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Rabbit Anti-Cytochrome C  antibody (bs-0013R)  
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產品編號 bs-0013R
英文名稱 Rabbit Anti-Cytochrome C  antibody
中文名稱 細胞色素C抗體
別    名 CytC; CYC; CYCS; Cytochrome c somatic; HCS; CYC_HUMAN; Cytochrome-c; MSA06; THC4.  
Specific References  (54)     |     bs-0013R has been referenced in 54 publications.
[IF=10.383] Wenyu Guo. et al. Ultrasound-Mediated Antitumor Therapy via Targeted Acoustic Release Carrier of Carbon Monoxide (TARC-CO). ACS APPL MATER INTER. 2022;XXXX(XXX):XXX-XXX  IF ;  Mouse.  
[IF=9.429] Li, Guang. et al. Synergetic delivery of artesunate and isosorbide 5-mononitrate with reduction-sensitive polymer nanoparticles for ovarian cancer chemotherapy. J NANOBIOTECHNOL. 2022 Dec;20(1):1-13  WB ;  Human.  
[IF=7.129] Furui Han. et al. In vivo and in vitro study on hepatotoxicity of Tris-(2, 3-dibromopropyl) isocyanurate exposure via mitochondrial and death receptor pathway. ECOTOX ENVIRON SAFE. 2022 Nov;246:114186  WB ;  Rat, Human.  
[IF=6.551] Wei J et al. Endosulfan induces cardiotoxicity through apoptosis via unbalance of pro-survival and mitochondrial-mediated apoptotic pathways. Sci Total Environ . 2020 Jul 20;727:138790.  WB ;  human.  
[IF=6.525] Til Bahadur Thapa Magar. et al. Novel Chlorin e6-Curcumin Derivatives as a Potential Photosensitizer: Synthesis, Characterization, and Anticancer Activity. PHARMACEUTICS. 2023 Jun;15(6):1577  WB ;  Human.  
[IF=6.025] Xuliang Zhang. et al. PINK1/Parkin-mediated mitophagy mitigates T-2 toxin-induced nephrotoxicity. FOOD CHEM TOXICOL. 2022 Jun;164:113078  WB ;  Mouse.  
[IF=5.88] Rui X et al. Imperative and effective reversion of synovial hyperplasia and cartilage destruction in rheumatoid arthritis through multiple synergistic effects of O2 and Ca2+. Mater Sci Eng C Mater Biol Appl.2020 Sep;114:111058.  IHC ;  Rat.  
[IF=5.778] Lei Tian. et al. Acute ozone exposure can cause cardiotoxicity: Mitochondria play an important role in mediating myocardial apoptosis. Chemosphere. 2021 Apr;268:128838  WB ;  Rat.  
[IF=5.763] Xu Kejia. et al. Anti-melanoma effect and action mechanism of a novel chitosan-based composite hydrogel containing hydroxyapatite nanoparticles. REGEN BIOMATER. 2022 Jul;:  IHC ;  Mouse.  
[IF=5.74] Duan, Xiaoxu, et al. "Antioxidant tert-butylhydroquinone ameliorates arsenic-induced intracellular damages and apoptosis through induction of Nrf2-dependent antioxidant responses as well as stabilization of anti-apoptotic factor Bcl? 2 in human keratinocytes." Free Radical Biology and Medicine(2016).  WB ;  Human.  
[IF=5.195] Liping Han. et al. Weierning, a Chinese patent medicine, improves chronic atrophic gastritis with intestinal metaplasia. J ETHNOPHARMACOL. 2023 Jun;309:116345  WB ;  Rat.  
[IF=5.17] Zhang et al. P62 regulates resveratrol-mediated Fas/Cav-1 complex formation and transition from autophagy to apoptosis. (2015) Oncotarge. 6:789-801  WB ;  Human.  
[IF=5.108] Wang Y et al. Excessive Cu2+ deteriorates arsenite-induced apoptosis in chicken brain and resulting in immunosuppression, not in homeostasis. Chemosphere.?2019 Sep 4;239:124758.  WB ;  Chicken.  
[IF=4.872] Yajing Wang. et al. Long-term exposure to the fluoride blocks the development of chondrocytes in the ducks: The molecular mechanism of fluoride regulating autophagy and apoptosis. Ecotox Environ Safe. 2021 Jul;217:112225  WB ;  Duck.  
[IF=4.872] Shaofeng Wu. et al. Protective effects of curcumin on ATO-induced nephrotoxicity in ducks in relation to suppressed autophagy, apoptosis and dyslipidemia by regulating oxidative stress. Ecotox Environ Safe. 2021 Aug;219:112350  WB ;  Duck.  
[IF=4.872] Hanting Xu. et al. Melatonin alleviates benzo(a)pyrene-induced ovarian corpus luteum dysfunction by suppressing excessive oxidative stress and apoptosis. Ecotox Environ Safe. 2021 Jan;207:111561  IF ;  Mouse.  
[IF=4.87] Li Y et al. Seminal Plasma Proteome as an Indicator of Sperm Dysfunction and Low Sperm Motility in Chickens. Mol Cell Proteomics. 2020 Jun;19(6):1035-1046.  WB ;  Chicken.  
