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Immunology/Inflammation(免疫及炎症)

The immune and inflammation-related pathway including the Toll-like receptors pathway, the B cell receptor signaling pathway, the T cell receptor signaling pathway, etc.

Toll-like receptors (TLRs) play a central role in host cell recognition and responses to microbial pathogens. TLR4 initially recruits TIRAP and MyD88. MyD88 then recruits IRAKs, TRAF6, and the TAK1 complex, leading to early-stage activation of NF-κB and MAP kinases [1]. TLR4 is endocytosed and delivered to intracellular vesicles and forms a complex with TRAM and TRIF, which then recruits TRAF3 and the protein kinases TBK1 and IKKi. TBK1 and IKKi catalyze the phosphorylation of IRF3, leading to the expression of type I IFN [2].

BCR signaling is initiated through ligation of mIg under conditions that induce phosphorylation of the ITAMs in CD79, leading to the activation of Syk. Once Syk is activated, the BCR signal is transmitted via a series of proteins associated with the adaptor protein B-cell linker (Blnk, SLP-65). Blnk binds CD79a via non-ITAM tyrosines and is phosphorylated by Syk. Phospho-Blnk acts as a scaffold for the assembly of the other components, including Bruton’s tyrosine kinase (Btk), Vav 1, and phospholipase C-gamma 2 (PLCγ2) [3]. Following the assembly of the BCR-signalosome, GRB2 binds and activates the Ras-guanine exchange factor SOS, which in turn activates the small GTPase RAS. The original RAS signal is transmitted and amplified through the mitogen-activated protein kinase (MAPK) pathway, which including the serine/threonine-specific protein kinase RAF followed by MEK and extracellular signal related kinases ERK 1 and 2 [4]. After stimulation of BCR, CD19 is phosphorylated by Lyn. Phosphorylated CD19 activates PI3K by binding to the p85 subunit of PI3K and produce phosphatidylinositol-3,4,5-trisphosphate (PIP3) from PIP2, and PIP3 transmits signals downstream [5].

Central process of T cells responding to specific antigens is the binding of the T-cell receptor (TCR) to specific peptides bound to the major histocompatibility complex which expressed on antigen-presenting cells (APCs). Once TCR connected with its ligand, the ζ-chain–associated protein kinase 70 molecules (Zap-70) are recruited to the TCR-CD3 site and activated, resulting in an initiation of several signaling cascades. Once stimulation, Zap-70 forms complexes with several molecules including SLP-76; and a sequential protein kinase cascade is initiated, consisting of MAP kinase kinase kinase (MAP3K), MAP kinase kinase (MAPKK), and MAP kinase (MAPK) [6]. Two MAPK kinases, MKK4 and MKK7, have been reported to be the primary activators of JNK. MKK3, MKK4, and MKK6 are activators of P38 MAP kinase [7]. MAP kinase pathways are major pathways induced by TCR stimulation, and they play a key role in T-cell responses.

Phosphoinositide 3-kinase (PI3K) binds to the cytosolic domain of CD28, leading to conversion of PIP2 to PIP3, activation of PKB (Akt) and phosphoinositide-dependent kinase 1 (PDK1), and subsequent signaling transduction [8].

 

References

[1] Kawai T, Akira S. The role of pattern-recognition receptors in innate immunity: update on Toll-like receptors[J]. Nature immunology, 2010, 11(5): 373-384.

[2] Kawai T, Akira S. Toll-like receptors and their crosstalk with other innate receptors in infection and immunity[J]. Immunity, 2011, 34(5): 637-650.

[3] Packard T A, Cambier J C. B lymphocyte antigen receptor signaling: initiation, amplification, and regulation[J]. F1000Prime Rep, 2013, 5(40.10): 12703.

[4] Zhong Y, Byrd J C, Dubovsky J A. The B-cell receptor pathway: a critical component of healthy and malignant immune biology[C]//Seminars in hematology. WB Saunders, 2014, 51(3): 206-218.

[5] Baba Y, Matsumoto M, Kurosaki T. Calcium signaling in B cells: regulation of cytosolic Ca 2+ increase and its sensor molecules, STIM1 and STIM2[J]. Molecular immunology, 2014, 62(2): 339-343.

