Mouse,Mus musculus,Pcdh15,Protocadherin-15
- Known as:
- Mouse,Mus musculus,Pcdh15,Protocadherin-15
- Catalog number:
- EIAAB30051
- Category:
- -
- Supplier:
- EIAab
- Gene target:
- Mouse Mus musculus Pcdh15 Protocadherin-15
Ask about this productRelated genes to: Mouse,Mus musculus,Pcdh15,Protocadherin-15
- Gene:
- PCDH15 NIH gene
- Name:
- protocadherin related 15
- Previous symbol:
- USH1F, DFNB23
- Synonyms:
- CDHR15
- Chromosome:
- 10q21.1
- Locus Type:
- gene with protein product
- Date approved:
- 2001-02-27
- Date modifiied:
- 2016-06-08
Related products to: Mouse,Mus musculus,Pcdh15,Protocadherin-15
Related articles to: Mouse,Mus musculus,Pcdh15,Protocadherin-15
- Hematological adaptation is critical for oxygen transport at high altitudes. While hemoglobin concentration is well-studied, yak (Bos grunniens) hematology versus lowland cattle remains under-explored. We analyzed blood phenotypes from 1244 plateau yaks and 154 lowland cattle. Yaks exhibited elevated hemoglobin, hematocrit, and lymphocyte counts, but reduced platelet counts and monocyte/neutrophil percentages among other parameters, indicating distinct hypoxia adaptation. Using genome-wide association studies (GWAS) and composite of multiple signals (CMS), we identified 6485 selection-associated single-nucleotide variants (SNVs) linked to 43 hematological traits (average 6.85% variance explained). These included 172 yak-selected genes (YSGs), with SLIT3, FSTL5, and PCDH15 showing top pleiotropic effects (SLIT3 regulates immune function and oxygen transport). Thirty-eight YSGs influenced multiple traits, and six (SLIT3, FSTL5, PCDH15, PRIM2, CDH13, HLA-DQB1) overlap with genes under selection in Tibetan highlanders. Crucially, unlike hemoglobin attenuation in humans and other species, yaks show elevated hemoglobin, suggesting an alternative adaptive strategy. Cross-species analysis revealed 76 YSG orthologues affect 13 human blood traits, indicating highland species are likely to have selected the same set of genes for hypoxia adaptation. Our findings demonstrate polygenic, pleiotropic mechanisms underpinning yak adaptation, providing a genomic framework for high-altitude biology and conservation. - Source: PubMed
Sun GuangmingLiu ZiqiJiang HuiLi XinZhang HuiOuzhuluobu Qi XuebinBasangwangdui Ge SiyuWang YimingZheng WangshanZhu Yanbin - To identify rare and common copy number variants (CNVs) associated with strabismus and amblyopia. - Source: PubMed
Lee Kyoung A ViolaWhitman Mary C - Tip links connect the stereocilia of mechanosensory hair cells in the inner ear and transmit force onto mechanotransduction (MET) channels. Tip links consist of protocadherin 15 (PCDH15) and cadherin 23, which assemble into an extracellular filament approximately 150 nm in length. Rare freeze-etched electron microscopy (EM) images have suggested that tip links could be right-handed double helices in vivo, but direct structural evidence has been lacking. Using cryo-EM we determined the structure of a large part of the extracellular PCDH15 domain. Two PCDH15 molecules form a parallel cis dimer stabilized by several dimerization interfaces, including two strand crossovers and two parallel contacts, yielding a right-handed double helix. Functional studies show that mutations in PCDH15 dimerization-domains impair MET. Our results establish the molecular foundation for how PCDH15 forms a right-handed double helix to enable mechanical sensing. - Source: PubMed
Publication date: 2026/06/09
Liang XiaopingPathak RoshanQiu XufengDillard LucasTwomey Edward CMüller Ulrich
- Source: PubMed
- Source: PubMed