1. Signaling Pathways
  2. PI3K/Akt/mTOR
  3. PI3K

PI3K (磷脂酰肌醇3-激酶)

Phosphoinositide 3-kinase

PI3K(磷酸肌醇 3-激酶)通过肌醇脂质磷脂酰肌醇 4,5-二磷酸 (PI(4,5)P2) 的磷酸化,形成第二信使分子磷脂酰肌醇 (3,4,5)-三磷酸 (PI(3,4,5)P3),后者募集并激活含有 pleckstrin 同源域的蛋白质,从而引发对增殖、存活和迁移至关重要的下游信号传导事件。I 类 PI3K 酶由四种不同的催化异构体组成,即 PI3Kα、PI3Kβ、PI3Kδ 和 PI3Kγ。

PI3K 酶主要有三类,其中 IA 类与癌症密切相关。IA 类 PI3K 是异二聚脂质激酶,由催化亚基(p110α、p110β 或 p110δ;分别由 PIK3CAPIK3CBPIK3CD 基因编码)和调节亚基 (p85) 组成。

PI3K 通路在许多生物过程中起重要作用,包括细胞周期进程、细胞生长、存活、肌动蛋白重排和迁移以及细胞内囊泡运输。

PI3K (Phosphoinositide 3-kinase), via phosphorylation of the inositol lipid phosphatidylinositol 4,5-bisphosphate (PI(4,5)P2), forms the second messenger molecule phosphatidylinositol (3,4,5)-trisphosphate (PI(3,4,5)P3) which recruits and activates pleckstrin homology domain containing proteins, leading to downstream signalling events crucial for proliferation, survival and migration. Class I PI3K enzymes consist of four distinct catalytic isoforms, PI3Kα, PI3Kβ, PI3Kδ and PI3Kγ.

There are three major classes of PI3K enzymes, being class IA widely associated to cancer. Class IA PI3K are heterodimeric lipid kinases composed of a catalytic subunit (p110α, p110β, or p110δ; encoded by PIK3CA, PIK3CB, and PIK3CD genes, respectively) and a regulatory subunit (p85).

The PI3K pathway plays an important role in many biological processes, including cell cycle progression, cell growth, survival, actin rearrangement and migration, and intracellular vesicular transport.

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-162382
    KTC1101 Inhibitor 98.09%
    KTC1101 是一种口服活性的泛 PI3K 抑制剂。KTC1101 可抑制 PI3K 信号通路,并减少下游 AKTmTOR 磷酸化,降低 Ki67 的表达量。KTC1101 的抗肿瘤活性有双重作用机制,即直接抑制肿瘤细胞生长和动态增强免疫反应。
    KTC1101
  • HY-N6896
    Isoviolanthin

