DRP1 Rabbit Polyclonal Antibody
Rmb: 1500 特惠
产品规格
Catalog# HA500487
DRP1 Rabbit Polyclonal Antibody
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WB
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IF-Cell
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FC
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IHC-P
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Human
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Mouse
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Rat
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unconjugated
Safety datasheet
Select your chosen country/region
- MSDS_HUABIO.pdf
- MSDS_HUABIO.pdf
- MSDS_HA500487_Europe.pdf
- No MSDS Found
概述
产品名称
DRP1 Rabbit Polyclonal Antibody
抗体类型
Rabbit Polyclonal Antibody
免疫原
Recombinant protein within human DRP1 aa 1-736 / 736.
种属反应性
Human, Mouse, Rat
验证应用
WB, IF-Cell, FC, IHC-P
靶点分子量
Predicted band size: 82 kDa
阳性对照
A549 cell lysate, 293 cell lysate, HCT116 cell lysate, Hela cell lysate, NIH/3T3 cell lysate, PC-12 cell lysate, HeLa, NIH/3T3, human cerebellum tissue, mouse cerebellum tissue, rat cerebellum tissue.
偶联
unconjugated
RRID
产品特性
形态
Liquid
浓度
存放说明
Shipped at 4℃. Store at +4℃ short term (1-2 weeks). Store at -20℃ long term.
存储缓冲液
PBS (pH7.4), 0.1% BSA, 40% Glycerol. Preservative: 0.05% Sodium Azide.
亚型
IgG
纯化方式
Immunogen affinity purified.
应用稀释度
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WB
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1:5,000
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IF-Cell
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1:2,000
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FC
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1:2,000
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IHC-P
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1:2,000
靶点
功能
Dynamin-1-like protein is a GTPase that regulates mitochondrial fission. In humans, dynamin-1-like protein, which is typically referred to as dynamin-related protein 1 (Drp1), is encoded by the DNM1L gene and is part of the dynamin superfamily (DSP) family of proteins. Mitochondria routinely undergo fission and fusion events that maintain a dynamic reticular network. Drp1 is a fundamental component of mitochondrial fission. Indeed, Drp1 deficient neurons have large, strongly interconnected mitochondria due to dysfunctional fission machinery. Fission helps facilitate mitophagy, which is the breakdown and recycling of damaged mitochondria. Dysfunction in the DRP activity may result in mutated DNA or malfunctioning proteins diffusing throughout the mitochondrial system. In addition, fission results in fragmented mitochondria more capable of producing of reactive oxygen species, which can disrupt normal biochemical processes inside of cells. ROS can be formed from incomplete transfer of electrons through the electron transport chain. Furthermore, fission influences calcium flux within the cell, linking Drp1 to apoptosis and cancer. Several studies have indicated that Drp1 is essential for proper embryonic development. Drp1 knockout mice exhibit abnormal brain development and die around embryonic day 12. In neural specific Drp1 knockout mice, brain size is reduced and apoptosis is increased. Synapse formation and neurite growth are also impaired. A second group of researchers generated another neural specific knockout mouse line. They found that knocking out Drp1 resulted in the appearance of large mitochondria in Purkinje cells and prevented neural tube formation. In humans, loss of Drp1 function affects brain development and is also associated with early mortality.
背景文献
1. Jin JY et al. Drp1-dependent mitochondrial fission in cardiovascular disease. Acta Pharmacol Sin. 2021 May
2. Han H et al. PINK1 phosphorylates Drp1S616 to regulate mitophagy-independent mitochondrial dynamics. EMBO Rep. 2020 Aug
亚细胞定位
Cytoplasm, cytosol, Golgi apparatus, Endomembrane system, Mitochondrion outer membrane, Peroxisome, Membrane, clathrin-coated pit, Cytoplasmic vesicle, secretory vesicle, synaptic vesicle membrane.
