PINK1 RNAi

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PINK1 RNAi [H00065018-R03] - Homo sapiens PTEN induced putative kinase 1 (PINK1), mRNA.

Product Details

Summary
Reactivity HuSpecies Glossary
Applications RNAi, RNAi SP

Order Details

PINK1 RNAi Summary

Immunogen
Target Refseq:NM_032409
Homo sapiens PTEN induced putative kinase 1 (PINK1), mRNA.
Specificity
Target Region:Coding sequence
Gene
PINK1

Applications/Dilutions

Application Notes
This RNAi causes protein knockdown.

Packaging, Storage & Formulations

Storage
Store at -20C. Avoid freeze-thaw cycles.

Notes

This product is produced by and distributed for Abnova, a company based in Taiwan.

Alternate Names for PINK1 RNAi

  • BRPK
  • EC 2.7.11.1
  • FLJ27236
  • PARK6
  • Parkinson disease (autosomal recessive) 6
  • PINK1
  • protein kinase BRPK
  • PTEN induced putative kinase 1
  • PTEN-induced putative kinase protein 1
  • serine/threonine-protein kinase PINK1, mitochondrial

Background

Chimera RNA interference (chimera RNAi) is process by which small interfering RNA/DNA chimera triggers the destruction of mRNA for the original gene. The discovery work, design, and application of chimera RNAi has been pioneered by Professor Kaoru Saigo and Dr. Kumiko Ui-Tei at the University of Tokyo. Chimera RNAi has many advantages over the conventional siRNAs. First, it has been demonstrated to have reliable knock-down for over 10,000 human genes. Because the human genome is composed of an intricate, genetic network, chimera RNAi's unique design has successfully obviated the off-target effects including microRNA-based influence. Another advantage of the chimera RNAi technology is its effectiveness at low concentrations (0.5nM to 5nM); only mRNA is destroyed so genomic genes are not affected. Finally, having both the sense and anti-sense strands consisting RNA/DNA chimera, it offers much greater compound stability for streamlining in vitro and in vivo assays and applications while minimizing interferon induction and other adverse reactions.

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. RNAi are guaranteed for 3 months from date of receipt.

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Publications for PINK1 RNAi (H00065018-R03) (0)

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Blogs on PINK1. Showing 1-10 of 11 blog posts - Show all blog posts.

There's an autophagy for that!
By Christina Towers, PhDA critical mechanism that cells use to generate nutrients and fuel metabolism is through a process called autophagy.  This process is complex and involves over 20 different proteins, most of which are highly conserved acro...  Read full blog post.

The role of Parkin and autophagy in retinal pigment epithelial cell (RPE) degradation
The root of Parkinson’s disease (PD) points to a poorly regulated electron transport chain leading to mitochondrial damage, where many proteins need to work cohesively to ensure proper function.  The two key players of this pathway are PINK1,...  Read full blog post.

The identification of dopaminergic neurons using Tyrosine Hydroxylase in Parkinson's research and LRRK2
Tyrosine hydroxylase (TH) is a crucial enzyme involved in the biosynthesis of dopamine, norepinephrine and epinephrine in the brain.  Specifically, TH catalyzes the conversion of l-tyrosine to l-dihydroxyphenylalanine (l-dopa).  The importance of t...  Read full blog post.

Parkin - Role in Mitochondrial Quality Control and Parkinson's Disease
Parkin/PARK2 is a cytosolic enzyme which gets recruited to cellular mitochondria damaged through depolarization, ROS or unfolded proteins accumulation, and exert protective effects by inducing mitophagy (mitochondrial autophagy). Parkin induces mit...  Read full blog post.

PINK1 - performing mitochondrial quality control and protecting against Parkinson’s disease
PTEN-induced putative kinase 1 (PINK1) is a serine/threonine kinase with important functions in mitochondrial quality control. Together with the Parkin protein, PINK1 is able to regulate the selective degradation of damaged mitochondria through aut...  Read full blog post.

PINK1: All work and no fun
The protein PINK1 is a mitochondrial-located serine/threonine kinase (PTK) that maintains organelle function and integrity. It not only protects organelles from cellular stress, but it also uses the selective auto-phagocytosis process for cleaning and...  Read full blog post.

PINK1 and its role in Parkinson's disease
PINK1 (PTEN induced putative kinase 1) is a mitochondrial serine/threonine kinase which maintains mitochondrial function/integrity, provides protection against mitochondrial dysfunction during cellular stress, potentially by phosphorylating mitochondr...  Read full blog post.

PINK1: Promoting Organelle Stability and Preventing Parkinson's disease
PINK1 is a protein serine/threonine kinase (PTK) that protects the organelles from cellular stress and controls selective autophagy to clear damage. Exner, et al. were among the first to report that PINK1 deficiency in humans was linked to autosomal r...  Read full blog post.

PINK1: Promoting Organelle Stability and Preventing Parkinson's disease
PINK1 is a protein serine/threonine kinase (PTK) that protects the organelles from cellular stress and controls selective autophagy to clear damage. Exner, et. al. were among the first to report that PINK1 deficiency in humans was linked to autosomal...  Read full blog post.

PINK1: Linking Mitochondrial Health and Parkinson's disease
Parkinson's disease is a degenerative disorder of the central nervous system, which involves the loss of dopaminergic neurons in the brain and gives rise to tremors, rigidity and slowness of movement. In the majority of cases there is no known cause;...  Read full blog post.

Showing 1-10 of 11 blog posts - Show all blog posts.

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Bioinformatics

Gene Symbol PINK1
Entrez