Conventional / global / constitutive KO
We build the exact model your study needs.
Designed and delivered by ingenious targeting laboratory. Quote in 24 hours.
Browse 3 Mlkl mouse models including conditional knockout, knockin, knockout variants — in stock and ready to ship from ingenious targeting laboratory. Available as Mlkl conditional knockout mouse, Mlkl knockin mouse, Mlkl knockout mouse. Request a quote within 24 hours.
Mlkl encodes mixed lineage kinase domain like protein, the mouse ortholog of human MLKL and the terminal executioner of necroptosis, built from an N-terminal four helix bundle killer domain, a brace region, and a catalytically dead pseudokinase domain that serves as a molecular latch. RIPK3 phosphorylates the activation loop at Ser345 in mouse, releasing the bundle to oligomerize, bind phosphatidylinositol phosphates, and permeabilize the plasma membrane, and the equivalent human activation sites and conformational requirements differ enough that murine and human proteins are not interchangeable for inhibitor testing. Nulls are viable and fertile and rescue the embryonic lethality of Casp8 or Fadd deletion, whereas phosphomimetic constitutively active knockins are lethal, so inducible expression is mandatory for gain-of-function work. Because species divergence is the central obstacle, humanized MLKL knockins are the informative allele for translational pharmacology, while conditional nulls with tissue restricted Cre lines partition necroptosis in ischemia, colitis, and kidney injury.
ingenious targeting laboratory offers 3 distinct Mlkl (MLKL) catalog mouse models, featuring conditional knockout, standard knockout, and knockin. Researchers can order pre-developed catalog lines or request a custom mouse model, including humanized, knockin, and transgenic variations with verified germline transmission.
| Model Availability | Allele Class Options |
|---|---|
| 3 Ready Catalog Lines | Conditional Knockout (cKO) |
| Custom Model Generation | Constitutive Knockout (KO) |
| Advanced Modifications | Humanized, Knockin, Transgenic |
Knockout
Conditional knockout
Knockin
Humanized
Transgenic / overexpression
Prefer the order form? Order. Need an allele that is not listed? Request a quote.
Knockout, conditional, knockin, humanized, and related paths for Mlkl (human MLKL). Catalog lines ship when inventory exists. Everything else is a generation quote.
Specify tissue or Cre driver on quote
Convertible floxed allele pathway
Multi allele / compound knockout project
BAC scale deletion or targeting
LSL or conditional expression knockin
Domain or partial humanization scope
Checkpoint IO humanization when gene is a checkpoint target
Multi humanized / combination IO project
BAC transgenic or large fragment insert
Tamoxifen or dox inducible Cre
Dual recombinase breeding scheme
Flp or FRT derivative allele pairing
Catalog reporter lines not tied to a single gene allele
Specify rat on quote
Specify rabbit on quote
Background substrain on quote
Background strain on quote
3 Mlkl lines with QC documentation and technical support. Mlkl floxed mice use loxP flanked alleles for Cre dependent tissue specific knockout.
We have 3 Mlkl models in stock — including Conditional Knockout, Knockin, Knockout types. In stock and ready to ship this week. All models come with full QC documentation, health certificates, and dedicated technical support.
Best pricing in the industry. Get a quote in 24 hours. Our team of PhD scientists is available to help you select the right model for your research.
Order catalog modelA Mlkl knockout mouse has the Mlkl gene permanently inactivated, enabling loss of function studies. A Mlkl conditional knockout (floxed) mouse carries loxP sites flanking a critical exon of Mlkl, allowing Cre recombinase dependent deletion in specific tissues or at specific timepoints. Mlkl knockin models carry a precisely inserted sequence at the Mlkl locus, useful for reporter, tag, or humanization studies.
Jump to catalog backed pages for Mlkl organized by modification type. Each URL is indexable and matches common search patterns.