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TMP269 {[allProObj[0].p_purity_real_show]}

货号:A259571

TMP269 is an inhibitor of class IIa HDAC with IC50 of 157 nM, 97 nM, 43 nM and 23 nM for HDAC4, HDAC5, HDAC7 and HDAC9, respectively.

TMP269 化学结构 CAS号:1314890-29-3
TMP269 化学结构
CAS号:1314890-29-3
TMP269 3D分子结构
CAS号:1314890-29-3
TMP269 化学结构 CAS号:1314890-29-3
TMP269 3D分子结构 CAS号:1314890-29-3
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TMP269 纯度/质量文件 产品仅供科研

货号:A259571 标准纯度: {[allProObj[0].p_purity_real_show]}
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产品名称 HD1 HD2 HDAC HDAC1 HDAC10 HDAC11 HDAC2 HDAC3 HDAC4 HDAC5 HDAC6 HDAC7 HDAC8 HDAC9 其他靶点 纯度
Givinostat HCl monohydrate ++++

HD1-A, IC50: 16 nM

HD1-B, IC50: 7.5 nM

+++

HD2, IC50: 10 nM

99%+
MC1568 ++

HD1-A (Maize), IC50: 100 nM

HD1-B (Maize), IC50: 3.4 μM

96%
Trichostatin A ++++

HDAC, IC50: ~1.8 nM

99%+
Scriptaid 99%+
Valproic acid sodium Autophagy 97%
AR-42 +++

HDAC, IC50: 30 nM

99%+
Dacinostat +++

HDAC, IC50: 32 nM

98+%
CUDC-101 ++++

HDAC, IC50: 4.4 nM

++++

HDAC1, IC50: 4.5 nM

+++

HDAC10, IC50: 26.1 nM

+++

HDAC2, IC50: 12.6 nM

++++

HDAC3, IC50: 9.1 nM

+++

HDAC4, IC50: 13.2 nM

+++

HDAC5, IC50: 11.4 nM

++++

HDAC6, IC50: 5.1 nM

+

HDAC7, IC50: 373 nM

++

HDAC8, IC50: 79.8 nM

++

HDAC9, IC50: 67.2 nM

HER2,EGFR 99%+
M344 ++

HDAC, IC50: 100 nM

99%+
Splitomicin +

Sir2p, IC50: 60 μM

95%
Panobinostat ++++

HDAC (MOLT-4 cells), IC50: 5 nM

HDAC (Reh cells), IC50: 20 nM

98%
Sodium 4-Phenylbutyrate 98%
Vorinostat +++

HDAC, IC50: ~10 nM

98%
Curcumin NF-κB,Nrf2 98%
Belinostat +++

HDAC, IC50: 27 nM

98%
RG-2833 ++

HDAC1, Ki: 32 nM

++

HDAC3, Ki: 5 nM

98%
Valproic acid +

HDAC1, IC50: 0.4 mM

98%
BG45 +

HDAC1, IC50: 2 μM

+

HDAC2, IC50: 2.2 μM

+

HDAC3, IC50: 289 nM

99%+
Entinostat +

HDAC1, IC50: 0.51 μM

+

HDAC3, IC50: 1.7 μM

98%
Resminostat +++

HDAC1, IC50: 42.5 nM

++

HDAC3, IC50: 50.1 nM

++

HDAC6, IC50: 71.8 nM

98+%
Romidepsin +++

HDAC1, IC50: 36 nM

+++

HDAC2, IC50: 47 nM

99%+
Parthenolide NF-κB,p53 97% HPLC
Tacedinaline +

HDAC1, IC50: 0.9 μM

+

HDAC2, IC50: 0.9 μM

+

HDAC3, IC50: 1.2 μM

98%
Mocetinostat ++

HDAC1, IC50: 0.15 μM

+

HDAC11, IC50: 0.59 μM

+

HDAC2, IC50: 0.29 μM

+

HDAC3, IC50: 1.66 μM

98%
WT-161 ++++

HDAC1, IC50: 8.35 nM

+++

HDAC2, IC50: 15.4 nM

++++

HDAC6, IC50: 0.4 nM

99%+
Fimepinostat ++++

HDAC1, IC50: 1.7 nM

++++

HDAC10, IC50: 2.8 nM

++++

HDAC11, IC50: 5.4 nM

++++

