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467214-21-7 分子结构
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(4E,6Z,8S,9S,10E,12S,13R,14S,16R)-19-{[2-(dimethylamino)ethyl]amino}-13-hydroxy-8,14-dimethoxy-4,10,12,16-tetramethyl-3,20,22-trioxo-2-azabicyclo[16.3.1]docosa-1(21),4,6,10,18-pentaen-9-yl carbamate hydrochloride

ChemBase编号:72538
分子式:C32H49ClN4O8
平均质量:653.20646
单一同位素质量:652.32389223
SMILES和InChIs

SMILES:
C1(=C2C(=O)C(=CC1=O)NC(=O)/C(=C/C=C\[C@@H]([C@H](/C(=C/[C@@H]([C@H]([C@H](C[C@@H](C2)C)OC)O)C)/C)OC(=O)N)OC)/C)NCCN(C)C.Cl
Canonical SMILES:
CO[C@H]1C[C@H](C)CC2=C(NCCN(C)C)C(=O)C=C(C2=O)NC(=O)/C(=C/C=C\[C@@H]([C@H](/C(=C/[C@@H]([C@H]1O)C)/C)OC(=O)N)OC)/C.Cl
InChI:
InChI=1S/C32H48N4O8.ClH/c1-18-14-22-27(34-12-13-36(5)6)24(37)17-23(29(22)39)35-31(40)19(2)10-9-11-25(42-7)30(44-32(33)41)21(4)16-20(3)28(38)26(15-18)43-8;/h9-11,16-18,20,25-26,28,30,34,38H,12-15H2,1-8H3,(H2,33,41)(H,35,40);1H/b11-9-,19-10+,21-16+;/t18-,20+,25+,26+,28-,30+;/m1./s1
InChIKey:
DFSYBWLNYPEFJK-IHLRWNDRSA-N

引用这个纪录

CBID:72538 http://www.chembase.cn/molecule-72538.html

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名称和登记号

名称和登记号

名称 登记号
IUPAC标准名
(4E,6Z,8S,9S,10E,12S,13R,14S,16R)-19-{[2-(dimethylamino)ethyl]amino}-13-hydroxy-8,14-dimethoxy-4,10,12,16-tetramethyl-3,20,22-trioxo-2-azabicyclo[16.3.1]docosa-1(21),4,6,10,18-pentaen-9-yl carbamate hydrochloride
IUPAC传统名
alvespimycin hydrochloride
别名
Alvespimycin
KOS-1022
NSC 707545
17-DMAG hydrochloride
CAS号
467214-21-7
PubChem SID
162037463
PubChem CID
9852573

数据来源

数据来源

所有数据来源 商品来源 非商品来源
数据来源 数据ID 价格
Selleck Chemicals
S1142 external link 加入购物车 请登录
数据来源 数据ID
PubChem 9852573 external link

理论计算性质

理论计算性质

JChem
Acid pKa 12.775154  质子受体
质子供体 LogD (pH = 5.5) 0.041767485 
LogD (pH = 7.4) 1.5928986  Log P 1.8524113 
摩尔折射率 172.3793 cm3 极化性 64.97228 Å3
极化表面积 169.52 Å2 可自由旋转的化学键
里宾斯基五规则 false 

分子性质

分子性质

理化性质 安全信息 药理学性质 产品相关信息 生物活性(PubChem)
溶解度
DMSO expand 查看数据来源
保存条件
-20°C expand 查看数据来源
作用靶点
HSP expand 查看数据来源
成盐信息
Hydrochloride expand 查看数据来源

