Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) Antibody

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Selleck Chemicals

SKU:F0007-20UL

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About the Target

Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) is a target of interest in many antibody-based workflows. Mitogen-activated protein kinases (MAPKs) represent a highly conserved family of serine/threonine protein kinases implicated in numerous cellular processes such as cell proliferation, differentiation, migration, and apoptosis. Among these, the p44/42 MAPK (Erk1/2) signaling pathway is triggered by a wide array of extracellular cues, including mitogens, growth factors, and cytokines. Depending on the literature source, Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) may also be discussed as Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) and Phospho p44 MAPK (Thr 202).

Reported cellular context includes cell junction, cytoplasm, membrane, and nucleus, which can matter when signal is compared across treatments or changing cell states. Following Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) across matched perturbations can help separate abundance effects from shifts in localization, complex assembly, or pathway state. In practice, this target is often considered at the family or isoform-group level, so experimental interpretation benefits from matched controls and clear comparison logic.

Research Context

Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) is commonly interpreted in the context of cancer and cell signaling research, and readouts are often stronger when a study separates expression changes from compartment-level redistribution. When reported signal spans cell junction, cytoplasm, and membrane, a defined reference condition can make comparisons more interpretable across perturbations, passages, or replicate sets.

Consider these angles when interpreting target-level changes:

  • apparent redistribution between cell junction, cytoplasm, and membrane across matched conditions
  • changes associated with proliferative state, oncogenic signaling, or treatment response
  • signal-dependent shifts after ligand, inhibitor, or growth-factor perturbation
  • differences between total target abundance and site-specific regulation when modified forms are compared

Variant Considerations

If your project spans exploratory questions, the regular version offers a balanced option for establishing baseline signal behavior for Phospho-p44/42 MAPK (Erk1/2) (T202/Y204). This can help when protocols evolve over time and the goal is to compare experiments using a stable reference workflow.

Standardize sampling time, control choice, and downstream analysis thresholds so apparent differences in Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) reflect biology rather than handling. When interpreting Phospho-p44/42 MAPK (Erk1/2) (T202/Y204), it is often useful to decide early whether the main question is overall abundance, compartmental enrichment, or context-dependent redistribution.

For multi-run studies, a shared reference condition can keep Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) trends easier to compare across datasets. That kind of consistency is especially helpful when follow-up work expands to new perturbations, model systems, or longitudinal collections.

Targets:
MAPK1 • MAPK3
Research Area:
Cancer • Cell Signaling
Application:
FCM • IF • IHC • IP • WB
Reactivity:
Bovine • Dog • Drosophila Melanogaster • Hamster • Human • Mink • Monkey • Mouse • Pig • Rat • Saccharomyces Cerevisiae • Zebrafish
Specificity:
Phospho-p44/42 MAPK (Erk1/2) (T202/Y204) Antibody [D13L13] recognizes endogenous levels of total Phospho-p44/42 MAPK (Erk1/2) (Thr202/Tyr204) protein.
Host:
Rabbit
Clonality:
Monoclonal
Clone:
D13L13
UniProt:
P27361P28482
Storage Buffer:
PBS, pH 7.2+50% Glycerol+0.05% BSA+0.01% NaN₃
Storage Temperature:
-20°C

For Research Use Only. Not intended for diagnostic or therapeutic use.
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The purchase of this product does not grant any license for commercial use, manufacturing, or clinical applications. The user is responsible for ensuring compliance with applicable laws and third-party rights.