SMPDL3A Protein, Human (HEK293, His)
Based on 1 Customer Validation
SMPDL3A exhibits in vitro nucleotide phosphodiesterase activity, specifically toward ATP and p-nitrophenyl-TMP, less activity toward nucleoside diphosphates, and no activity toward nucleoside monophosphates. Notably, it showed in vitro activity with CDP-choline and CDP-ethanolamine, producing specific products. SMPDL3A Protein, Human (HEK293, His) is the recombinant human-derived SMPDL3A protein, expressed by HEK293 , with C-6*His labeled tag.
- Species: Human
- Source: HEK293
-
Storage:Stored at -20°C for 2 years from date of receipt. After reconstitution, it is stable at 4°C for 1 week or -20°C for longer (with carrier protein). It is recommended to freeze aliquots at -20°C or -80°C for extended storage.
Biological Activity
Description
SMPDL3A exhibits in vitro nucleotide phosphodiesterase activity, specifically toward ATP and p-nitrophenyl-TMP, less activity toward nucleoside diphosphates, and no activity toward nucleoside monophosphates. Notably, it showed in vitro activity with CDP-choline and CDP-ethanolamine, producing specific products. SMPDL3A Protein, Human (HEK293, His) is the recombinant human-derived SMPDL3A protein, expressed by HEK293 , with C-6*His labeled tag.
Background
SMPDL3A exhibits in vitro nucleotide phosphodiesterase activity, particularly with nucleoside triphosphates such as ATP, as well as p-nitrophenyl-TMP. While it displays lower activity with nucleoside diphosphates, no activity is observed with nucleoside monophosphates. Notably, SMPDL3A demonstrates in vitro activity with CDP-choline, producing CMP and phosphocholine, as well as with CDP-ethanolamine. However, it does not possess sphingomyelin phosphodiesterase activity. These enzymatic characteristics highlight the substrate specificity and potential physiological relevance of SMPDL3A in nucleotide phosphodiester hydrolysis.
MCE Validation Data
-
Purity - SDS-PAGE
Purity - SDS-PAGE
Technical Parameters
-
Species Human
-
Source HEK293
-
Tag C-10*His
-
Accession
Q92484-1 (L23-Y453)
-
Molecular Construction
-
N-term
-
SMPDL3A (L23-Y453)
Accession # Q92484-1 -
10*His
-
C-term
-
-
Protein Length
Full Length of Isoform-1
-
Synonyms
SMPDL3A; 2',3'-CGAMP Phosphodiesterase SMPDL3A; Sphingomyelin Phosphodiesterase Acid Like 3A; ASM-Like Phosphodiesterase 3a; Acid Sphingomyelinase-Like Phosphodiesterase 3a; FLJ20177; YR36GH4.1; Sphingomyelin Phosphodiesterase Acid-Like 3A; ASML3a; 061001
-
AA Sequence
LPVAPAGGRNPPPAIGQFWHVTDLHLDPTYHITDDHTKVCASSKGANASNPGPFGDVLCDSPYQLILSAFDFIKNSGQEASFMIWTGDSPPHVPVPELSTDTVINVITNMTTTIQSLFPNLQVFPALGNHDYWPQDQLPVVTSKVYNAVANLWKPWLDEEAISTLRKGGFYSQKVTTNPNLRIISLNTNLYYGPNIMTLNKTDPANQFEWLESTLNNSQQNKEKVYIIAHVPVGYLPSSQNITAMREYYNEKLIDIFQKYSDVIAGQFYGHTHRDSIMVLSDKKGSPVNSLFVAPAVTPVKSVLEKQTNNPGIRLFQYDPRDYKLLDMLQYYLNLTEANLKGESIWKLEYILTQTYDIEDLQPESLYGLAKQFTILDSKQFIKYYNYFFVSYDSSVTCDKTCKAFQICAIMNLDNISYADCLKQLYIKHNY
-
Predicted Molecular Mass
50.3 kDa
-
Molecular Weight
Approximately 55-75 kDa, based on SDS-PAGE under reducing conditions, due to the glycosylation.
-
Glycosylation
Yes
-
Purity
≥ 95%, as determined by reducing SDS-PAGE.
Product Properties
Lyophilized powder
Lyophilized from a 0.22 μm filtered solution of PBS, pH 7.4, 8% trehalose.
<1 EU/μg, determined by LAL method.
It is not recommended to reconstitute to a concentration less than 100 μg/mL in ddH2O. For long term storage it is recommended to add a carrier protein (0.1% BSA, 5% HSA, 10% FBS or 5% Trehalose).
Stored at -20°C for 2 years from date of receipt. After reconstitution, it is stable at 4°C for 1 week or -20°C for longer (with carrier protein). It is recommended to freeze aliquots at -20°C or -80°C for extended storage.
Room temperature in continental US; may vary elsewhere.
Documentation
-
Data Sheet (237 KB)
-
SDS (251 KB)
- English - EN (251 KB)
- Français - FR (251 KB)
- Deutsch - DE (251 KB)
- Norwegian - NO (251 KB)
- Español - ES (251 KB)
- Swedish - SV (251 KB)
- Italian - IT (251 KB)
- Korean - KR (251 KB)
- Portuguese - PT (251 KB)
-
Handling Instructions (2659 KB)
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)