流体剪切应力与动脉粥样硬化
中文名称
通路描述
剪切应力代表血流在血管壁内皮表面产生的摩擦力,在血管生物学中起核心作用,并促进动脉粥样硬化的进展。持续的高剪切应力流会上调内皮细胞(EC)基因和蛋白的表达,这些表达有助于抵抗动脉粥样硬化。另一方面,伴有往复的低剪切应力的紊乱血流通常会上调促进动脉壁氧化和炎症状态的EC基因和蛋白,导致动脉粥样硬化。反映这种紊乱血流条件下EC细胞状态的重要转录事件包括激活激活蛋白1(AP-1)和核因子κB(NF-κB)。
英文描述
Shear stress represents the frictional force that the flow of blood exerts at the endothelial surface of the vessel wall and plays a central role in vascular biology and contributes to the progress of atherosclerosis. Sustained laminar flow with high shear stress upregulates expressions of endothelial cell (EC) genes and proteins that are protective against atherosclerosis. The key shear stress-induced transcription factors that govern the expression of these genes are Kruppel-like factor 2 (KLF2) and nuclear factor erythroid 2-like 2 (Nrf2). On the other hand, disturbed flow with associated reciprocating, low shear stress generally upregulates the EC genes and proteins that promote oxidative and inflammatory states in the artery wall, resulting in atherogenesis. Important transcriptional events that reflect this condition of ECs in disturbed flow include the activation of activator protein 1 (AP-1) and nuclear factor kappaB (NF-kappaB).
所含基因
142 个基因
ACTB
ACTG1
ACVR1
ACVR2A
ACVR2B
AKT1
AKT2
AKT3
ARHGEF2
ASS1
BCL2
BMP4
BMPR1A
BMPR1B
BMPR2
CALM1
CALM2
CALM3
CALML3
CALML4
CALML5
CALML6
CAV1
CAV2
CAV3
CCL2
CDH5
CHUK
CTNNB1
CTSL
CYBA
DUSP1
EDN1
FOS
GPC1
GSTA1
GSTA2
GSTA3
GSTA4
GSTA5
GSTM1
GSTM2
GSTM3
GSTM4
GSTM5
GSTO1
GSTO2
GSTP1
GSTT1
GSTT2
GSTT2B
GSTT4
HMOX1
HSP90AA1
HSP90AB1
HSP90B1
ICAM1
IFNG
IKBKB
IKBKG
IL1A
IL1B
IL1R1
IL1R2
ITGA2B
ITGAV
ITGB3
JUN
KDR
KEAP1
KLF2
MAP2K4
MAP2K5
MAP2K6
MAP2K7
MAP3K5
MAP3K7
MAPK10
MAPK11
MAPK12
MAPK13
MAPK14
MAPK7
MAPK8
MAPK9
MEF2A
MEF2C
MGST1
MGST2
MGST3
MIR10A
MIR10B
MMP2
MMP9
NCF1
NCF2
NFE2L2
NFKB1
NOS3
NOX1
NPPC
NQO1
P3R3URF-PIK3R3
PDGFA
PDGFB
PECAM1
PIAS4
PIK3CA
PIK3CB
PIK3CD
PIK3R1
PIK3R2
PIK3R3
PLAT
PRKAA1
PRKAA2
PRKCZ
PTK2
RAC1
RAC2
RAC3
RELA
RHOA
SDC1
SDC2
SDC4
SELE
SQSTM1
SRC
SUMO1
SUMO2
SUMO3
SUMO4
THBD
TNF
TNFRSF1A
TP53
TRPV4
TXN
TXN2
VCAM1
VEGFA