• 제목/요약/키워드: Phospholipase A

검색결과 538건 처리시간 0.044초

Phospholipase C Epsilon 1 (PLCE1 rs2274223A>G, rs3765524C>T and rs7922612C>T) Polymorphisms and Esophageal Cancer Risk in the Kashmir Valley

  • Malik, Manzoor Ahmad;Umar, Meenakshi;Gupta, Usha;Zargar, Showkat Ali;Mittal, Balraj
    • Asian Pacific Journal of Cancer Prevention
    • /
    • 제15권10호
    • /
    • pp.4319-4323
    • /
    • 2014
  • Background: Phospholipase C epsilon 1 (PLCE1) encodes a member of the phospholipase family of proteins that play crucial roles in carcinogenesis and progression of several cancers including esophageal cancer (EC). In two large scale genome-wide association studies (GWAS) single nucleotide polymorphisms (SNP, rs2274223A>G, rs3765524C>T) in PLCE1 were identified as novel susceptibility loci of esophageal cancer (EC) in China. The aim of the present study was to investigate this finding in Kashmir Valley, a high risk area. Materials and Methods: We determined genotypes of three potentially functional SNPs (rs2274223A>G, rs3765524C>T and rs7922612C>T) of PLCE1 in 135 EC patients, and 195 age and gender matched controls in Kashmiri valley by PCR RFLP method. Risk for developing EC was estimated by binary logistic regression using SPSS. Results: The selected PLCE1 polymorphisms did not show independent association with EC. However, the $G_{2274223}T_{3765524}T_{7922612}$ haplotype was significantly associated with increased risk of EC (OR=2.92; 95% CI=1.30-6.54; p=0.009). Smoking and salted tea proved to be independent risk factors for EC. Conclusions: Genetic variations in PLCE1 modulate risk of EC in the high risk Kashmiri population.

호중구에서 phospholipase D의 활성에 대한 protein kinase G의 영향 (Effects of Protein Kinase G on Phospholipase D Activity of Human Neutrophils)

  • 박지연;이민정;장민정;이선영;배외식;곽종영
    • 생명과학회지
    • /
    • 제13권6호
    • /
    • pp.903-910
    • /
    • 2003
  • Phosphipase D(PLD)는 호중구의 활성에서 중요한 신호전달 인자로 작용한다. 본 연구에서는 호중구에서 PLD의 활성화에 대한 nitric oxide(NO)와 cGMP의 영향을 조사하였다. 세포 내 NO의 생성을 증가시키는 물질인 sodium nitroprusside (SNP)를 단독으로 처리하였을 때 SNP를 처리하지 않은 세포에 비교하여 PLD 활성은 0.5 mM 농도에서 2배 이상 증가하였다. 세포 내 cAMP의 농도를 증가시키는 물질인 dibutyryl-cAMP를 처리하였을 때 formyl-Met-Leu-Phe(fMLP)에 의한 PLD활성은 억제되었으나 cGMP를 증가시키는 물질인 8-bromo-cGMP(300 $\mu$M)를 단독으로나 fMLP와 같이 처리하였을 때 PLD의 활성은 큰 영향이 없었다. NO에 의한 PLD의 활성은 cGMP-의존형 인산화 효소인 protein kinase G(PKG)의 억제제인 KT 5823에 의하여 억제되지 않았는데 이러한 결과는 PKG 이외의 경로를 통하여 일어남을 제시한다. NO를 처리한 호중구에서 p38 mitogen activated protein kinase(MAPK)가 활성화되어 인산화된 p38 MAPK가 Western blot에서 증가되었다. NO에 의한 p38 MAPK의 인산화는 KT 5823에 의하여 억제되지 않았고 PLD 억제제인 n-butanol에 의하여도 영향을 받지 않았다. PLD 활성의 인자인 RhoA는 fMLP나 phorbol myristate acetate(PMA)의 자극에 의하여 세포질로부터 세포막으로 전이가 되었으나 cGMP의 전처리에 의하여 fMLP에 의한 RhoA의 전이는 억제되었으나 PMA에 의한 전이는 영향을 받지 않았다. 이들 결과들은 호중구 내 증가된 cGMP가 RhoA를 억제하였으나 세포 내 증가된 NO는 cGMP 이외의 인자를 통하여 PLD의 활성화를 일으킨다는 것을 제시하고 있다.

The responsibility of C-terminal domain in the thermolabile haemolysin activity of Vibrio parahaemolyticus and inhibition treatments by Phellinus sp. extracts