别名
DLP1 antibody
dnm1l antibody
DNM1L_HUMAN antibody
Dnm1p/Vps1p-like protein antibody
dnml1 antibody
DRP1 antibody
DVLP antibody
Dymple antibody
Dynamin 1 like antibody
Dynamin family member proline-rich carboxyl-terminal domain less antibody
展开DLP1 antibody
dnm1l antibody
DNM1L_HUMAN antibody
Dnm1p/Vps1p-like protein antibody
dnml1 antibody
DRP1 antibody
DVLP antibody
Dymple antibody
Dynamin 1 like antibody
Dynamin family member proline-rich carboxyl-terminal domain less antibody
Dynamin like protein antibody
Dynamin related protein 1 antibody
Dynamin-1-like protein antibody
Dynamin-like protein 4 antibody
Dynamin-like protein antibody
Dynamin-like protein IV antibody
Dynamin-related protein 1 antibody
DYNIV 11 antibody
EMPF antibody
EMPF1 antibody
FLJ41912 antibody
HdynIV antibody
VPS1 antibody
折叠图片
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Western blot analysis of DRP1 on different lysates with Rabbit anti-DRP1 antibody (HA500487) at 1/5,000 dilution.
Lane 1: Hela cell lysate
Lane 2: PC-12 cell lysate
Lane 3: NIH/3T3 cell lysate
Lane 4: HCT116 cell lysate
Lane 5: 293T cell lysate
Lane 6: A549 cell lysate
Lysates/proteins at 20 µg/Lane.
Exposure time: 110 seconds; ECL: K1801
Proteins were transferred to a PVDF membrane and blocked with 5% NFDM/TBST for 1 hour at room temperature.
The primary antibody (HA500487) at 1/5,000 dilution was used in primary antibody dilution buffer (K1803), 4° overnight
Secondary antibody: Goat anti-Rabbit IgG-HRP (HA1001), 1/50,000 in 5% NFDM/TBST, 1 hour at room temperature
Predicted band size: 82 kDa
Observed band size: 82 kDa -
Immunocytochemistry analysis of HeLa cells labeling DRP1 with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution.
Cells were fixed in 4% paraformaldehyde for 15 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 15 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (HA601187, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution. -
Immunocytochemistry analysis of NIH/3T3 cells labeling DRP1 with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution.
Cells were fixed in 4% paraformaldehyde for 15 minutes at room temperature, permeabilized with 0.1% Triton X-100 in PBS for 15 minutes at room temperature, then blocked with 1% BSA in 10% negative goat serum for 1 hour at room temperature. Cells were then incubated with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution in 1% BSA in PBST overnight at 4 ℃. Goat Anti-Rabbit IgG H&L (iFluor™ 488, HA1121) was used as the secondary antibody at 1/1,000 dilution. PBS instead of the primary antibody was used as the secondary antibody only control. Nuclear DNA was labelled in blue with DAPI.
Beta tubulin (HA601187, red) was stained at 1/100 dilution overnight at +4℃. Goat Anti-Mouse IgG H&L (iFluor™ 594, HA1126) was used as the secondary antibody at 1/1,000 dilution. -
Immunohistochemical analysis of paraffin-embedded human cerebellum tissue with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 20 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (HA500487) at 1/2,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded mouse cerebellum tissue with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 20 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (HA500487) at 1/2,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Immunohistochemical analysis of paraffin-embedded rat cerebellum tissue with Rabbit anti-DRP1 antibody (HA500487) at 1/2,000 dilution.
The section was pre-treated using heat mediated antigen retrieval with Tris-EDTA buffer (pH 9.0) for 20 minutes. The tissues were blocked in 1% BSA for 20 minutes at room temperature, washed with ddH2O and PBS, and then probed with the primary antibody (HA500487) at 1/2,000 dilution for 1 hour at room temperature. The detection was performed using an HRP conjugated compact polymer system. DAB was used as the chromogen. Tissues were counterstained with hematoxylin and mounted with DPX. -
Flow cytometric analysis of HeLa cells labeling DRP1.