HDAC2, IC50: 5.0 nM

++++

HDAC3, IC50: 1.8 nM

+++

HDAC6, IC50: 27 nM

99%+
Tucidinostat ++

HDAC1, IC50: 95 nM

++

HDAC10, IC50: 78 nM

++

HDAC2, IC50: 160 nM

++

HDAC3, IC50: 67 nM

99%+
Santacruzamate A ++++

HDAC2, IC50: 119 pM

99%+
(E,E)-RGFP966 ++

HDAC3, IC50: 80 nM

99%+
LMK-235 +++

HDAC4, IC50: 11.9 nM

++++

HDAC5, IC50: 4.2 nM

99%+
Tasquinimod 99%+
CAY10603 ++++

HDAC6, IC50: 2 pM

98%
Tubastatin A +++

HDAC6, IC50: 15 nM

98%
Tubacin ++++

HDAC6, IC50: 4 nM

99%+
ACY-738 ++++

HDAC6, IC50: 1.7 nM

99%+
Nexturastat A ++++

HDAC6, IC50: 5 nM

99%+
BRD73954 +++

HDAC6, IC50: 36 nM

++

HDAC8, IC50: 120 nM

98%
Tubastatin A HCl +++

HDAC6, IC50: 15 nM

+

HDAC8, IC50: 854 nM

98%
PCI-34051 +++

HDAC8, IC50: 10 nM

99%+
Ricolinostat ++

HDAC1, IC50: 58 nM

++

HDAC2, IC50: 48 nM

++

HDAC3, IC50: 51 nM

++++

HDAC6, IC50: 4.7 nM

++

HDAC8, IC50: 100 nM

99%+
Droxinostat +

HDAC3, IC50: 16.9 μM

+

HDAC6, IC50: 2.47 μM

+

HDAC8, IC50: 1.46 μM

99%+
Abexinostat ++++

HDAC1, Ki: 7 nM

+++

HDAC10, IC50: 24 nM

+++

HDAC2, Ki: 19 nM

++++

HDAC3/SMRT, Ki: 8.2 nM

+++

HDAC6, Ki: 17 nM

+

HDAC8, IC50: 280 nM

98%+
Citarinostat +++

HDAC1, IC50: 35 nM

+++

HDAC2, IC50: 45 nM

+++

HDAC3, IC50: 46 nM

++++

HDAC6, IC50: 2.6 nM

++

HDAC8, IC50: 137 nM

99%+
HPOB +

HDAC1, IC50: 2.9 μM

+

HDAC10, IC50: 3.0 μM

+

HDAC2, IC50: 4.4 μM

+

HDAC3, IC50: 1.7 μM

++

HDAC6, IC50: 56 nM

+

HDAC8, IC50: 2.8 μM

97%
Quisinostat 2HCl ++++

HDAC1, IC50: 0.11 nM

++++

HDAC10, IC50: 0.46 nM

++++

HDAC11, IC50: 0.37 nM

++++

HDAC2, IC50: 0.33 nM

++++

HDAC3, IC50: 4.86 nM

++++

HDAC4, IC50: 0.64 nM

++++

HDAC5, IC50: 3.69 nM

++++

HDAC8, IC50: 4.26 nM

99+%
Domatinostat +

HDAC1, IC50: 1.20 μM

+

HDAC10, IC50: 21 μM

+

HDAC11, IC50: 9.7 μM

+

HDAC2, IC50: 1.12 μM

+

HDAC3, IC50: 0.57 μM

+

HDAC5, IC50: 11.3 μM

+

HDAC9, IC50: 50 μM

99%+
TMP269 ++

HDAC4, IC50: 157 nM

++

HDAC5, IC50: 97 nM

+++

HDAC7, IC50: 43 nM

+++

HDAC9, IC50: 23 nM

99%+
Pracinostat ++

HDAC1, IC50: 49 nM

+++

HDAC10, IC50: 40 nM

++

HDAC11, IC50: 93 nM

++

HDAC2, IC50: 96 nM

+++

HDAC3, IC50: 43 nM

++

HDAC4, IC50: 56 nM

+++

HDAC5, IC50: 47 nM

+

HDAC6, IC50: 1.008 μM

++

HDAC7, IC50: 137 nM

++

HDAC8, IC50: 140 nM

++

HDAC9, IC50: 70 nM

99%+
TMP195 ++

HDAC4, Ki: 59 nM

++

HDAC5, Ki: 60 nM

+++

HDAC7, Ki: 26 nM

+++

HDAC9, Ki: 15 nM

99%+
1. 鼠标悬停在“+”上可以显示相关IC50的具体数值。"+"越多,抑制作用越强。2. "✔"表示该化合物对相应的亚型有抑制作用,但抑制强度暂时没有相关数据。

