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Cytochrome c from equine heart, CAS No.9007-43-6

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Item Number
C755620
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Price Qty
C755620-10mg
10mg
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$198.90
C755620-50mg
50mg
Available within 8-12 weeks(?)
Production requires sourcing of materials. We appreciate your patience and understanding.
$722.90

Basic Description

Product Name Cytochrome c from equine heart, CAS No.9007-43-6
Grade for cell culture, UltraBio™
Product Description

Cytochrome C (Cyt C) is a nuclear DNA-encoded protein. It is derived from its precursor apo-cytochrome c and moves across the outer membrane of the mitochondria.

Research area: Apoptosis

Application:

Cytochrome c from equine heart has been used to prepare a stock solution for synthesizing and calibrating biotinylated cytochrome c. It has also been used as a component of the reaction buffer to stain electron transport chain (ETC) complex IV and determine its activity using blue-native gel electrophoresis.
The specific sites and extent of oxidation in horse cytochrome c treated with H2O2 and UV were characterized. It was suggested that the state of these sites could be used as a biomarker for the oxidative environment in a cell.
Specifications & Purity UltraBio™, for cell culture, ≥99%(SDS-PAGE), powder
Biochemical and Physiological Mechanisms Cytochrome C (Cyt C) acts as a potent signaling molecule of apoptosis by activating caspase 3, a death protease. It plays a role in heme-binding with the help of cytochrome c heme lyase which facilitates its release into the mitochondrial intermembrane sp

Taxonomic Classification

Taxonomy Tree

Kingdom Organic compounds
Superclass Organoheterocyclic compounds
Class Tetrapyrroles and derivatives
Subclass Metallotetrapyrroles
Intermediate Tree Nodes Not available
Direct Parent Metalloporphyrins
Alternative Parents Porphyrins  Alpha amino acid amides  Cysteine and derivatives  Substituted pyrroles  Dicarboxylic acids and derivatives  Heteroaromatic compounds  Secondary carboxylic acid amides  Amino acids  Sulfenyl compounds  Organic transition metal salts  Azacyclic compounds  Carboxylic acids  Dialkylthioethers  Hydrocarbon derivatives  Monoalkylamines  Carbonyl compounds  Organic oxides  Organic zwitterions  Organopnictogen compounds  
Molecular Framework Aromatic heteropolycyclic compounds
Substituents Metalloporphyrin - Porphyrin - Alpha-amino acid amide - Cysteine or derivatives - Alpha-amino acid or derivatives - Dicarboxylic acid or derivatives - Substituted pyrrole - Heteroaromatic compound - Pyrrole - Amino acid or derivatives - Carboxamide group - Amino acid - Secondary carboxylic acid amide - Carboxylic acid derivative - Carboxylic acid - Azacycle - Organic transition metal salt - Dialkylthioether - Thioether - Sulfenyl compound - Organosulfur compound - Organooxygen compound - Organonitrogen compound - Primary aliphatic amine - Amine - Hydrocarbon derivative - Organic oxygen compound - Organic nitrogen compound - Organopnictogen compound - Primary amine - Organic salt - Organic zwitterion - Carbonyl group - Organic oxide - Aromatic heteropolycyclic compound
Description This compound belongs to the class of organic compounds known as metalloporphyrins. These are polycyclic compounds containing a porphyrin moiety and a metal atom.
External Descriptors Not available

Storage and Shipping

Concentration powder
Storage Temp Store at -20°C
Shipped In Ice chest + Ice pads
CAS 9007-43-6

Certificates(CoA,COO,BSE/TSE and Analysis Chart)

C of A & Other Certificates(BSE/TSE, COO):
Analytical Chart:

Citations of This Product

1. Xue Wang, Lu Zhang, Mohan Wang, Hongjiang Ma, Shiwei Liu, Meng Wang, Youqiang Yu, Guoyu Liu, Qiuge Cao, Xi Wang, Xishan Ma, Peng Yuan, Jia Liu, Yongjiu Zhang, Shenglin Duan.  (2024)  A novel multiple plant-based milk alternative containing various preprocessed grains achieves better performance in protein digestibility and free amino acid profile via in vitro gastrointestinal digestion analysis.  Food Science & Nutrition,     
2. Yolandani, Dandan Liu, Fredy Agil Raynaldo, Mokhtar Dabbour, Xueli Zhang, Zhongyuan Chen, Qingzhi Ding, Lin Luo, Haile Ma.  (2024)  Comparison of prediction models for soy protein isolate hydrolysates bitterness built using sensory, spectrofluorometric and chromatographic data from varying enzymes and degree of hydrolysis.  FOOD CHEMISTRY,    (138428). 
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6. Changwei Zhang, Qinghui Cao, Yuanyu Li, Juan Lu, Sidong Xiong, Yan Yue.  (2024)  Exosome co-delivery of a STING agonist augments immunogenicity elicited by CVB3 VP1 vaccine via promoting antigen cross-presentation of CD8 + DCs.  INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES,  261  (129518). 
7. Tianjiao Liu, Deming Dong, Yingyi Meng, Haijun Chen, Chunyue Liu, Zihan Qi, Anfeng Li, Yang Ning.  (2024)  Facile and green synthesis of chlorophyll-derived multi-color fluorescent carbonized polymer dots and their use for sensitive detection of hemin.  SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY,  310  (123841). 
8. Fan Yang, Hui-Hui Xie, Fan Du, Xiaomin Hou, Si-Fu Tang.  (2024)  Insight into the efficient loading and enhanced activity of enzymes immobilized on functionalized UiO-66.  INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES,  279  (135557). 
9. He Huang, Qinqin Yang, Yu He, Gongwu Song.  (2025)  Multi-enzyme simulation activity of MXene-based metal composites and the application for detection and degradation of phenolic pollutants.  MICROCHEMICAL JOURNAL,  208  (112350). 
10. Kaikai Xu, Lulu Kong, Kebin Ye, Beibei Xu, Yongming Deng, Yicheng Wang, Shaohua Wei.  (2025)  NiPc-Cu 2D MOF: Facile and scalable synthesis of an antimicrobial agent rivaling clinical antibiotics.  INORGANIC CHEMISTRY COMMUNICATIONS,  177  (114343). 
11. Tianli Luo, Qizhen Zheng, Ji Liu, Rui Yao, Ming Wang.  (2024)  Polyphenol-Assisted Biomineralization of Metal–Organic Framework Nanoparticles for Precision Delivery of Therapeutic Proteins to Cancer Cells.  BIOCONJUGATE CHEMISTRY,  35  (5): (682-692). 
12. Dandan Cheng, Yahong Chen, Yalan Feng, Yijun Zeng, Zhao Zhao.  (2025)  Preparation of Temperature-Sensitive Molecularly Imprinted Cryogel for Specific Recognition of Proteins.  ACS Omega,     
13. Yue Zheng, Huixi Yi, Zhixiong Zhan, Shan-Shan Xue, Guosheng Tang, Xiyong Yu, Dong-Yang Zhang.  (2024)  Reactive oxygen/nitrogen species scavenging and inflammatory regulation by renal-targeted bio-inspired rhodium nanozymes for acute kidney injury theranostics.  JOURNAL OF COLLOID AND INTERFACE SCIENCE,  662  (413). 
14. Shuxian Dai, Mengting Hu, Wen Zhang, Zhen Lei.  (2025)  Selective colorimetric detection of carbosulfan based on its hydrolysis behavior and Ti3C2/AuPt nanozyme.  ANALYTICA CHIMICA ACTA,  1336  (343519). 
15. Xiaoyu Qin, Junxian Guo, Hui Li, Hanlong He, Fei Cai, Xinyan Chen, Mingkai Chen, Tianfeng Chen, Li Ma.  (2025)  Selenium Electrophilic Center Responsive to Biological Electron Donors for Efficient Chemotherapy.  Advanced Science,    (2412062). 
16. Sijie Yuan, Ying Tu, Ru Yu, Fei Nie.  (2024)  Tunable Chemiluminescence Kinetics with Hierarchically Structured HKUST-1 and Its Sensing Application for Concanavalin A Analysis.  ACS Applied Materials & Interfaces,  16  (46): (63760-63768). 

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