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          • Primary Antibodies ›
          • PINK1 Antibodies

          Rockland

          PINK1 Monoclonal Antibody (S4-15), PerCP

          View all (51) PINK1 antibodies

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          Cite PINK1 Monoclonal Antibody (S4-15), PerCP

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          PINK1 Monoclonal Antibody (S4-15), PerCP

          Product Details

          200-365-W64

          Applications
          Tested Dilution
          Publications

          Western Blot (WB)

          1:1,000
          -

          Immunohistochemistry (IHC)

          Assay-dependent
          -
          Product Specifications

          Species Reactivity

          Human, Mouse, Rat

          Host/Isotype

          Mouse / IgG1

          Class

          Monoclonal

          Type

          Antibody

          Clone

          S4-15

          Immunogen

          Anti-PINK1 Antibody was produced by repeated immunization of mice with a fusion protein containing amino acids 112-496 of human PINK1.
          3D Epitope / Immunogen

          Conjugate

          PerCP PerCP PerCP
          • Unconjugated
          • Biotin 
          • FITC
          • HRP
          • PE 
          • Request custom conjugation

          Excitation/Emission Max

          482/675 nm View spectra spectra

          Form

          Liquid

          Concentration

          1 mg/mL

          Amount

          100 µg

          Purification

          Protein G

          Storage buffer

          PBS, pH 7.2, with 50% glycerol

          Contains

          0.1% sodium azide

          Storage conditions

          -20°C, Avoid Freeze/Thaw Cycles

          Shipping conditions

          Ambient (domestic); Wet ice (international)

          Target Information

          PINK1 (PTEN-induced putative kinase 1) protects from mitochondrial dysfunction in cells by conferring different autophosphorylation activity to mitochondrial genes. The kinase domain of PINK1 appears to be critical in its protective effects. Mitochondrial proteins are critical for the regulation of cellular energy and adaptation to stress. Particularly in brain cells, mitochondrial demand is extraordinarily high, in order to accommodate aerobic and anaerobic support of high energy processes. When mitochondrial structure and/or function is disrupted in the brain, neurodegenerative diseases like Parkinson's disease are triggered.

          For Research Use Only. Not for use in diagnostic procedures. Not for resale without express authorization.

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          Cite this product

          Bioinformatics

          Protein Aliases: BRPK; FLJ27236; PINK 1; PINK-1; protein kinase BRPK; PTEN induced putative kinase 1; PTEN-induced putative kinase 1; PTEN-induced putative kinase protein 1; Serine/threonine-protein kinase PINK1, mitochondrial; unnamed protein product

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          Gene Aliases: 1190006F07Rik; AU042772; AW557854; BRPK; mFLJ00387; PARK6; PINK1

          View more View less

          UniProt ID: (Human) Q9BXM7, (Rat) B5DFG1, (Mouse) Q99MQ3

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          Entrez Gene ID: (Human) 65018, (Rat) 298575, (Mouse) 68943

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          Function(s)
          nucleotide binding magnesium ion binding protease binding protein kinase activity protein serine/threonine kinase activity protein binding ATP binding kinase activity peptidase activator activity transferase activity kinase binding ubiquitin protein ligase binding protein kinase B binding macromolecular complex binding metal ion binding C3HC4-type RING finger domain binding protein serine kinase activity molecular_function calcium-dependent protein kinase activity transferase activity, transferring phosphorus-containing groups non-receptor serine/threonine protein kinase protein modifying enzyme
          Process(es)
          mitophagy mitophagy regulation of oxidative phosphorylation response to ischemia protein phosphorylation ubiquitin-dependent protein catabolic process autophagy response to stress response to oxidative stress mitochondrion organization regulation of hydrogen peroxide metabolic process negative regulation of gene expression regulation of mitochondrion organization dopamine secretion macroautophagy positive regulation of macroautophagy negative regulation of macroautophagy protein ubiquitination respiratory electron transport chain hemopoiesis positive regulation of cell migration regulation of protein ubiquitination positive regulation of protein ubiquitination positive regulation of synaptic transmission, dopaminergic positive regulation of dopamine secretion positive regulation of catecholamine secretion cellular response to oxidative stress intracellular signal transduction TORC2 signaling regulation of apoptotic process negative regulation of apoptotic process positive regulation of I-kappaB kinase/NF-kappaB signaling regulation of protein complex assembly regulation of neuron apoptotic process negative regulation of neuron apoptotic process positive regulation of translation positive regulation of transcription from RNA polymerase II promoter negative regulation of JNK cascade catecholamine secretion protein stabilization establishment of localization in cell regulation of mitochondrial membrane potential positive regulation of protein kinase B signaling regulation of proteasomal protein catabolic process cellular response to hypoxia establishment of protein localization to mitochondrion maintenance of protein location in mitochondrion positive regulation of mitochondrial fission positive regulation of release of cytochrome c from mitochondria negative regulation of mitochondrial fission cellular response to toxic substance mitochondrion to lysosome transport regulation of cellular response to oxidative stress negative regulation of macromitophagy regulation of synaptic vesicle transport negative regulation of autophagosome assembly positive regulation of mitochondrial electron transport, NADH to ubiquinone regulation of mitophagy regulation of protein targeting to mitochondrion negative regulation of hypoxia-induced intrinsic apoptotic signaling pathway negative regulation of oxidative stress-induced neuron intrinsic apoptotic signaling pathway negative regulation of hydrogen peroxide-induced neuron intrinsic apoptotic signaling pathway negative regulation of intrinsic apoptotic signaling pathway in response to hydrogen peroxide positive regulation of cristae formation positive regulation of protein targeting to mitochondrion positive regulation of free ubiquitin chain polymerization cellular response to hydrogen sulfide positive regulation of type 2 mitophagy regulation of reactive oxygen species metabolic process negative regulation of reactive oxygen species metabolic process positive regulation of ATP biosynthetic process negative regulation of intrinsic apoptotic signaling pathway positive regulation of protein phosphorylation biological_process peptidyl-serine phosphorylation positive regulation of peptidyl-serine phosphorylation positive regulation of protein dephosphorylation positive regulation of sequence-specific DNA binding transcription factor activity negative regulation of oxidative stress-induced intrinsic apoptotic signaling pathway negative regulation of mitophagy negative regulation of oxidative stress-induced cell death phosphorylation mitophagy in response to mitochondrial depolarization
          It has to be done as per old AB suggested Products section.

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