TMP269 生物活性

靶点
  • HDAC4

    HDAC4, IC50:157 nM

  • HDAC9

    HDAC9, IC50:23 nM

  • HDAC7

    HDAC7, IC50:43 nM

  • HDAC5

    HDAC5, IC50:97 nM

描述 TMP269, at a concentration of 10 μM, does not affect mitochondrial activity or the viability of human CD4+ T cells, indicating its safety profile at this dosage for such cells and suggesting its utility in identifying the natural targets of class IIa HDAC enzymes[1]. In IEC-18 intestinal epithelial cells, TMP269 halts cell cycle progression, DNA synthesis, and proliferation that is typically initiated following activation of G protein-coupled receptors/PKD1[2]. Similarly, TMP269 amplifies the cytotoxicity brought on by CFZ in multiple myeloma (MM) cell lines through the upregulation of ATF4 and CHOP, driving apoptosis. This effect is achieved without causing hyperacetylation of histone H3K9 or α-tubulin, confirming its specificity for not inhibiting class I or IIb HDACs. TMP269-induced cytotoxicity correlates with the activation of apoptosis, as evidenced by the cleavage of caspase-8, -9, -3, and PARP[3].
体内研究

In an in vivo angiogenesis assay involving MDA-MB-231 cells mixed with growth factor-reduced Matrigel implanted subcutaneously into the flanks of nude mice, subcutaneous injections of TMP269 at 15 mg/kg every other day for 10 days exhibit a significant antiangiogenic effect. This treatment results in a 76% reduction in angiogenesis in mice, underscoring TMP269's potential as an antiangiogenic agent[4].

体外研究

TMP269, at a concentration of 10 μM, does not affect mitochondrial activity or the viability of human CD4+ T cells, indicating its safety profile at this dosage for such cells and suggesting its utility in identifying the natural targets of class IIa HDAC enzymes[1].

In IEC-18 intestinal epithelial cells, TMP269 halts cell cycle progression, DNA synthesis, and proliferation that is typically initiated following activation of G protein-coupled receptors/PKD1[2].

Similarly, TMP269 amplifies the cytotoxicity brought on by CFZ in multiple myeloma (MM) cell lines through the upregulation of ATF4 and CHOP, driving apoptosis. This effect is achieved without causing hyperacetylation of histone H3K9 or α-tubulin, confirming its specificity for not inhibiting class I or IIb HDACs. TMP269-induced cytotoxicity correlates with the activation of apoptosis, as evidenced by the cleavage of caspase-8, -9, -3, and PARP[3].

TMP269 参考文献

[1]Lobera M, et al. Selective class IIa histone deacetylase inhibition via a nonchelating zinc-binding group. Nat Chem Biol. 2013 May;9(5):319-25.

[2]Sinnett-Smith J, et al. Protein kinase D1 mediates class IIa histone deacetylase phosphorylation and nuclear extrusion in intestinal epithelial cells: role in mitogenic signaling. Am J Physiol Cell Physiol. 2014 May 15;306(10):C961-71.

[3]Kikuchi S, et al. Class IIa HDAC inhibition enhances ER stress-mediated cell death in multiple myeloma. Leukemia. 2015 Sep;29(9):1918-1927.

[4]EricSalgado, et al. Volume 503 HDAC9 overexpression confers invasive and angiogenic potential to triple negative breast cancer cells via modulating microRNA-206. Biochemical and Biophysical Research Communications.

TMP269 实验方案

计算器
存储液制备 1mg 5mg 10mg

1 mM

5 mM

10 mM

1.94mL

0.39mL

0.19mL

9.72mL

1.94mL

0.97mL

19.44mL

3.89mL

1.94mL

TMP269 技术信息

CAS号1314890-29-3
分子式C25H21F3N4O3S
分子量 514.519
别名
运输蓝冰
存储条件

液体 -20°C:3-6个月-80°C:12个月

溶解度

DMSO: 105 mg/mL(204.07 mM),配合低频超声助溶,注意:DMSO长时间开封后,会吸水并导致溶解能力下降,请避免使用长期开封的DMSO

动物实验配方
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