[IF=4.784] Zhu B et al. The hepatoprotective effect of polysaccharides from Pleurotus ostreatus on carbon tetrachloride-induced acute liver injury rats.Int J Biol Macromol. 2019 Jun 15;131:1-9.  IHF ;  Rat.  
[IF=4.101] Haixiang Ding. et al. Ailanthone suppresses the activity of human colorectal cancer cells through the STAT3 signaling pathway. Int J Mol Med. 2022 Feb;49(2):1-11  WB ;  Human.  
[IF=4.087] Liang Lyu. et al. Autophagy inhibition enhances anti-pituitary adenoma effect of tetrandrine. 2021 May 26  WB ;  Human.  
[IF=4.087] Dasari S et al. Neferine, an alkaloid from lotus seed embryo targets HeLa and SiHa cervical cancer cells via pro‐oxidant anticancer mechanism. Phytother Res. 2020 Sep;34(9):2366-2384.  ICC ;  Human.  
[IF=4.081] Hu, Zhuoying. et al. Effects of Long-Term Exposure to Copper on Mitochondria-Mediated Apoptosis in Pig Liver. BIOL TRACE ELEM RES. 2022 Jun;:1-14  WB ;  Pig.  
[IF=4.07] Tian, Qin, et al. "Phosphoprotein Gene Contributes to the Enhanced Apoptosis Induced by Wild-Type Rabies Virus GD-SH-01 In Vitro." Frontiers in Microbiology 8 (2017): 1697.  WB ;  Mouse.  
[IF=3.571] Zhang Y et al. Ginsenoside Rg3 prevents cognitive impairment by improving mitochondrial dysfunction in the rat model of Alzheimer's disease. J Agric Food Chem. 2019 Aug 27.  WB&IHC-P ;  Rat.  
[IF=3.53] Fang C, Zhang J, Qi D, Fan X, Luo J, et al. (2014) Evodiamine Induces G2/M Arrest and Apoptosis via Mitochondrial and Endoplasmic Reticulum Pathways in H446 and H1688 Human Small-Cell Lung Cancer Cells. PLoS ONE 9(12): e115204.  WB ;  Human.  
[IF=3.383] Jingxue Ma. et al. Depletion of Fractalkine ameliorates renal injury and Treg cell apoptosis via the p38MAPK pathway in lupus-prone mice. Exp Cell Res. 2021 Aug;405:112704  WB ;  Mouse.  
[IF=3.266] Zhang H et al. Cytoplasmic upregulation of Cyto c and AIF serve as biomarkers of mechanical asphyxia death. Am J Transl Res. 2019 Jul 15;11(7):4568-4583.  WB ;  Rat&Human.  
[IF=3.252] Guangcong Peng. et al. Intranasal administration of DHED protects against exhaustive exercise-induced brain injury in rats. Brain Res. 2021 Dec;1772:147665  WB,IF ;  rat.  
[IF=3.2] Chen, Chengzhi, et al. "Nuclear translocation of nuclear factor kappa B is regulated by G protein signaling pathway in arsenite‐induced apoptosis in HBE cell line." Environmental Toxicology (2015).  WB ;  Human.  
[IF=3.12] Jiang, H-Q., et al. "Guanabenz Delays the Onset of Disease Symptoms, Extends Lifespan, Improves Motor Performance and Attenuates Motor Neuron Loss in the SOD1 G93A Mouse Model of Amyotrophic Lateral Sclerosis." Neuroscience (2014).  WB ;  Mouse.  
研究領域 腫瘤  心血管  細胞生物  神經生物學  信號轉導  細胞凋亡  脂蛋白  新陳代謝  線粒體  
抗體來源 Rabbit
克隆類型 Polyclonal
交叉反應 Human,Mouse,Rat (predicted: Rabbit,Pig,Cow,Chicken,GuineaPig,Horse)
產品應用 WB=1:500-2000,IHC-P=1:100-500,IHC-F=1:100-500,Flow-Cyt=1μg/Test,ICC/IF=1:100-500,IF=1:100-500,ELISA=1:5000-10000
not yet tested in other applications.
optimal dilutions/concentrations should be determined by the end user.
理論分子量 12kDa
檢測分子量 14.4
細胞定位 細胞漿 細胞膜 線粒體
性    狀 Liquid
濃    度 1mg/ml
免 疫 原 KLH conjugated synthetic peptide derived from human Cytochrome C: 51-105/105 
亞    型 IgG
純化方法 affinity purified by Protein A
緩 沖 液 0.01M TBS (pH7.4) with 1% BSA, 0.02% Proclin300 and 50% Glycerol.
保存條件 Shipped at 4℃. Store at -20℃ for one year. Avoid repeated freeze/thaw cycles.
注意事項 This product as supplied is intended for research use only, not for use in human, therapeutic or diagnostic applications.
PubMed PubMed
產品介紹 Cytochrome C is an electron transporting protein that resides within the intermembrane space of the mitochondria, where it plays a critical role in the process of oxidative phosphorylation and production of cellular ATP. An increasing amount of interest has been directed toward the role which cytocrome C has been demonstrated to play in apoptotic processes. Following exposure to apoptotic stimuli, cytochrome C is rapidly released from the mitochondria into the cytosol, an event which may be required for the completion of apoptosis in some systems. Cytosolic cytochrome C functions in the activation of caspase 3, an ICE family molecule that is a key effector of apoptosis.

