\%,\;0\%$였고, 71환자 4명 중 3명은 25, 45, 53개월 현재 재발 또는 원격 전이없이 생존중이며 전체 T병기에서의 생존율의 경향은 유의한 차이가 있었다(p=0.01). 경부 임파절의 전이군(n=20, $59\%$)과 비전이군(n=14)의 5년 생존율은 각각 $32\%,\;31\%$였다(p=0.85). 방사선 단독치료군(n=16)과 유도화학 병용요법군(n=18)의 중앙 생존기간은 각각 9.5개월, 24개월이었고 5년 생존율은 각각 $22\%,\;38\%$였으나 통계적인 유의한 차이는 없었다(p=0.24). 원발암의 주위 조직으로의 침습여부에 따라 침습군(n=21)과 비침습군(n=13)의 5년 생존율은 각각 $28\%,\;38\%$였다(p=0.62). 방사선 치료기간에 따라 60일 이하군(n=10)과 61일 이상군(n=24)의 5년 생존율은 $60\%,\;18\%$였다(p=0.027). 현재 생존하고 있는 11명의 환자들은 모두 구강 건조, 발치, 충치, 연하 장애 그리고 하악골 괴사 1례 등 만기 후유증을 호소하였다. 5년 생존율에 영향을 미치는 예후인자로서 단일변량 분석으로는 방사선 치료기간의 장단과 원발암의 병기였고, 다변량 분석에서는 방사선 치료기간만이 가장 유의한 인자였다. 전체 환자 중 2명은 진단 당시 동시적 이증 원발암으로서 각각 구개수암, 구강저암이 있었고 다른 3명은 추적기간 17, 33, 36개월째에 이차성 원발암으로서 각각 식도암, 설암, 폐암이 진단되었다. 결론 : 유도화학방사선 병용요법 또는 통상적인 방사선 단독치료는 일부 소수 초기 병변에서 그 치료적 효과를 볼 수 있었으나 대부분의 진행된 병기에서는 저조한 효과를 보였고 생존자 전원은 심각한 만기 후유중을 호소하여, 결국 국소제어율의 상승과 함께 더 작은 일회 조사량으로 만기 후유증을 최소화하려는 생물학적인 측면을 고려하여 가급적 치료기간을 줄일 수 있는 다분 할조사가 시행되어야 할 것이고 이에 대한 전향적인 연구가 필요하다고 생각된다.

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방선균 분리주가 생산하는 Phospholipase C 저해물질인 MT-2617-2B의 분리 및 특성 (Isolation and Characterization of MT2617-2B, a Phospholipase C Inhibitor Produced by an Actinomycetes Isolate)

  • 고학룡;이현선;오원근;안순철;김보연;강대욱;민태익;안종석
    • 한국미생물·생명공학회지
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    • 제24권1호
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    • pp.19-26
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    • 1996
  • A phospholipase C (PLC) inhibitor (MT267-2B) was isolated from the culture broth of actinomycetes isolate MT2617-2 by the extraction with n-butanol and column chromatographic techniques. The molecular weight of the inhibitor was 1057, by the spectroscopic analyses of IR, $^{13}C$-and $^{1}H$-NMR and ESI-MS. The chemical structure of MT2617-2B was found to be a macrolide compound consisted of a hemiketal ring, polyhydroxyl and polymethyl groups, which had a malonate and guanidine group as its side chain. MT2617-2B produced its two isomers having the same molecular weight by standing in methanol solution at room temperature. Therefore, MT2617-2B was identified as copiamycin and niphithricin A, macrolide antibiotics. The values of $IC_{50}$ against PLC-${\gamma}$1 and PLC-${\beta}$1 were 25 and 50${\mu}$g/ml, respectively. MT2617-2B had antimicrobial activities against Staphylococcus aureus and Candida albicans, but not against Escherichia coli.

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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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