cPLA2被酸化并被MAP激酶激活.
1Genetics Institute, Small Molecule Drug Discovery Group, Cambridge, Massachusetts 02140.
Cell
|January 29, 1993
概括
线素激活蛋白 (MAP) 激酶酸化并激活细胞酶酸酶A2 (cPLA2) 在Ser-505.5. 这种MAP激酶介导的激活对于细胞中激素诱导的酸释放至关重要.
科学领域:
- 细胞信号通道是细胞信号通道.
- 酶学 是一种酶学.
- 分子生物学分子生物学
背景情况:
- 激素激励触发了阿拉基酸的释放,其中包括细胞酶酸酶A2 (cPLA2) 激活和血清酸化.
- 调节cPLA2激活的精确机制仍然不完全理解.
研究的目的:
- 调查基激活蛋白 (MAP) 激酶在cPLA2.2激活中的作用.
- 为了确定由MAP激酶准的cPLA2上的特定酸化位.
主要方法:
- 在体外激酶试验中测试,以确定cPLA2是否是MAP激酶的基质.
- 局部导向突变发生,以用氨酸替换已识别的酸化位 (Ser-505).
- 在表达野生型和突变型cPLA2的细胞中评估cPLA2的酶活性和酸释放.
主要成果:
- 鉴定出cPLA2是MAP激酶的直接基质.
- 通过MAP激酶对cPLA2的酸化显著增加了它的酶活性.
- 氨酸-505被确定为CPLA2.2.上的MAP激酶介导酸化的主要部位.
- 一种突变的cPLA2,其中Ser-505被氨酸替换,没有被MAP激酶酸化,并且显示激素激发的酸释放显著减少.
结论:
- MAP 激酶在调解激素诱导的cPLA2.2激活中起着重要的作用.
- 在Ser-505中通过MAP激酶对cPLA2的酸化是调节酸释放的关键步骤.
更多相关视频
相关概念视频
Carboxylic Acids to Acid Chlorides
Carboxylic acids react with SOCl2 or PCl5 to form acid chlorides. Amongst the carboxylic acid derivatives, acid chlorides are the most reactive and synthetically important derivatives. They are useful reagents for Friedel–Crafts acylation of some aromatic compounds.
GPCRs Regulate Adenylyl Cylase Activity
Some GPCRs transmit signals through adenylyl cyclase (AC), a transmembrane enzyme. AC helps synthesize second messenger cyclic adenosine monophosphate (cAMP). AC catalyzes cyclization reaction and converts ATP to cAMP by releasing a pyrophosphate. The pyrophosphate is further hydrolyzed to phosphate by the enzyme pyrophosphatase, which drives cAMP synthesis to completion. However, cAMP is rapidly degraded to 5′ AMP by the enzymes phosphodiesterase (PDE), preventing overstimulation of cells.
Two...
Two...
cAMP-dependent Protein Kinase Pathways
Cyclic Adenosine Monophosphate (cAMP) is an essential second messenger that activates protein kinase A (PKA) and regulates various biological processes. A single epinephrine molecule binds to GPCR and activates several heterotrimeric G proteins, each stimulating multiple adenylyl cyclase, amplifying the signal, and synthesizing large numbers of cAMP molecules. Small changes in cAMP concentration affect PKA activity. The binding of four cAMP molecules induces a conformational change in PKA,...
IP3/DAG Signaling Pathway
Membrane lipids such as phosphatidylinositol (PI) are precursors for several membrane-bound and soluble second messengers. Specific kinases phosphorylate PI and produce phosphorylated inositol phospholipids. One such inositol phospholipids are the phosphatidylinositol-4,5 bisphosphate [PI(4,5)P2], present in the inner half of the lipid bilayer. Upon ligand binding, GPCR stimulates Gq proteins to turn on phospholipase Cꞵ. Activated phospholipase Cꞵ cleaves PI(4,5)P2 and produces two-second...
Calmodulin-dependent Signaling
Calmodulin (CaM) is a calcium-binding protein in eukaryotes that controls various calcium-regulated cellular processes. It has four calcium-binding sites that bind calcium to form the calcium-calmodulin ( Ca2+-CaM) complex. GPCR stimulation increases the calcium levels in the cells that bind to CaM and induces a conformational change.
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
The Ca2+-CaM complex does not have enzymatic activity by itself. Instead, the complex binds downstream target proteins, including membrane proteins or enzymes,...
Nitric Oxide Signaling Pathway
Nitric oxide (NO), an inorganic gas, acts as a potent second messenger in most animal and plant tissues. NO diffuses out of the cells that produce it and enters the neighboring cells to generate a downstream response. NO synthase (NOS) catalyzes NO production by the deamination of the amino acid arginine. There are three isoforms of NOS. Endothelial cells have endothelial NOS (eNOS), nerve and muscle cells have neuronal NOS (nNOS), and macrophages produce inducible NOS (iNOS) upon exposure to...


