Products for Research Use Only

Human KIAA0101 protein

CAT: 0013-GTR18888149-01Size: 50 µgDry Ice: NoHazardous: No
Product image 1
1 / 1
CAT#:0013-GTR18888149-01Size:50 µg
Selected
24/48H Stock Items & 2 to 6 Weeks non Stock Items.
Quick Request Actions
Description
Recombinant human KIAA0101 protein
Product Name Alternative
HCV NS5A transactivated protein 9, HCV NS5A-transactivated protein 9, Hepatitis C virus NS5A transactivated protein 9, Hepatitis C virus NS5A-transactivated protein 9, KIAA0101, L5, NS5 ATP9, NS5ATP9, OEATC, OEATC 1, OEATC-1, OEATC1, Overexpressed in anaplastic thyroid carcinoma 1, p15 (PAF), p15PAF, PAF, PAF_HUMAN, PCNA associated factor, PCNA-associated factor
UniProt
Q15004
Expression Region
1-111
Reactivity
Human
Tag
N-terminal His Tag or N-terminal His-IF2DI Tag, determined during production process
Source
E.Coli
Field of Research
Epigenetics & Chromatin
Purity
Greater than 95% as determined by SDS-PAGE
Molecular Weight
12.1 kDa
Storage Conditions
-20°C for 12 months as lyophilized;2-8°C for 1 month under sterile conditions after reconstitution
Notes
For research use only.
Applications Notes
Centrifuge the vial at 10,000 rpm for 1 minute, reconstitute at 200 μg/ml in sterile distilled water by gentle pipetting 2-3 times, don’t vortex
Tested Applications
ELISA, WB
Preservative
Lyophilized from a 0.2 μm filtered solution in 10 mM Hepes, 500 mM NaCl with 5% trehalose, pH 7.4

UniProtKB · Q15004

PCNA-associated factor

PAF15_HUMAN · Homo sapiens

View on UniProt ↗
Primary accession
Q15004
Review status
UniProtKB reviewed (Swiss-Prot)
Gene
PCLAF
Protein existence
1: Evidence at protein level
Organism
Homo sapiens (Human)
Taxonomy ID
9606
Alternative names
—
EC number
—
Processing
—
Secondary accessions
A6NNU5, A8K3Y3, G9G694, G9G696
Protein keywords

Technical term

3D-structureProteomics identificationReference proteome

PTM

AcetylationIsopeptide bondPhosphoproteinUbl conjugation

Coding sequence diversity

Alternative splicing

Cellular component

CytoplasmNucleus

Biological process

DNA damageDNA repair