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Home Gene Products Lentiviral Particles (All) h/m MCL1 shRNA Lentivirus
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h/m MCL1 shRNA Lentivirus

h/m MCL1 shRNA Lentivirus

SKU: LSV-0037-1

$595.00 – $1,195.00Price range: $595.00 through $1,195.00

Validated human/mouse MCL1 shRNA lentivirus: High-titer shRNA lentiviral particles specific for human/mouse MCL1 apoptosis regulator, BCL2 family member (MCL1). The shRNA has been validated to meet or exceed 70% MCL1 knockdown efficiency using a specific fluorescence-based method that is more rapid and reliable than qPCR. The shRNA lentivirus is ultra-purified and concentrated to high-titer by PEG precipitation and sucrose gradient centrifugation, and ideal for transducing difficult-to-transfect cells including thawed and/or primary cells. Order a shRNA lentivirus set and receive lentivirus produced from mix of 2 independent shRNAs validated to knockdown the target gene (>70%) plus control lentivirus produced from mix of 2 scrambled shRNA constructs.

Have questions about this product? Need stable cell line instead? Send us a form and we’ll reply the same day: Contact Us 

Categories: Lentiviral Particles (All), Validated shRNA Lentivirus

Available Options:

  • Specifications
  • Additional Information

Specifications

Key Advantages:

  • Same Cost For Custom Lentivirus – You can receive any combination of reporter (GFP/RFP/Luc/None) and selection marker (puromycin/blasticidin) for this product, without additional cost, by contacting us. To view our complete list of shRNA vectors, click here.
  • Superior knockdown – LipExoGen Validated shRNA Lentiviruses are produced using the third generation system and feature novel, optimized shRNA vectors which express a 19-20 bp shRNA, fluorescent (GFP or RFP) or luminescent (luciferase) reporter, and drug-selection marker (puromycin or blasticidin). Taking advantage of a proprietary prediction algorithm developed in-house, validated shRNA constructs are capable of delivering 70% or more knockdown efficiency with less off-target effects compared to longer or mixed-sequence shRNA/siRNAs.
  • Superior validation – All of our pre-made shRNA constructs are validated in-house using a specific fluorescence-based method that is more reliable than traditional qPCR. The validation process leverages bicistronic expression of the target mRNA and fluorescent reporter to confirm the efficacy of the shRNA. As knockdown validation can be readout using basic fluorescence microscopy, this low-cost, streamlined approach allows us to provide a superior-quality product at a price comparable or less than the average competitor.
  • Superior accuracy – Polyclonal shRNA-transduced stable cells can be established within 10 days and used for downstream applications while preserving more properties of the parental cells. In this way, high-efficiency knockdown from our validated shRNA lentiviral particles can be advantageous over sgRNA CRISPR-Cas9 systems which select for single cell clones.
  • Easily identify transduced cells – Validated shRNA constructs contain both fluorescent reporter and drug selection marker, allowing the flexibility to select transduced cells by puromycin/blasticidin or FACS sorting of GFP/RFP. Luciferase reporters are also available for detecting transduced cells in vitro or in vivo using luminescence-based techniques.

Product Data

 

Figure 1. Knockdown validation for MCL1-sh3-GFP-Puro.   HEK293FT cells were co-transfected with human MCL1-P2A-RFP bicistronic expression plasmid (red) and plasmids for the indicated shRNAs (GFP, green). After 24-36 hours, fluorescent images of the living cells were acquired by fluorescence microscopy. GFP represents transfection of the shRNA construct, whereas RFP indicates translation of the target mRNA. Higher knockdown efficiencies may be possible in stably-transfected cells. Sr-sh, scrambled shRNA. MCL1 cDNA featured here is also available upon request: Click here to contact us

 

 

 

 

 

 

 

 

 

 

Figure 2. Knockdown validation for MCL1-sh2-GFP-Puro.   HEK293FT cells were co-transfected with human MCL1-P2A-RFP bicistronic expression plasmid (red) and plasmids for the indicated shRNAs (GFP, green). After 24-36 hours, fluorescent images of the living cells were acquired by fluorescence microscopy. GFP represents transfection of the shRNA construct, whereas RFP indicates translation of the target mRNA. Higher knockdown efficiencies may be possible in stably-transfected cells. Sr-sh, scrambled shRNA. MCL1 cDNA featured here is also available upon request: Click here to contact us

 

 

 

 

 

 

 

 


Details

LSV-0055
MCL1
MCL1 apoptosis regulator, BCL2 family member
NM_021960.5
Human/mouse

 


Recommended Control

Scrambled shRNA Control Lentivirus (mix of two independent shRNAs), Scr-sh-GFP-Puro (LSV-0024-2S)

MCL1 cDNA Lentivirus with P2A-RFP or GFP tag (available upon request): Contact us


Custom Orders

If you require a modification to one of our products (for example, change in reporter or other vector component), please request a custom order. We provide a variety of fast and efficient services for the production of high-quality, custom lentiviral particles on demand, usually for the same or comparable price as the listed item.

Or, send us your cells and we will establish a stable shRNA cell line for you using this product. Learn more.

The cDNA lentivirus corresponding to this product is also available upon request, comparable price.

I want to:

Go to the custom shRNA lentiviral particles request form

View all custom lentiviral particle services

Additional Information

Additional Information

MCL1
MCL1 apoptosis regulator, BCL2 family member
n NM_021960.5
Homo sapiens
Alias TM; EAT; MCL1L; MCL1S; Mcl-1; BCL2L3; MCL1-ES; bcl2-L-3; mcl1/EAT
Annotation Page https://www.ncbi.nlm.nih.gov/gene/4170
Gene IDs HGNC:HGNC:6943 Ensembl:ENSG00000143384 MIM:159552
Entrez Gene Summary “This gene encodes an anti-apoptotic protein, which is a member of the Bcl-2 family. Alternative splicing results in multiple transcript variants. The longest gene product (isoform 1) enhances cell survival by inhibiting apoptosis while the alternatively spliced shorter gene products (isoform 2 and isoform 3) promote apoptosis and are death-inducing. [provided by RefSeq, Oct 2010]”

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