    异佛来心苷

    Inhibitor 99.66%
    Isoviolanthin 是一种黄酮类糖苷。Isoviolanthin 可从 Dendrobium officinale 中提取。Isoviolanthin 对 KDM6BCHAC2ESCO2IPO4 具有强的结合亲和力。Isoviolanthin 可降低 MMP-2MMP-9。Isoviolanthin 可抑制 TGF-β/SmadPI3K/Akt/mTOR 信号通路。Isoviolanthin 可增加 Fhl3 的表达。Isoviolanthin 具有细胞保护作用。Isoviolanthin 对肝细胞癌具有抗癌活性。
    Isoviolanthin
  • HY-143275
    HL-8 Inhibitor 99.17%
    HL-8 是一种 PI3Kα PROTAC 降解剂。HL-8 能促进 PI3Kα 的泛素化和降解。HL-8 降低 pAKT 水平。HL-8 对结肠癌和宫颈癌具有抗癌活性 (Pink: PI3Kα 配体 (HY-143277); Blue: E3 连接酶 VHL 配体 (HY-138678); Black: 连接子 (HY-W002042))。
    HL-8
  • HY-118065
    Fenhexamid Activator 99.60%
    Fenhexamid 是一种杀菌剂,可抑制甾醇生物合成。Fenhexamid 能有效地抑制植物病原真菌灰霉病菌。
    Fenhexamid
  • HY-108016
    Peruvoside Inhibitor 99.32%
    Peruvoside 是一种有效的 SrcPI3KJNKSTAT,和 EGFR的抑制剂。Peruvoside 诱导细胞凋亡 (apoptosis) 和自噬 (autophagy),在乳腺癌、肺癌、肝癌和白血病中具有广谱的抗肿瘤活性。Peruvoside 对正义 RNA 病毒具有广谱、强效的抗病毒活性。 Peruvoside 增加 Gefitinib (HY-50895) 耐药肿瘤细胞 (A549,PC9/gef和H1975) 的敏感性。。
    Peruvoside
  • HY-15271
    WYE-687 Inhibitor 98.05%
    WYE-687 是一种 ATP 竞争性的 mTOR 抑制剂,IC50为 7 nM。WYE-687 抑制 mTORC1mTORC2 活化。WYE-687 也抑制 PI3KαPI3KγIC50 分别为 81 nM 和 3.11 μM。
    WYE-687
  • HY-15477A
    YS-49 monohydrate Activator 99.71%
    YS-49 (monohydrate) 是 PI3K/Akt (RhoA 的下游靶标) 的激活剂,可减少 3-甲基胆碱处理的细胞中 RhoA/PTEN 的激活。YS-49 能通过诱导血红素加氧酶 (HO-1) 来抑制血管紧张素 II (Ang II) 刺激 VSMC 细胞的增殖。YS-49 是异喹啉化合物生物碱,因能激活心脏 β-adrenoceptors 而具有强烈的正性肌力作用。
    YS-49 monohydrate
  • HY-12340
    ETP-46321 Inhibitor 99.34%
    ETP-46321 是一种有效的 PI3KαPI3Kδ 抑制剂,Kiapp 分别为 2.3 和 14.2 nM。
    ETP-46321
  • HY-101776A
    Desmethyl-VS-5584 hydrochloride Inhibitor 98.63%
    Desmethyl-VS-5584 hydrochloride 是VS-5584的二甲基类似物,是一种具有吡啶[2,3-d]嘧啶结构的强效选择性 mTOR/PI3K 双重抑制剂。
    Desmethyl-VS-5584 hydrochloride
  • HY-12481A
    SAR405 R enantiomer Control 99.94%
    SAR405 R enantiomer 是活性低于 SAR405 的一个对映体。 SAR405 是一个 PIK3C3/Vps34 抑制剂。
    SAR405 R enantiomer
  • HY-111510
    IPI-3063 Inhibitor 99.59%
    IPI-3063 是一种有效的选择性 PI3K p110δ 抑制剂,IC50 为 2.5±1.2 nM。
    IPI-3063
  • HY-132231
    FD223 Inhibitor 98.05%
    FD223 是一种有效且选择性的磷酸肌醇3-激酶δ (PI3Kδ) 抑制剂。FD223 显示出高效价 (IC50=1 nM) 和对其他异构体的良好选择性 (α、β 和 γ 的IC50 值分别为 51 nM、29 nM 和 37nM)。FD223通过抑制 p-AKT Ser473 有效抑制急性髓系白血病 (AML) 细胞系的增殖,从而导致细胞周期 G1 期阻滞。FD223 在 AML 等白血病的研究中具有潜力。
    FD223
  • HY-112608
    CHMFL-PI3KD-317 Inhibitor 98.04%
    CHMFL-PI3KD-317 是一种高效、选择性、可口服的 PI3Kδ 抑制剂,IC50 值为 6 nM,对其选择性是对其他 PIKK 家族的 10-1500 倍,例如 PI3Kα (IC50,62.6 nM),PI3Kβ (IC50,284 nM),PI3Kγ (IC50,202.7 nM),PIK3C2A (IC50,>10000 nM),PIK3C2B (IC50,882.3 nM),VPS34 (IC50,1801.7 nM),PI4KIIIA (IC50,574.1 nM) 和 PI4KIIIB (IC50,300.2 nM)。在 Raji 细胞中,CHMFL-PI3KD-317 抑制 PI3Kδ 介导的 Akt T308 磷酸化,EC50 值为 4.3 nM。CHMFL-PI3KD-317 对癌细胞具有抗增殖作用。
    CHMFL-PI3KD-317
  • HY-N2566
    Euscaphic acid