  • Tran Thi Huyen;Ha Phuong Trang;Nguyen Thi-Ngan;Bui Dinh-Thanh;Le Pham Tan Quoc;Trinh Ngoc Nam
    • Fisheries and Aquatic Sciences
    • /
    • 제26권3호
    • /
    • pp.204-215
    • /
    • 2023
  • The thermolabile haemolysin (tlh) of Vibrio parahaemolyticus (Vptlh) from V. parahaemolyticus is a multiple-function enzyme, initially describes as a haemolytic factor activated by lecithin and phospholipase A2 enzymatic activity (Shinoda, 1991; Vazquez-Morado, 2021; Yanagase et al., 1970). Until now, the tlh structure has hypothesized including N-terminal and C-terminal domain, but what domain of the Vptlh structure does the haemolytic activity has not been refined yet. In this study, a 450-bp VpTLH nucleotide sequence of the entire Vptlh gene encoded the C-terminal domain cloned firstly to examine its responsibility in the activity of the Vptlh. The C-terminal domain fused with a 6-His-tag named the His-tag-VpC-terminal domain was expressed successfully in soluble form in the BL21 (DE3) PlysS cell. Remarkably, both expression and purification results confirmed a high agreement in the molecular weight of the His-tag-VpC-terminal domain was 47 kDa. This work showed the His-tag-VpC-terminal domain lysed the erythrocyte membranes in the blood agar and the phosphate buffered saline (0.9%) media without adding the lecithin substrate of the phospholipase enzyme. Haemolysis occurred at all tested diluted concentrations of His-tag-VpC-terminal domain (p < 0.05), providing evidence for the independent haemolytic activity of the His-tag-VpC-terminal domain. The content of 100 ㎍ of the His-tag-VpC-terminal domain brought the highest haemolytic activity of 80% compared to that in the three remaining contents. Significantly, the His-tag-VpC-terminal domain demonstrated not to involve the phospholipase activity in Luria-Bertani agar supplemented with 1% (vol/vol) egg yolk emulsion. All results proved the vital responsibility of the His-tag-VpC-terminal domain in causing the haemolytic activity without the required activation by the phospholipase enzyme. Raw extracts of Phellinus igniarus and Phellinus pipi at 10-1 mg/mL inhibited the haemolytic activity of the His-tag-VpC-terminal domain from 67.7% to 87.42%, respectively. Hence applying the His-tag-VpC-terminal domain as a simple biological material to evaluate quickly potential derivatives against the Vptlh in vivo conditions will accessible and more advantageous than using the whole of the Vptlh.

Composition Effect of the Outer Layer on the Vesicle Fusion Catalyzed by Phospholipase D

  • Park, Jin-Won
    • Bulletin of the Korean Chemical Society
    • /
    • 제35권12호
    • /
    • pp.3509-3513
    • /
    • 2014
  • Phospholipase D (PLD) catalyzed the generation of phosphatidic acid (PA) from phosphatidylcholine (PC) at the outer layer of the vesicles prepared through layer by layer via a double emulsion technique. The generation induced a curvature change in the vesicles, which eventually led them to fuse each other. The ratio of two-fatty-acid-tail ethanolamine (PE) to one-fatty-acid-tail ethanolamine (PE) was found to acquire the condition where the mixed-phospholipid vesicles were stable identically with pure two-fatty-acid-tail PC. The effect of the outer-layer mixture on the PLD-induced vesicle fusion was investigated using the fluorescence intensity change. 8-Aminonaph-thalene-1,3,6-trisulfonic acid disodium salt (ANTS) and p-Xylene-bis(N-pyridinium bromide) (DPX) were encapsulated in the vesicles, respectively, for the quantification of the fusion. The fluorescence scale was calibrated with the fluorescence of a 1/1 mixture of ANTS and DPX vesicles in NaCl buffer taken as 100% fluorescence (0% fusion) and the vesicles containing both ANTS and DPX as 0% fluorescence (100% fusion), considering the leakage into the medium studied directly in a separate experiment using vesicles containing both ANTS and DPX. The fusion data for each composition were acquired with the subtraction of the leakage from the quenching. From the monitoring, the vesicle fusion caused by the PLD reaction seems dominantly to occur rather than the vesicle lysis, because the composition effect on the fusion was observed identically with that on the change in the vesicle structure. Furthermore, the diameter measurements also support the fusion dominancy.

Effect of Diesel Exhaust Particles (DEP) on the Activity of Phospholipase D (PLD) in RAW 264.7 Cells

  • Nam Hae-Yun;Shin Hyun-Yong;Ahn Eun-Kyung;Kim Hyung-Jung;Lim Young
    • Toxicological Research
    • /
    • 제22권1호
    • /
    • pp.9-13
    • /
    • 2006
  • Diesel exhausted particles (DEP), a kind of fine particles with aerodynamic diameters less than $2.5{\mu}m$ (PM2.5), is of great concern to human health because they remain in atmosphere for long periods, invade an indoor air environment, and can be breathed most deeply into lung and reached the alveoli because of their small size ($0.1{\sim}0.4\;{\mu}m$ in diameter). Epidemiological and experimental studies suggested that DEP may play an active role in the increased respiratory mortality and morbidity. In addition to their physical characteristics, the chemical components including polyaromatic hydrocarbon (PAH) are regarded as a carcinogen causing pulmonary tumors. PLD plays an important role in cell proliferation with various physiological phenomena and affects other enzymes by activating signal transduction pathway. We investigated the cytotoxic mechanism of DEP on RAW 264.7 cells focusing on the role in activation of PLD. Our results suggested DEP induced PLD activity through a specific signaling pathway involving phospholipase $A_2$, PLC, PKC and $Ca^{2+}$ mobilization.