Cells were fixed and permeabilized. Then stained with the primary antibody (HA500487, 1μg/mL) (red) compared with Rabbit IgG Isotype Control (green). After incubation of the primary antibody at +4℃ for an hour, the cells were stained with a iFluor™ 488 conjugate-Goat anti-Rabbit IgG Secondary antibody (HA1121) at 1/1,000 dilution for 30 minutes at +4℃. Unlabelled sample was used as a control (cells without incubation with primary antibody; black). -
Flow cytometric analysis of NIH/3T3 cells labeling DRP1.
Cells were fixed and permeabilized. Then stained with the primary antibody (HA500487, 1μg/mL) (red) compared with Rabbit IgG Isotype Control (green). After incubation of the primary antibody at +4℃ for an hour, the cells were stained with a iFluor™ 488 conjugate-Goat anti-Rabbit IgG Secondary antibody (HA1121) at 1/1,000 dilution for 30 minutes at +4℃. Unlabelled sample was used as a control (cells without incubation with primary antibody; black).
请注意: All products are "FOR RESEARCH USE ONLY AND ARE NOT INTENDED FOR DIAGNOSTIC OR THERAPEUTIC USE"
引文
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Prohibitin 2 links damaged mitochondria to intracellular bacteria to trigger xenophagy independent of mitophagy
期刊: Cell Reports
DOI: 10.1016/j.celrep.2026.117463
IF: 7.7
应用: WB
反应种属: Bovine
发表时间: 2026 May
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Modulating ER-mitochondrial crosstalk to revitalize implant osseointegration in diabetes through an injectable hydrogel platform
期刊: Chemical Engineering Journal
DOI: 10.1016/j.cej.2026.177208
IF: 12.5
应用: IHC
反应种属: Rat
发表时间: 2026 May
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A photo-responsive, fisetin-functionalized DNA nanocage for programmed therapy to accelerate early-stage wound healing in aged skin
期刊: Chemical Engineering Journal
DOI: 10.1016/j.biomaterials.2026.124330
IF: 13.2
应用: WB,IHC-P
反应种属: Rat
发表时间: 2026 May
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Nuciferine ameliorates steroid-induced osteonecrosis of the femoral head by inhibiting BMSCs ferroptosis via HIF-1α
期刊: Phytomedicine
DOI: 10.1016/j.phymed.2026.158070
IF: 8.3
应用: WB
反应种属: Rat
发表时间: 2026 Mar
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Agarononaose from red algae delays cardiomyocyte aging by improving mitochondrial function via enhanced oxidative phosphorylation: A mitochondrial transplantation perspective
期刊: Journal Of Functional Foods
DOI: 10.1016/j.jff.2025.107131
IF: 4
应用: WB
反应种属: Mouse
发表时间: 2026 Jan
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期刊: Journal of Biomaterials Science, Polymer Edition
DOI: 10.1016/j.jare.2026.04.019
IF: 13
应用: WB
反应种属: bos bovine
发表时间: 2026 Apr
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Macrophage-mimetic photothermal nanotherapeutics regulate mitochondrial homeostasis and inflammatory cascades in lung ischemia-reperfusion injury
期刊: Cell Reports Medicine
DOI: 10.1016/j.xcrm.2026.102768
IF: 10.6
应用: WB
反应种属: Rat,Human
发表时间: 2026 Apr
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Aβ impairs bone vascular homeostasis in APP/PS1 mice via disrupting the mitochondrial fission-efferocytosis axis in macrophages
期刊: International Immunopharmacology
DOI: 10.1016/j.intimp.2025.115526
IF: 4.7
应用: WB
反应种属: Mouse
发表时间: 2025 Sept
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Portacaval anastomosis promotes fragmentation of mitochondrial network in the cerebellum of male rats
期刊: Metabolic Brain Disease
DOI: 10.1007/s11011-025-01705-8
IF: 3.5
应用: WB
反应种属: Rat
发表时间: 2025 Sept
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Lipocalin 2 deficiency attenuates NLRP3 inflammasome activation through glycolysis impairment and MGST1-mediated mitochondrial ROS reduction
