Anti-cGKI抗体(ab69532)
Key features and details
- Rabbit polyclonal to cGKI
- Suitable for: WB
- Reacts with: Mouse, Rat, Human
- Isotype: IgG
概述
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产品名称
Anti-cGKI抗体
参阅全部 cGKI 一抗 -
描述
兔多克隆抗体to cGKI -
宿主
Rabbit -
经测试应用
适用于: WBmore details -
种属反应性
与反应: Mouse, Rat, Human -
免疫原
Synthetic peptide within Human cGKI aa 600 to the C-terminus conjugated to keyhole limpet haemocyanin. The exact immunogen sequence used to generate this antibody is proprietary information. If additional detail on the immunogen is needed to determine the suitability of the antibody for your needs, please contact our Scientific Support team to discuss your requirements.
Database link: Q13976 -
阳性对照
- Mouse or Rat Brain Tissue Extract
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常规说明
The Life Science industry has been in the grips of a reproducibility crisis for a number of years. Abcam is leading the way in addressing this with our range of recombinant monoclonal antibodies and knockout edited cell lines for gold-standard validation. Please check that this product meets your needs before purchasing.
If you have any questions, special requirements or concerns, please send us an inquiry and/or contact our Support team ahead of purchase. Recommended alternatives for this product can be found below, along with publications, customer reviews and Q&As
性能
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形式
Liquid -
存放说明
Shipped at 4°C. Upon delivery aliquot and store at -20°C or -80°C. Avoid repeated freeze / thaw cycles. -
存储溶液
Preservative: 0.09% Sodium azide
Constituents: 50% Glycerol (glycerin, glycerine), PBS -
Concentration information loading...
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纯度
Protein A purified -
克隆
多克隆 -
同种型
IgG -
研究领域
相关产品
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Compatible Secondaries
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Isotype control
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Recombinant Protein
应用
The Abpromise guarantee
Abpromise™承诺保证使用ab69532于以下的经测试应用
“应用说明”部分 下显示的仅为推荐的起始稀释度;实际最佳的稀释度/浓度应由使用者检定。
应用 | Ab评论 | 说明 |
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WB |
1/1000. Predicted molecular weight: 78 kDa.
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说明 |
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WB
1/1000. Predicted molecular weight: 78 kDa. |
靶标
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功能
Serine/threonine protein kinasethat acts as key mediator of the nitric oxide (NO)/cGMP signaling pathway. GMP binding activates PRKG1, which phosphorylates serines and threonines on many cellular proteins. Numerous protein targets for PRKG1 phosphorylation are implicated in modulating cellular calcium, but the contribution of each of these targets may vary substantially among cell types. Proteins that are phosphorylated by PRKG1 regulate platelet activation and adhesion, smooth muscle contraction, cardiac function, gene expression, feedback of the NO-signaling pathway, and other processes involved in several aspects of the CNS like axon guidance, hippocampal and cerebellar learning, circadian rhythm and nociception. Smoth muscle relaxation is mediated through lowering of intracellular free calcium, by desensitization of contractile proteins to calcium, and by decrease in the contractile state of smooth muscle or in platelet activation. Regulates intracellular calcium levels via several pathways: phosphorylates MRVI1/IRAG and inhibits IP3-induced Ca(2+) release from intracellular stores, phosphorylation of KCNMA1 (BKCa) channels decreases intracellular Ca(2+) levels, which leads to increased opening of this channel. PRKG1 phosphorylates the canonical transient receptor potential channel (TRPC) family which inactivates the associated inward calcium current. Another mode of action of NO/cGMP/PKGI signaling involves PKGI-mediated inactivation of the Ras homolog gene family member A (RhoA). Phosphorylation of RHOA by PRKG1 blocks the action of this protein in myriad processes: regulation of RHOA translocation; decreasing contraction; controlling vesicle trafficking, reduction of myosin light chain phosphorylation resulting in vasorelaxation. Activation of PRKG1 by NO signaling alters also gene expression in a number of tissues. In smooth muscle cells, increased cGMP and PRKG1 activity influence expression of smooth muscle-specific contractile proteins, levels of proteins in the NO/cGMP signaling pathway, down-regulation of the matrix proteins osteopontin and thrombospondin-1 to limit smooth muscle cell migration and phenotype. Regulates vasodilator-stimulated phosphoprotein (VASP) functions in platelets and smooth muscle. -
组织特异性
Primarily expressed in lung and placenta. -
序列相似性
Belongs to the protein kinase superfamily. AGC Ser/Thr protein kinase family. cGMP subfamily.
Contains 1 AGC-kinase C-terminal domain.
Contains 2 cyclic nucleotide-binding domains.
Contains 1 protein kinase domain. -
结构域
Composed of an N-terminal leucine-zipper domain followed by an autoinhibitory domain, which mediate homodimer formation and inhibit kinase activity, respectively. Next, two cGMP-binding domains are followed by the catalytic domain at the C-terminus. Binding of cGMP to cGMP-binding domains results in a conformational change that activates kinase activity by removing the autoinhibitory domain from the catalytic cleft leaving the catalytic domain free to phosphorylate downstream substrates. Isoforms alpha and beta have identical cGMP-binding and catalytic domains but differ in their leucine zipper and autoinhibitory sequences and therefore differ in their dimerization substrates and kinase enzyme activity.
Heterotetramerization is mediated by the interaction between a coiled-coil of PRKG1 and the leucine/isoleucine zipper of PPP1R12A/MBS, the myosin-binding subunit of the myosin phosphatase. -
翻译后修饰
Autophosphorylation increases kinase activity.
65 kDa monomer is produced by proteolytic cleavage. -
细胞定位
Cytoplasm. Colocalized with TRPC7 in the plasma membrane. - Information by UniProt
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数据库链接
- Entrez Gene: 5592 Human
- Entrez Gene: 19091 Mouse
- Entrez Gene: 54286 Rat
- Omim: 176894 Human
- SwissProt: Q13976 Human
- SwissProt: P0C605 Mouse
- Unigene: 407535 Human
- Unigene: 381170 Mouse
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别名
- cGK 1 antibody
- cGK1 antibody
- cGKI alpha antibody
see all
图片
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All lanes : Anti-cGKI antibody (ab69532) at 1/1000 dilution
Lane 1 : Molecular weight marker
Lane 2 : Tissue lysate prepared from Mouse brain
Lane 3 : Tissue lysate prepared from Rat brain
Lane 4 : Cell lysates prepared from EKS4 cells
Lane 5 : Cell lysate prepared from HS67 cells
Predicted band size: 78 kDa
数据表及文件
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SDS download
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Datasheet download
文献 (1)
ab69532 被引用在 1 文献中.
- Bongartz LG et al. Neuronal nitric oxide synthase-dependent amelioration of diastolic dysfunction in rats with chronic renocardiac syndrome. Cardiorenal Med 5:69-78 (2015). WB . PubMed: 25759702