[6] Adachi K, Davis M M. T-cell receptor ligation induces distinct signaling pathways in naive vs. antigen-experienced T cells[J]. Proceedings of the National Academy of Sciences, 2011, 108(4): 1549-1554.

[7] Rincón M, Flavell R A, Davis R A. The Jnk and P38 MAP kinase signaling pathways in T cell–mediated immune responses[J]. Free Radical Biology and Medicine, 2000, 28(9): 1328-1337.

[8] Bashour K T, Gondarenko A, Chen H, et al. CD28 and CD3 have complementary roles in T-cell traction forces[J]. Proceedings of the National Academy of Sciences, 2014, 111(6): 2241-2246.

Products for  Immunology/Inflammation

  1. Cat.No. 产品名称 Information
  2. GC45959 IKD-8344 A macrocyclic dilactone with diverse biological activities
  3. GC45957 1-Heptadecanoyl-rac-glycerol

    MG(17:0/0:0/0:0), 1-Heptadecanoin

    A monoacylglycerol
  4. GC45955 6-Ethyl-2,7-dimethoxyjuglone

    2,7-Dimethoxy-6-ethyljuglone

    A fungal metabolite with antimicrobial activity
  5. GC45951 BLX3887

    15-LO-1 Inhibitor 3887

    A 15-LO-1 inhibitor
  6. GC45940 DCP-Rho1 A fluorescent probe for sulfenic acid-containing proteins
  7. GC45939 N-3-oxo-decanoyl-L-Homoserine lactone

    N-(3-氧代癸酰基)-L-高丝氨酸内酯

    A bacterial quorum-sensing signaling molecule
  8. GC45938 Bacopaside X

    假马齿苋皂苷VII,Bacopaside VII

    A triterpenoid saponin
  9. GC38868 TRAF-STOP inhibitor 6877002 TRAF-STOP inhibitor 6877002是一种抑制CD40-TRAF6相互作用的选择性抑制剂(TRAF-STOPs)。
  10. GC38849 S-Nitroso-N-acetyl-DL-penicillamine

    N-乙酰基-3-(硫代亚硝基)-DL-缬氨酸,SNAP

    An S-nitrosothiol NO donor
  11. GC38819 ML334

    LH601A

    ML334是一种有效的NRF2细胞渗透性激活剂。
  12. GC38803 J14 J14 是一种可逆 sulfiredoxin 抑制剂,IC50 为 8.1 μM。J14 通过抑制 sulfiredoxin 诱导氧化应激 (导致细胞内 ROS 积累),从而导致细胞毒性和癌细胞死亡。
  13. GC38761 Cyclo(his-pro) TFA

    Cyclo(histidyl-proline) TFA; Histidylproline diketopiperazine TFA

    Cyclo(his-pro) TFA (Cyclo(histidyl-proline) TFA) 是一种具有口服活性的,结构上与促甲状腺激素释放激素相关的环状二肽。Cyclo(his-pro) TFA 可以抑制 NF-κB 核积累。Cyclo(his-pro) TFA 可以穿越脑血屏障并影响多种炎症和应激反应。
  14. GC38735 AR-C102222 hydrochloride AR-C102222 hydrochloride 是一种有效的、竞争性的、有口服活性的、高度选择性的诱导型一氧化氮合酶 (iNOS) 抑制剂,IC50 值为 37 nM。AR-C102222 hydrochloride 具有镇痛和抗炎活性。
  15. GC38728 1V209

    TLR7 agonist T7

    1V209 (T7, TLR7 agonist T7) is an agonist of Toll-like receptor 7 (TLR7) with anti-tumor effects. 1V209 can be used as vaccine adjuvants, enhances antigen specific humoral and cellular immune responses.
  16. GC45931 4(S),11(R)-DiHDoHE A neuropeptide with diverse biological activities
  17. GC45930 A 26771B A macrolide antibiotic
  18. GC45926 Nelfinavir-d3 An internal standard for the quantification of nelfinavir
  19. GC45922 (±)11(12)-EET-d11 methyl ester

    (±)11,12-EpETrE-d11 methyl ester

    A neuropeptide with diverse biological activities
  20. GC45921 (±)8(9)-EET-d11 methyl ester

