Recombinant Bovine cAMP-dependent protein kinase type I-alpha regulatory subunit (PRKAR1A)

Product Details

Purity
>85% (SDS-PAGE)
Target Names
PRKAR1A
Uniprot NO.
Species
Bos taurus (Bovine)
Source
Yeast
Expression Region
1-380
Target Protein Sequence
MASGTTASEE ERSLRECELY VQKHNIQALL KDSIVQLCTA RPERPMAFLR EYFEKLEKEE AKQIQNLQKA GSRADSREDE ISPPPPNPVV KGRRRRGAIS AEVYTEEDAA SYVRKVIPKD YKTMAALAKA IEKNVLFSHL DDNERSDIFD AMFPVSFIAG ETVIQQGDEG DNFYVIDQGE MDVYVNNEWA TSVGEGGSFG ELALIYGTPR AATVKAKTNV KLWGIDRDSY RRILMGSTLR KRKMYEEFLS KVSILESLDK WERLTVADAL EPVQFEDGQK IVVQGEPGDE FFIILEGSAA VLQRRSENEE FVEVGRLGPS DYFGEIALLM NRPRAATVVA RGPLKCVKLD RPRFERVLGP CSDILKRNIQ QYNSFVSLSV
Note: The complete sequence may include tag sequence, target protein sequence, linker sequence and extra sequence that is translated with the protein sequence for the purpose(s) of secretion, stability, solubility, etc.
If the exact amino acid sequence of this recombinant protein is critical to your application, please explicitly request the full and complete sequence of this protein before ordering.
Protein Length
Full length protein
Tag Info
N-terminal His-tagged/Tag-Free
The tag type will be determined during production process. If you have specified tag type, please tell us and we will develop the specified tag preferentially.
Storage
Store at -20°C, for extended storage, conserve at -20°C or -80°C.
Shelf Life
The shelf life is related to many factors, storage state, buffer ingredients, storage temperature and the stability of the protein itself.
Generally, the shelf life of liquid form is 6 months at -20°C/-80°C. The shelf life of lyophilized form is 12 months at -20°C/-80°C.
Notes
Repeated freezing and thawing is not recommended. Store working aliquots at 4°C for up to one week.

Customer Reviews and Q&A

 Customer Reviews

Target Background

Function(From Uniprot)
Regulatory subunit of the cAMP-dependent protein kinases involved in cAMP signaling in cells.
Gene References into Functions
  1. Data suggest that enzyme activation by cAMP involves highly stable conformation of Prkar1a as it binds to Prkaca; glycine residue, G235, appears to function as hinge in B/C helix conserved in Prkar1a; this "Flipback" conformation plays role in cAMP association to A domain of Prkar1a. (Prkar1a = cyclic AMP-dependent protein kinase RIalpha subunit; Prkaca = cyclic AMP-dependent protein kinase catalytic subunit) PMID:28661131
  2. Data suggest PRKAR1A contains two structurally homologous cAMP-binding domains that exhibit marked differences in dynamic profiles in activation/inhibition of Prkaca; conservation of structure does not necessarily imply conservation of dynamics. PMID:26618408
  3. Thermodynamic analysis of protein kinase A (PKA) Ialpha activation was performed using Quantum 3.3.0 docking software and a Gaussian 03W quantum mechanical computational package. PMID:20367611
  4. Results describe the structures of the protein kinase A RIalpha subunit D/D domain alone and in complex with D-AKAP2. PMID:20159461
  5. Data show that RSK1 regulates PKAc activity in a cAMP-independent manner, and PKARIalpha by associating with RSK1 regulates its activation and its biological functions. PMID:20048145
  6. angle X-ray scattering studies indicate RIalpha, RIIalpha, and RIIbeta homodimers differ markedly in overall shape despite extensive sequence homology and similar molecular masses;cAMP binding does not cause large conformational changes(Prkar1a, Prkar2a) PMID:15046986
  7. the PKA RIalpha subunit dynamic C helix mediates isoform-specific domain reorganization upon C subunit binding PMID:16109722

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Subcellular Location
Cell membrane.
Protein Families
CAMP-dependent kinase regulatory chain family
Tissue Specificity
Four types of regulatory chains are found: I-alpha, I-beta, II-alpha, and II-beta. Their expression varies among tissues and is in some cases constitutive and in others inducible.
Database Links
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