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AB120382

Z-VAD(OH)-FMK, Irreversible general caspase inhibitor

Z-VAD(OH)-FMK, Irreversible general caspase inhibitor

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(24 Publications)

MW 453.5 Da, Purity >94%. Achieve your results faster with highly validated, pure and trusted compounds.
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Immunoprecipitation - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)
  • IP

Lab

Immunoprecipitation - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)

MLKL (phospho S345) was immunoprecipitated from 1mg of L-929 (Mouse connective tissue fibroblast cells) whole cell lysate treated with 20 ng/ml TNF alpha (ab9642) + 100 nM Smac mimetic + 20 μM z-VAD compound (ab120382) for 8h using ab196436 at 1/150 dilution. Western blot was performed from the immunoprecipitate using ab196436 at 1/1000 dilution. Anti-Rabbit IgG (HRP), specific to the non-reduced form of IgG, was used as secondary antibody at 1/1500 dilution.

Lane 1 : L-929 whole cell lysate treated with 20 ng/ml TNF alpha (ab9642) + 100 nM Smac mimetic+ 20 μM z-VAD compound (ab120382) for 8h;10 μg (Input).
Lane 2 : ab196436 IP in L-929 whole cell lysate treated with 20 ng/ml TNF alpha (ab9642) + 100 nM Smac mimetic+ 20 μM z-VAD compound (ab120382) for 8h.
Lane 3 : Rabbit monoclonal IgG (ab172730) instead of ab196436 in L-929 whole cell lysate treated with 20 ng/ml TNF alpha (ab9642) + 100 nM Smac mimetic+ 20 μM z-VAD compound (ab120382) for 8h.

Blocking and dilution buffer and concentration : 5% NFDM/TBST.

All lanes:

Immunoprecipitation - Anti-MLKL (phospho S345) antibody [EPR9515(2)] (<a href='/products/primary-antibodies/mlkl-phospho-s345-antibody-epr95152-ab196436'>ab196436</a>)

All lanes:

Immunoprecipitation - Recombinant human TNF alpha protein (<a href='/products/proteins-peptides/recombinant-human-tnf-alpha-protein-ab9642'>ab9642</a>)

Predicted band size: 54 kDa

Observed band size: 54 kDa

false

Functional Studies - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)
  • FuncS

PubMed

Functional Studies - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)

ZVAD-fmk treatment does not correct muscular dystrophy in Nol3-/-Sgcd-/- mice.

A : Muscle weights normalized to tibial length of quadriceps of mice treated with or without ZVAD-fmk for 4 weeks

B : Creatine Kinase levels

C : Quantification of the time to exhaustion as assessed by involuntary treadmill running measured from vehicle or ZVAD-fmk treated WT and Nol3-/- Sgcd-/- mice

D : Histologic images taken at 100x of Masson's trichrome stained sections of quadriceps from vehicle or ZVAD-fmk treated WT and Nol3-/-Sgcd-/- mice

Davis J et al. PLoS One. 2013; 8(12) : e82053. doi : 10.1371/journal.pone.0082053

Davis J et al. PLoS One. 2013; 8(12): e82053. doi: 10.1371/journal.pone.0082053 Reproduced under the Creative Commons license http://creativecommons.org/licenses/by/4.0/

Chemical Structure - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)
  • Chemical Structure

Lab

Chemical Structure - Z-VAD(OH)-FMK, Irreversible general caspase inhibitor (AB120382)

2D chemical structure image of ab120382, Z-VAD(OH)-FMK, Irreversible general caspase inhibitor

关键信息

CAS 号

220644-02-0

纯度

>94%

形式

Solid

form

分子量

453.5 Da

分子式

C<sub>2</sub><sub>1</sub>H<sub>2</sub><sub>8</sub>FN<sub>3</sub>O<sub>7</sub>

PubChem

5497170

属性

Synthetic

溶解度

Soluble in DMSO to 20 mM

生化试剂名称

benzyloxycarbonyl-Val-Ala-DL-Asp-fluoromethylketone

经典 SMILES

CC(C)C(C(=O)NC(C)C(=O)NC(CC(=O)O)C(=O)CF)NC(=O)OCC1=CC=CC=C1

同分异构的 SMILES

C[C@@H](C(=O)NC(CC(=O)O)C(=O)CF)NC(=O)[C@H](C(C)C)NC(=O)OCC1=CC=CC=C1

InChi

InChI=1S/C21H28FN3O7/c1-12(2)18(25-21(31)32-11-14-7-5-4-6-8-14)20(30)23-13(3)19(29)24-15(9-17(27)28)16(26)10-22/h4-8,12-13,15,18H,9-11H2,1-3H3,(H,23,30)(H,24,29)(H,25,31)(H,27,28)/t13-,15?,18-/m0/s1

InChiKey

SUUHZYLYARUNIA-LWSHRDBSSA-N

IUPAC 名

5-fluoro-3-[[(2S)-2-[[(2S)-3-methyl-2-(phenylmethoxycarbonylamino)butanoyl]amino]propanoyl]amino]-4-oxopentanoic acid

性能和储存信息

运输条件
Ambient - Can Ship with Ice
推荐的短期储存条件
-20°C
推荐的长期储存条件
-20°C
储存信息
Store under desiccating conditions|The product can be stored for up to 12 months

产品实验方案

文献 (24)

Recent publications for all applications. Explore the full list and refine your search

Nature communications 15:3816 PubMed38769293

2024

Fatal COVID-19 pulmonary disease involves ferroptosis.

