医学研究生学报
醫學研究生學報
의학연구생학보
JOURNAL OF MEDICAL POSTGRADUATE
2015年
5期
534-538
,共5页
石瑞峰(综述)%张仁良(审校)
石瑞峰(綜述)%張仁良(審校)
석서봉(종술)%장인량(심교)
缓激肽%组织型激肽释放酶%丝裂原活化蛋白激酶%糖原合成酶激酶-3β%一氧化氮
緩激肽%組織型激肽釋放酶%絲裂原活化蛋白激酶%糖原閤成酶激酶-3β%一氧化氮
완격태%조직형격태석방매%사렬원활화단백격매%당원합성매격매-3β%일양화담
Bradykinin%Tissue kallikrein%Mitogen activated protein kinase%Glycogen synthase kinase-3β%Nitric oxide
激肽释放酶-激肽系统(kallikrein-kinin system, KKS)主要包括激肽释放酶、激肽原和激肽,激肽原在激肽释放酶的作用下转化为激肽和缓激肽,后者作用于缓激肽受体1(bradykinin 1 receptor, B1R)和/或受体2(B2R)或蛋白酶活化受体(protease activated receptors, PARs),调节细胞内丝裂原活化蛋白激酶(mitogen activated protein kinase, MAPK)、磷脂酰肌醇(-3)激酶(phosphatidylinositol 3-kinase, PI3K)/Akt/糖原合成酶激酶-3β(glycogen synthase kinase-3β, GSK-3β)、一氧化氮(nitric ox-ide, NO)、Janus激酶( Janus kinases , JAKs)/转录激活因子( signal transducer and activator of transcription , STATs)及线粒体内等多条信号通路而发挥生物学效应。文中旨在综述KKS调节细胞内信号通路的作用及其研究进展,以全面了解其作用机制。
激肽釋放酶-激肽繫統(kallikrein-kinin system, KKS)主要包括激肽釋放酶、激肽原和激肽,激肽原在激肽釋放酶的作用下轉化為激肽和緩激肽,後者作用于緩激肽受體1(bradykinin 1 receptor, B1R)和/或受體2(B2R)或蛋白酶活化受體(protease activated receptors, PARs),調節細胞內絲裂原活化蛋白激酶(mitogen activated protein kinase, MAPK)、燐脂酰肌醇(-3)激酶(phosphatidylinositol 3-kinase, PI3K)/Akt/糖原閤成酶激酶-3β(glycogen synthase kinase-3β, GSK-3β)、一氧化氮(nitric ox-ide, NO)、Janus激酶( Janus kinases , JAKs)/轉錄激活因子( signal transducer and activator of transcription , STATs)及線粒體內等多條信號通路而髮揮生物學效應。文中旨在綜述KKS調節細胞內信號通路的作用及其研究進展,以全麵瞭解其作用機製。
격태석방매-격태계통(kallikrein-kinin system, KKS)주요포괄격태석방매、격태원화격태,격태원재격태석방매적작용하전화위격태화완격태,후자작용우완격태수체1(bradykinin 1 receptor, B1R)화/혹수체2(B2R)혹단백매활화수체(protease activated receptors, PARs),조절세포내사렬원활화단백격매(mitogen activated protein kinase, MAPK)、린지선기순(-3)격매(phosphatidylinositol 3-kinase, PI3K)/Akt/당원합성매격매-3β(glycogen synthase kinase-3β, GSK-3β)、일양화담(nitric ox-ide, NO)、Janus격매( Janus kinases , JAKs)/전록격활인자( signal transducer and activator of transcription , STATs)급선립체내등다조신호통로이발휘생물학효응。문중지재종술KKS조절세포내신호통로적작용급기연구진전,이전면료해기작용궤제。
Kallikrein-kinin system consists of kininogen , kallikrein, bradykinin and kinin .Kinins, derived from kininogen by tissue kallikrein , play their biological effects via bradykinin 1/2 receptors or protease activated receptors .Existing researches suggest that kinins exert various effects through different intracellular and mitochondrial signal pathways such as MAPK , PI3K/Akt/GSK3 be-ta, NO, JAKs/STATs.This review aims to elucidate the roles and the intracellular signal pathways of KKS in different diseases .