Function:
Electron carrier protein. The oxidized form of the cytochrome c heme group can accept an electron from the heme group of the cytochrome c1 subunit of cytochrome reductase. Cytochrome c then transfers this electron to the cytochrome oxidase complex, the final protein carrier in the mitochondrial electron-transport chain.
Plays a role in apoptosis. Suppression of the anti-apoptotic members or activation of the pro-apoptotic members of the Bcl-2 family leads to altered mitochondrial membrane permeability resulting in release of cytochrome c into the cytosol. Binding of cytochrome c to Apaf-1 triggers the activation of caspase-9, which then accelerates apoptosis by activating other caspases.

Subcellular Location:
Mitochondrion intermembrane space. Note=Loosely associated with the inner membrane.

Post-translational modifications:
Binds 1 heme group per subunit.
Phosphorylation at Tyr-49 and Tyr-98 both reduce by half the turnover in the reaction with cytochrome c oxidase, down-regulating mitochondrial respiration.

DISEASE:
Defects in CYCS are the cause of thrombocytopenia type 4 (THC4) [MIM:612004]; also known as autosomal dominant thrombocytopenia type 4. Thrombocytopenia is the presence of relatively few platelets in blood. THC4 is a non-syndromic form of thrombocytopenia. Clinical manifestations of thrombocytopenia are absent or mild. THC4 may be caused by dysregulated platelet formation.

Similarity:
Belongs to the cytochrome c family.

SWISS:
P99999

Gene ID:
54205

Database links:

Entrez Gene: 54205 Human

Entrez Gene: 13063 Mouse

Entrez Gene: 25309 Rat

Omim: 123970 Human

SwissProt: P99999 Human

SwissProt: P62897 Mouse

SwissProt: P62898 Rat

Unigene: 437060 Human



細胞色素C(cytC)是一種電子傳遞鏈蛋白為線粒體呼吸鏈必須的成份之一。在哺乳動物細胞中,如此高度保守性蛋白常分布在線粒體內膜。
新近研究證明細胞漿中細胞色素C為激活細胞調亡所必需的因子。在調亡的過程中,細胞色素C從線粒體膜被易位到細胞漿,由細胞色素C激活Caspase-3(CPP32)。
細胞色素C的易位可被過量表達的Bcl-2阻斷。細胞色素B與細胞色素C1和Rieske蛋白相結合而形成復合物III(也稱細胞色素B-C1復合物)參與細胞呼吸鏈。該蛋白動物種屬間同源性較高;如 :豬、犬、牛、雞、豚鼠等。

產品圖片
Sample: Lane 1: Heart (Rat) Lysate at 40 ug Lane 2: Heart (Mouse) Lysate at 40 ug Primary: Anti-Cytochrome C (bs-0013R) at 1/1000 dilution Secondary: IRDye800CW Goat Anti-Rabbit IgG at 1/20000 dilution Predicted band size: 14.4 kD Observed band size: 14.4 kD
Sample: Cytochrome C protein at 30 ug Primary: Anti- Cytochrome C (bs-0013R) at 1/300 dilution Secondary: IRDye800CW Goat Anti-Rabbit IgG at 1/20000 dilution Predicted band size: 14 kD Observed band size: 14 kD
Tissue/cell:Sh-sy5y cell; 4% Paraformaldehyde-fixed; Triton X-100 at room temperature for 20 min; Blocking buffer (normal goat serum, C-0005) at 37°C for 20 min; Antibody incubation with (Cytochrome C) polyclonal Antibody, Unconjugated (bs-0013R) 1:100, 90 minutes at 37°C; followed by a FITC conjugated Goat Anti-Rabbit IgG antibody at 37°C for 90 minutes, DAPI (blue, C02-04002) was used to stain the cell nuclei.
Blank control: HepG2(blue). Primary Antibody:Rabbit Anti-Cytochrome C antibody (bs-0013R,Green); Dilution: 1μg in 100 μL 1X PBS containing 0.5% BSA; Isotype Control Antibody: Rabbit IgG(orange) ,used under the same conditions; Secondary Antibody: Goat anti-rabbit IgG-FITC(white blue), Dilution: 1:200 in 1 X PBS containing 0.5% BSA. Protocol The cells were fixed with 2% paraformaldehyde for 10 min at 37℃. Primary antibody (bs-0013R, 1μg /1x10^6 cells) were incubated for 30 min at room temperature, followed by 1 X PBS containing 0.5% BSA + 1 0% goat serum (15 min) to block non-specific protein-protein interactions. Then the Goat Anti-rabbit IgG/FITC antibody was added into the blocking buffer mentioned above to react with the primary antibody at 1/200 dilution for 40 min at room temperature. Acquisition of 20,000 events was performed.
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