详细说明

详细说明

Selleck Chemicals Selleck Chemicals
Selleck Chemicals -  S1142 external link
Research Area
Description Cancer
Biological Activity
Description 17-DMAG (Alvespimycin, KOS-1022, NSC 707545) is a potent HSP90 inhibitor with IC50 of 62 nM.
Targets HSP90
IC50 62 nM [1]
In Vitro 17-DMAG displays ~2 times potency against human Hsp90 than 17-AAG, with IC50 of 62 nM versus 119 nM. In SKBR3 and SKOV3 cells which over-express Hsp90 client protein Her2, 17-DMAG causes down-regulation of Her2 with EC50 of 8 nM and 46 nM, respectively, as well as induction of Hsp70 with EC50 of 4 nM and 14 nM, respectively, leading to significant cytotoxicity with GI50 of 29 nM and 32 nM, respectively, consistent with Hsp90 inhibition. [1] 17-DMAG in combination with vorinostat synergistically induces apoptosis of the cultured MCL cells as well as primary MCL cells, more potently than either agent alone, by markedly attenuating the levels of cyclin D1 and CDK4, as well as of c-Myc, c-RAF and Akt. [3] In contrast to 17-AAG which is only active for IKKβ in chronic lymphocytic leukemia (CLL) cells, 17-DMAG treatment effectively leads to depletion of the Hsp90 client protein, resulting in diminished NF-κB p50/p65 DNA binding, decreased NF-κB target gene transcription, and caspase-dependent apoptosis. By targeting the NF-κB family, 17-DMAG selectively mediates dose- and time-dependent cytotoxicity against CLL cells, but not normal T cells or NK cells important for immune surveillance. [5]
In Vivo 17-DMAG treatment at 5 mg/kg or 25 mg/kg thrice per week significantly reduces tumor growth of TMK-1 xenografts, by significantly reducing vessel area and numbers of proliferating tumor cells in sections. [2] Consistent the inhibition of FAK signaling in vivo, 17-DMAG treatment at 25 mg/kg three times a week significantly suppresses tumor growth, and metastasis of ME180 and SiHa xenografts in mice. [4] Administration of 17-DMAG at 10 mg/kg for 16 days significantly decreases the white blood cell count and prolongs the survival in a TCL1-SCID transplant mouse model. [5]
Clinical Trials A Phase I study of 17-DMAG in treating patients with an advanced solid tumor or lymphoma has been completed. A Phase I study of the combination of intravenous 17-DMAG, Trastuzumab with or without Paclitaxel in patients with advanced solid tumor malignancies or Her2 positive metastatic breast cancer who have previously failed frastuzumab therapy has been completed.
Features 17-DMAG is a synthetic derivative of the antibiotic Geldanamycin with lower hepatotoxicity than the parent antibiotic and higher potency and availability than the similar derivative 17-AAG.
Protocol
Kinase Assay [1]
Fluorescence polarization (FP)-based competition binding assay This assay utilizes a boron difluoride dipyrromethene (BODIPY) labeled geldanamycin analogue (BODIPY-AG) as a probe and measured fluorescence polarization upon binding of the probe to a protein. Native human Hsp90 protein (α + β isoforms) is isolated from HeLa cells. BODIPY-AG solution is freshly prepared in FP assay buffer (20 mM HEPES-KOH, pH 7.3, 1.0 mM EDTA, 100 mM KCl, 5.0 mM MgCl2, 0.01% NP-40, 0.1 mg/mL fresh bovine γ-globulin (BGG), 1.0 mM fresh DTT, and protease inhibitor from stock solution in DMSO. Competition curves are obtained by mixing 10 μL each of a solution containing BODIPY-AG and Hsp90, and a serial dilution of 17-DMAG freshly prepared in FP assay buffer from stock solution in DMSO. Final concentrations are 10 nM BODIPY-AG, 40 or 60 nM Hsp90, varying concentration of 17-DMAG (0.10 nM-10 μM), and ≤0.25% DMSO in a 384-well microplate. After 3 hours incubation at 30 °C, fluorescence anisotropy (γEx = 485 nm, γEm = 535 nm) is measured on an EnVision 2100 multilabel plate reader. IC50 value of 17-DMAG is obtained from the competition curves.
Cell Assay [5]
Cell Lines Chronic lymphocytic leukemia (CLL)
Concentrations Dissolved in DMSO, final concentrations ~1 μM
Incubation Time 24, or 48 hours
Methods Cells are exposed to various concentrations of 17-DMAG for 24, or 48 hours. For the assessment of cytotoxicity, MTT reagent is then added, and plates are incubated for an additional 24 hours before spectrophotometric measurement. Apoptosis is determined by staining with annexin V-fluorescein isothiocyanate and propidium iodide (PI).
Animal Study [5]
Animal Models SCID mice engrafted with TCL1 leukemia cells
Formulation Dissolved in DMSO
Doses 10 mg/kg
Administration Intraperitoneal injection 5 times per week
References
[1] Ge J, et al. J Med Chem, 2006, 49(15), 4606-4615.
[2] Lang SA, et al. Mol Cancer Ther, 2007, 6(3), 1123-1132.
[3] Rao R, et al. Cancer Biol Ther, 2009, 8(13), 1273-1280.
[4] Schwock J, et al. Cancer Res, 2009, 69(11), 4750-4759.
[5] Hertlein E, et al. Blood, 2010, 116(1), 45-53.

参考文献

参考文献

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