    野鸦椿酸

    Inhibitor 98.34%
    Euscaphic acid 是源于 R. alceaefolius Poir 的三萜,DNA polymerase 抑制剂。Euscaphic acid 抑制小牛 DNA 聚合酶 α (pol α) 和大鼠 DNA 聚合酶 β (pol β) 的 IC50值分别为 61 和 108 μM。Euscaphic acid 诱导细胞凋亡 (apoptosis)。
    Euscaphic acid
  • HY-N7635
    Oleanolic acid 28-O-β-D-glucopyranoside Inhibitor 99.42%
    Oleanolic acid 28-O-β-D-glucopyranoside (β-D-Glucopyranosyl oleanolate) 是一种具有口服活性的五环三萜类化合物。Oleanolic acid 28-O-β-D-glucopyranoside 具有抗炎作用。Oleanolic acid 28-O-β-D-glucopyranoside 在溃疡性结肠炎模型中,可抑制炎症反应、增强肠道上皮屏障功能、调节肠道微生物群落,作用机制与 PI3K-AKTMAPK 信号通路相关。Oleanolic acid 28-O-β-D-glucopyranoside 可用于结肠炎等疾病的研究。
    Oleanolic acid 28-O-β-D-glucopyranoside
  • HY-11080A
    PKI-179 hydrochloride Inhibitor 99.66%
    PKI-179 hydrochloride 是一种有效的和具有口服活性的双重 PI3K/mTOR 抑制剂,对 PI3K-αPI3K-βPI3K-γPI3K-δmTORIC50 值分别为 8 nM,24 nM,74 nM,77 nM 和 0.42 nM。PKI-179 hydrochloride 还表现出对 E545KH1047R 的活性,IC50 值分别为 14 nM 和 11 nM。PKI-179 hydrochloride 在体内显示出抗肿瘤活性。
    PKI-179 hydrochloride
  • HY-N9942
    Physalin A Inhibitor 99.22%
    Physalin A 是一种具有生物活性的醉茄内酯。Physalin A 在椎间盘退变模型中表现出抗炎、抗纤维化和改善自噬 (autophagy) 的作用。Physalin A 具有抗肿瘤活性,可诱导细胞凋亡 (apoptosis),ROS 产生和 G2/M 期细胞周期阻滞。此外。Physalin A 可显著提高醌还原酶活性,来提高解毒酶的表达。
    Physalin A
  • HY-N6996R
    Methyl Eugenol (Standard)

    甲基丁香酚 (Standard)

    Inhibitor
    Methyl Eugenol (Standard) 是 Methyl Eugenol 的分析标准品。本产品用于研究及分析应用。Methyl Eugenol 是一种具有口服活性的东方果类小实蝇 (Hendel) 的诱捕剂。Methyl Eugenol 具有抗癌和抗炎活性。Methyl Eugenol 能诱导细胞自噬。Methyl Eugenol 可以用于肠缺血/再灌注损伤的研究。
    Methyl Eugenol (Standard)
  • HY-N2911
    Auriculasin Inhibitor 98.58%
    Auriculasin 是一种抗癌剂,可靶向 VEGFR2PI3K/AKT/mTORMAPK 等信号通路。Auriculasin 可抑制细胞增殖、诱导细胞凋亡 (apoptosis)、抑制血管生成;并能够促进线粒体氧化应激和铁死亡 (ferroptosis)。Auriculasin 还对大麻素受体 CB1 具有活性,IC50 为 8.92 μM。Auriculasin 可用于癌症研究,尤其是前列腺癌、非小细胞肺癌等相关疾病,以及抗血管生成药物开发的研究。
    Auriculasin
  • HY-N4042
    Hirsutenone Inhibitor 99.74%
    Hirsutenone 是桤木中含有的一种活性二庚酮,具有抗炎、抗肿瘤和抗特应性皮炎等多种生物活性。Hirsutenone 减弱脂肪形成,可以直接与 PI3KERK1 以非 ATP 竞争的方式结合。Hirsutenone 可用于肥胖的研究。
    Hirsutenone
目录号 产品名 / 同用名 应用 反应物种

