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Bmp15 Knockout mouse models

Oocyte-restricted expression distinguishes Bmp15, the mouse ortholog of human BMP15, whose product is a TGF-beta superfamily ligand secreted by growing oocytes, largely as a covalent heterodimer with GDF9 known as cumulin. That heterodimer signals to adjacent granulosa cells through BMPR1B and BMPR2 with SMAD1, SMAD5, and SMAD8 phosphorylation, coordinating cumulus expansion, glycolytic support of the oocyte, and suppression of premature luteinization. Human heterozygous variants cause primary ovarian insufficiency, and ovine FecX alleles produce dose-dependent hyperprolificacy then sterility, illustrating a steep genotype to ovulation-rate relationship. Mouse nulls are viable with only modest subfertility, so a simple knockout is a weak model; instead, patient-specific missense knockins that impair proprotein processing or heterodimer formation better recapitulate human disease logic. Because Gdf9 partners with and partially covers this ligand, compound or allelic-series designs are advisable. Humanized knockins are the right platform for recombinant cumulin or in vitro maturation reagent testing against defined ovulation endpoints.

Whole body loss of Bmp15 gives the clearest readout when the question is whether the gene is required at all. Follow up tissue work can still move to a conditional allele if lethality or compensation appears.

Order catalog model

What Bmp15 Knockout mouse models are available?

ingenious targeting laboratory offers 1 distinct Bmp15 knockout catalog mouse model. 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

1 Ready Catalog Line

Allele Class Options

Knockout

Quality Control Standards

Documented Germline Transmission

Catalog table

ModelTypeCategoryAvailabilityCatalog #Action
Bmp15-KOKnockoutKO/CKO miceliveKO 240454Inquire

Why this approach

A conventional knockout answers whether the gene is required broadly. When your target tissue is the organ of interest, a global null can still be informative if viability is acceptable and you want the simplest genotype. If the null is harsh, a floxed allele with a regional Cre is the safer long term platform.

Pricing and quotes

The Bmp15 Knockout lines listed above are catalog models. Send us the catalog number and our team confirms current availability, pricing, and whether the line ships cryopreserved or live.

If your study needs a Bmp15 allele configuration that is not listed above, our scientific team designs and generates it. Model generation quotes return in about twenty four hours with project milestones and pricing.

Order a catalog Bmp15 modelRequest a model generation quote

FAQ

What Bmp15 Knockout mouse models are available?

When Bmp15 Knockout lines are in catalog, we ship from inventory. If your configuration is not listed, we design the allele to order. Common paths include conditional knockout, constitutive knockout, humanized, knockin, and transgenic options, with documented germline transmission and United States QC.

Is Bmp15 knockout embryonic lethal in mice?

It depends on background and allele design. Some Bmp15 germline knockouts are viable. Others need conditional alleles or mixed backgrounds. We review publications and our own experience, then recommend floxed versus null before you commit.

Which Cre driver is best for experiments?

Driver choice depends on onset timing, recombination efficiency, and known leak. We map your organ and cell type to a short list of proven Cre lines, then talk through reporter crosses and controls. We favor drivers with strong community validation for your tissue.

Do you ship live Bmp15 animals?

When catalog lines are live, we ship with health certificates and QC documentation. If your exact combo is not listed, we quote a generation project with cryo or live dispatch depending on cohort timing and geography.

How do I request a quote for Bmp15?

Use the catalog inquire buttons or the request quote form. Include your allele goal, Cre plan if any, strain background, and cohort size. A PhD led team responds with pricing, milestones, and the fastest path to experimental animals.

Related models and routes

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