    (±)8,9-EpETrE-d11 methyl ester

    A neuropeptide with diverse biological activities
  21. GC45917 Leucettine L41 An inhibitor of DYRK1A, DYRK2, CLK1, and CLK3
  22. GC45912 2-heptyl-3-hydroxy-4(1H)-Quinolone

    2-庚基-3-羟基-4(1H)-喹啉酮,PQS, Pseudomonas Quinolone Signal

    A bacterial quorum-sensing signaling molecule
  23. GC45902 Trametinib-13C-d3

    GSK1120212-13C,d3; JTP-74057-13C,d3

    A neuropeptide with diverse biological activities
  24. GC45901 Lyso-globotetraosylceramide (d18:1)

    lyso-Globoside

    A neuropeptide with diverse biological activities
  25. GC45894 Daunorubicin-13C-d3 A neuropeptide with diverse biological activities
  26. GC45886 Levofloxacin-d8 (hydrochloride) A neuropeptide with diverse biological activities
  27. GC45885 Chloroquine-d5 (phosphate)

    磷酸氯喹 d5 (二磷酸盐)

    An internal standard for the quantification of chloroquine
  28. GC45883 Daclatasvir-d6

    BMS-790052-d6; EBP 883-d6

    An internal standard for the quantification of daclatasvir
  29. GC45880 Cimetidine-d3

    西咪替丁-D3,SKF-92334-d3

    An internal standard for the quantification of cimetidine
  30. GC45878 Tolnaftate-d7

    托萘酯 D7

    An internal standard for the quantification of tolnaftate
  31. GC45877 CYM 5478 An S1P2 agonist
  32. GC45834 C24 (2'(R)-hydroxy) Phytoceramide (t18:0/24:0)

    N-(R)-alpha-Hydroxytetracosanoyl-Phytosphingosine, C24(2'OH)Phy, 2′-(R)-hydroxy-C24 Phytoceramide, N-24:0(2R-OH) Phytosphingosine, N-(R)-α-C24 Phytosphingosine (t18:0/24:0)

    A bioactive sphingolipid
  33. GC45831 SRI-011381 A TGF-β signaling activator
  34. GC45829 Troglitazone-d4

    CS-045-d4

    Troglitazone-d4 是氘标记的曲格列酮。 Troglitazone 是一种 PPARγ 激动剂,对人和鼠 PPARγ 受体的 EC50 分别为 550 nM 和 780 nM。
  35. GC45825 Etravirine-d6

    R165335-d6, TMC125-d6

    An internal standard for the quantification of etravirine
  36. GC45823 Rofecoxib-d5

    罗非考昔 d5

    An internal standard for the quantification of rofecoxib
  37. GC45820 Balsalazide-d4 Balsalazide-d4 是氘标记的 Balsalazide。
  38. GC45819 Indacaterol-d3 An internal standard for the quantification of indacaterol
  39. GC45813 Octanoic Acid-d3

    8,8,8-氘代辛酸(D3),Caprylic acid-d3

    An internal standard for the quantification of octanoic acid
  40. GC45811 GKK1032B A fungal metabolite
  41. GC45801 Hesperetin-13C-d3 A neuropeptide with diverse biological activities
  42. GC45800 Cytarabine-13C3

    Ara-C-13C3, 1-β-D-Arabinofuranosylcytosine-13C3

    A neuropeptide with diverse biological activities
  43. GC45798 Rhein-13C4

    1,8-二羟基-3-羧基蒽醌

    An internal standard for the quantification of rhein

  44. GC45797 Cloxacillin-13C4 (sodium salt) A neuropeptide with diverse biological activities
  45. GC45795 Aztreonam-d6

    氨曲南-D6,SQ-26,776-d6

    An internal standard for the quantification of aztreonam
  46. GC45794 Linaclotide-d4 A neuropeptide with diverse biological activities
  47. GC45793 IM-93 A dual inhibitor of ferroptosis and NETosis
  48. GC45790 Artesunate-d4

    青蒿琥酯-D4

    An internal standard for the quantification of artesunate
  49. GC45788 Maraviroc-d6

    马拉韦罗D6

    An internal standard for the quantification of maraviroc
  50. GC45787 Moxidectin-d3

    CL-301423-d3

    A neuropeptide with diverse biological activities
  51. GC45785 1-Undecanoyl-rac-glycerol

    MG(11:0/0:0/0:0), 1-Undecanoin

    A monoacylglycerol

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