Products

Ftsj3 (untagged ORF) - Rat FtsJ homolog 3 (E. coli) (Ftsj3), (10 ug)

Type Rat Untagged Clone
Tag Tag Free
Vector pCMV6-Entry

qPCR primer pairs and template standards against Homo sapiens gene FTSJ3

Application Plasmid of exact quantity for transcript copy number calculation

FTSJ3 - Human, 4 unique 29mer shRNA constructs in retroviral untagged vector, 5µg of each construct provided

Format Retroviral plasmids
Vector pRS

FTSJ3 - Human, 4 unique 29mer shRNA constructs in lentiviral GFP vector, 5µg of each construct provided

Format Lentiviral plasmids
Vector pGFP-C-shLenti

Ftsj3 - Mouse, 4 unique 29mer shRNA constructs in retroviral untagged vector, 5µg of each construct provided

Format Retroviral plasmids
Vector pRS

Ftsj3 - Mouse, 4 unique 29mer shRNA constructs in lentiviral GFP vector, 5µg of each construct provided

Format Lentiviral plasmids
Vector pGFP-C-shLenti

Ftsj3 - Rat, 4 unique 29mer shRNA constructs in retroviral untagged vector, 5µg of each construct provided

Format Retroviral plasmids
Vector pRS

Ftsj3 - Rat, 4 unique 29mer shRNA constructs in lentiviral GFP vector, 5µg of each construct provided

Format Lentiviral plasmids
Vector pGFP-C-shLenti

3' UTR clone of FtsJ homolog 3 (E. coli) (FTSJ3) for miRNA target validation

Vector pMirTarget
Species Human
Transfection Reporter RFP
Assay Reporter Luciferase

qSTAR qPCR primer pairs against Homo sapiens gene FTSJ3

qSTAR qPCR primer pairs against Mus musculus gene Ftsj3

Ftsj3 (Mouse) - 3 unique 27mer siRNA duplexes - 2 nmol each

Purity HPLC purified
Number of Transfections Approximately 330 transfections/2nmol in 24-well plate under optimized conditions (final conc. 10 nM).

Ftsj3 (Rat) - 3 unique 27mer siRNA duplexes - 2 nmol each

Purity HPLC purified
Number of Transfections Approximately 330 transfections/2nmol in 24-well plate under optimized conditions (final conc. 10 nM).

FTSJ3 (Human) - 3 unique 27mer siRNA duplexes - 2 nmol each

Purity HPLC purified
Number of Transfections Approximately 330 transfections/2nmol in 24-well plate under optimized conditions (final conc. 10 nM).