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Pyrosequencing assays for your targets of interest

Configure and order with our user-friendly design tools

PYROSEQUENCING ASSAY CUSTOM DESIGNERS

Leverage our Extensive Database of Predesigned CpG Assays or Create any Custom Assay

Ready-to-use Pyrosequencing assays for validating methylation array targets or for analyzing any DNA sequence
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Create Custom Products That Covers Your Specific Research Needs

Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.

Create Custom Products That Covers Your Specific Research Needs

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Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.

Receive Analysis and Details About Covering and Performance

Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.
picture

Receive Analysis and Details About Covering and Performance

picture
Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.
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Manage All Custom Products and Analysis From One Place

Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.

Manage All Custom Products and Analysis From One Place

picture
Take advantage of all upcoming events and our extensive collection of live and on-demand webinars to stay on top of the latest breakthroughs. Explore the latest applications, products and developments in your application area. With relevant product and content recommendations, My QIAGEN simplifies your daily lab life.

FAQ

Don't have your own data at hand? Browse our library of sample files that you can use to try out the analysis pipeline.
What third-party library prep kits can I use?
he RNA-seq Analysis Portal now also supports analysis of data generated from most commonly used library prep kits.
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Another RAP important Q&A
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SEO Description

Apoptosis is a coordinated, energy-dependent process that involves the activation of a group of cysteine proteases called caspases and a cascade of events that link the initiating stimuli to programmed cell death. Caspases in apoptosis are broadly divided into initiators (caspases 2, 8, 9 and 10) and executioners (caspases 3, 6 and 7). The two main pathways of apoptosis are the intrinsic and extrinsic pathways. Each pathway requires specific triggers to initiate a cascade of molecular events that converge at the stage of caspase 3 activation. The activation of caspase 3 in turn triggers an execution pathway resulting in characteristic cytomorphological features including cell shrinkage, membrane blebbing, chromatin condensation and DNA fragmentation.

The intrinsic signaling pathways that initiate apoptosis involve non-receptor-mediated intracellular signals (e.g. DNA damage, radiation) that cause changes in the inner mitochondrial membrane. The end result is a change in mitochondrial transmembrane potential and release of two main groups of pro-apoptotic proteins from the intermembrane space into the cytosol. The first group consists of cytochrome c (CYTC), SMAC/DIABLO, and the serine protease high temperature requirement protein A2 (HTRA2/OMI). These proteins activate the caspase-dependent mitochondrial pathway. CYTC binds and activates apoptotic peptidase activating factor 1(APAF-1) as well as procaspase-9, forming an apoptosome leading to caspase-9 activation. SMAC/DIABLO and HTRA2/OMI promote apoptosis by inhibiting IAP (inhibitors of apoptosi