Phosphatidylinositol 3 kinases (PI3Ks) are a family of lipid kinases that integrate signals from growth factors, cytokines and other environmental cues, translating them into intracellular signals that regulate multiple signaling pathways. These pathways control many physiological functions and cellular processes, which include cell proliferation, growth, survival, motility and metabolism[1]

 

In the absence of activating signals, p85 interacts with p110 and inhibits p110 kinase activity. Following receptor tyrosine kinase (RTK) or G protein-coupled receptor (GPCR) activation, class I PI3Ks are recruited to the plasma membrane, where p85 inhibition of p110 is relieved and p110 phosphorylates PIP2 to generate PIP3. The activated insulin receptor recruits intracellular adaptor protein IRS1. Phosphorylation of IRS proteins on tyrosine residues by the insulin receptor initiates the recruitment and activation of PI3K. PIP3 acts as a second messenger which promotes the phosphorylation of Akt at Thr308 by PDK-1. RTK activation can also trigger Ras-Raf-MEK-ERK pathway. Activated Akt, ERK and RSK phosphorylate TSC2 at multiple sites to inhibit TSC1-TSC2-TBC1D7, which is the TSC complex that acts as a GTPase-activating protein (GAP) for the small GTPase RHEB. During inhibition of the TSC complex, GTP-loaded RHEB binds the mTOR catalytic domain to activate mTORC1. Glycogen synthase kinase 3β (GSK-3β) activates the TSC complex by phosphorylating TSC2 at Ser1379 and Ser1383. Phosphorylation of these two residues requires priming by AMPK-dependent phosphorylation of Ser1387. Wnt signaling inhibits GSK-3β and the TSC complex, and thus activates mTORC1. mTORC2 is activated by Wnt in a manner dependent on the small GTPase RAC1. Akt activation contributes to diverse cellular activities which include cell survival, growth, proliferation, angiogenesis, metabolism, and migration. Important downstream targets of Akt are GSK-3, FOXOs, BAD, AS160, eNOS, and mTOR. mTORC1 negatively regulates autophagy through multiple inputs, including inhibitory phosphorylation of ULK1, and promotes protein synthesis through activation of the translation initiation promoter S6K and through inhibition of the inhibitory mRNA cap binding 4E-BP1[1][2][3].

 

PI3Kδ is a heterodimeric enzyme, typically composed of a p85α regulatory subunit and a p110δ catalytic subunit. In T cells, the TCR, the costimulatory receptor ICOS and the IL-2R can activate PI3Kδ. In B cells, PI3Kδ is activated upon crosslinking of the B cell receptor (BCR). The BCR co-opts the co-receptor CD19 or the adaptor B cell associated protein (BCAP), both of which have YXXM motifs to which the p85α SH2 domains can bind. In lumphocytes, BTK and ITK contribute to the activation of PLCγ and promotes the generation of DAG and the influx of Ca2+, which in turn activate PKC and the CARMA1-, BCL 10- and MALT1 containing (CBM) complex. The resulting NF-κB inhibitor kinase (IKK) activation leads to the phosphorylation and the degradation of IκB, and to the nuclear accumulation of the p50-p65 NF-κB heterodimer. MyD88 is an adapter protein that mediates signal transduction for most TLRs and leads to activation of PI3K[4].

 

Reference:

[1]. Thorpe LM, et al. PI3K in cancer: divergent roles of isoforms, modes of activation and therapeutic targeting.Nat Rev Cancer. 2015 Jan;15(1):7-24. 
[2]. Vanhaesebroeck B, et al. PI3K signalling: the path to discovery and understanding.Nat Rev Mol Cell Biol. 2012 Feb 23;13(3):195-203. 
[3]. Fruman DA, et al. The PI3K Pathway in Human Disease.Cell. 2017 Aug 10;170(4):605-635.
[4]. Lucas CL, et al. PI3Kδ and primary immunodeficiencies.Nat Rev Immunol. 2016 Nov;16(11):702-714. 

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