期刊: International Journal Of Biological Macromolecules
DOI: 10.1016/j.ijbiomac.2025.149021
IF: 8.5
应用: WB
反应种属: Mouse
发表时间: 2025 Nov
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G6PD protects against cerebral ischemia-reperfusion injury by inhibiting excessive mitophagy
期刊: LIFE SCIENCES
DOI: 10.1016/j.lfs.2024.123367
IF: 5.1
应用: WB
反应种属: Mouse
发表时间: 2025 Jan
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G6PD protects against cerebral ischemia-reperfusion injury by inhibiting excessive mitophagy
期刊: Life Sciences
DOI:
IF: 5.2
应用: WB
反应种属: Mouse
发表时间: 2025 Jan
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Recombinant Porcine FGF1 Promotes Muscle Stem Cell Proliferation and Mitochondrial Function for Cultured Meat Production
期刊: Journal Of Agricultural And Food Chemistry
DOI:
IF: 5.7
应用: WB
反应种属: Pig
发表时间: 2025 Jan
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2A-biohydrogels accelerate diabetic wound healing by promoting M2 macrophage polarization and functionalized mitochondrial transfer to endothelial cells
期刊: Chemical Engineering Journal
DOI: 10.1016/j.cej.2025.163130
IF: 13.3
应用: IHC-P
反应种属: Rat
发表时间: 2025 Apr
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Effects and mechanisms of Polygonati Rhizoma polysaccharide on potassium oxonate and hypoxanthine-induced hyperuricemia in mice
期刊: International Journal Of Biological Macromolecules
DOI:
IF: 7.7
应用: WB
反应种属: Mouse
发表时间: 2024 Sep
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Nr-CWS regulates METTL3-mediated m6A modification of CDS2 mRNA in vascular endothelial cells and has prognostic significance
期刊: Communications Biology
DOI:
IF: 5.2
应用: WB
反应种属: Human
发表时间: 2024 Oct
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NPR1 promotes cisplatin resistance by inhibiting PARL-mediated mitophagy-dependent ferroptosis in gastric cancer
期刊: Cell Biology And Toxicology
DOI:
IF: 5.3
应用: WB
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发表时间: 2024 Nov
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Mitophagy-Enhanced Nanoparticle-Engineered Mitochondria Restore Homeostasis of Mitochondrial Pool for Alleviating Pulmonary Fibrosis
期刊: ACS Applied Nano Materials
DOI:
IF: 15.8
应用: WB
反应种属: Mouse
发表时间: 2024 Nov
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Hippocampal mitophagy contributes to spatial memory via maintaining neurogenesis during the development of mice
期刊: CNS Neuroscience & Therapeutics
DOI:
IF: 4.8
应用: WB
反应种属: Mouse
发表时间: 2024 Jun
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Genipin Activates Autophagy and Promotes Myoblast Differentiation by Activating AMPK Pathway
期刊: Journal Of Agricultural And Food Chemistry
DOI:
IF: 6.1
应用: WB
反应种属: Mouse
发表时间: 2024 Jun
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Tetrahedral framework nucleic acids’role in facilitating chronic diabetic wound repair via the endoplasmic reticulum-mitochondrial pathway
期刊: Nano Today
DOI:
IF: 17.4
应用: IF-cell
反应种属: Human
发表时间: 2024 Jun
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Cross-Oxygen Gradients Transcriptomic Comparison Revealed the Central Role of MAPK and Hippo in Hypoxia-Mediated Mammary Proliferation Inhibition
期刊: Antioxidants
DOI: 10.3390/antiox13030288
IF: 6
应用: WB
反应种属: Cow
发表时间: 2024 Feb
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Tetrahedral framework nucleic acids' role in facilitating chronic diabetic wound repair via the endoplasmic reticulum-mitochondrial pathway
期刊: Nano Today
DOI:
IF: 17.4
应用: IF-cell
反应种属: Human
发表时间: 2024 Apr
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