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Baiyu Qiu,Fereshteh Zandkarimi,Anjali Saqi,Candace Castagna,Hui Tan,Miroslav Sekulic,Lisa Miorin,Hanina Hibshoosh,Shinya Toyokuni,Koji Uchida,Brent R Stockwell

Molecular and cellular biochemistry 477:2213-2233 PubMed35460011

2022

Energetic metabolic reprogramming in Jurkat DFF40-deficient cancer cells.

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Merve Kulbay,Bruno Johnson,Guillaume Ricaud,Marie-Noëlle Séguin-Grignon,Jacques Bernier

Cell death and differentiation 29:492-503 PubMed34535764

2021

Potent pro-apoptotic combination therapy is highly effective in a broad range of cancers.

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Antonella Montinaro,Itziar Areso Zubiaur,Julia Saggau,Anna-Laura Kretz,Rute M M Ferreira,Omar Hassan,Ella Kitzig,Ines Müller,Mona A El-Bahrawy,Silvia von Karstedt,Dagmar Kulms,Gianmaria Liccardi,Johannes Lemke,Henning Walczak

Molecular brain 12:78 PubMed31533781

2019

miR-212-5p attenuates ferroptotic neuronal death after traumatic brain injury by targeting Ptgs2.

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Xiao Xiao,Youjing Jiang,Weibo Liang,Yanyun Wang,Shuqiang Cao,He Yan,Linbo Gao,Lin Zhang

Acta pharmacologica Sinica 40:1466-1479 PubMed31316176

2019

WX20120108, a novel IAP antagonist, induces tumor cell autophagy via activating ROS-FOXO pathway.

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Rui Ding,Xin Wang,Wei Chen,Zhi Li,Ai-Li Wei,Qing-Bin Wang,Ai-Hua Nie,Li-Li Wang

Nanoscale advances 1:807-816 PubMed36132240

2018

Galactose:PEGamine coated gold nanoparticles adhere to filopodia and cause extrinsic apoptosis.

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Konstantina Tzelepi,Cristina Espinosa Garcia,Phil Williams,Jon Golding

Medical science monitor : international medical jo 24:5247-5257 PubMed30057402

2018

Receptor-Interacting Protein 3/Caspase-8 May Regulate Inflammatory Response and Promote Tissue Regeneration in the Periodontal Microenvironment.

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Bingbing Yan,Kewen Wei,Lipeng Hou,Taiqiang Dai,Yongchun Gu,Xinyu Qiu,Jiangwei Chen,Yuan Feng,Haode Cheng,Zhuo Yu,Yizhe Zhang,Hongmei Zhang,Dehua Li

Cell death and differentiation 25:1457-1472 PubMed29348676

2018

miR-137 regulates ferroptosis by targeting glutamine transporter SLC1A5 in melanoma.

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Meiying Luo,Longfei Wu,Kexin Zhang,Hong Wang,Tian Zhang,Lucas Gutierrez,Douglas O'Connell,Peng Zhang,Yu Li,Tongtong Gao,Wenyan Ren,Yongfei Yang

Journal of virology 92: PubMed29142134

2018

Tumor Necrosis Factor-Mediated Survival of CD169 Cells Promotes Immune Activation during Vesicular Stomatitis Virus Infection.

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Species

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Prashant V Shinde,Haifeng C Xu,Sathish Kumar Maney,Andreas Kloetgen,Sukumar Namineni,Yuan Zhuang,Nadine Honke,Namir Shaabani,Nicolas Bellora,Mareike Doerrenberg,Mirko Trilling,Vitaly I Pozdeev,Nico van Rooijen,Stefanie Scheu,Klaus Pfeffer,Paul R Crocker,Masato Tanaka,Sujitha Duggimpudi,Percy Knolle,Mathias Heikenwalder,Jürgen Ruland,Tak W Mak,Dirk Brenner,Aleksandra A Pandyra,Jessica I Hoell,Arndt Borkhardt,Dieter Häussinger,Karl S Lang,Philipp A Lang

Journal of the American Heart Association 6: PubMed28971953

2017

Rapamycin and CHIR99021 Coordinate Robust Cardiomyocyte Differentiation From Human Pluripotent Stem Cells Via Reducing p53-Dependent Apoptosis.

Applications

Unspecified application

Species

Human

Xiao-Xu Qiu,Yang Liu,Yi-Fan Zhang,Ya-Na Guan,Qian-Qian Jia,Chen Wang,He Liang,Yong-Qin Li,Huang-Tian Yang,Yong-Wen Qin,Shuang Huang,Xian-Xian Zhao,Qing Jing
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