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Pah-R243Q Mouse
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Pah-R243Q Mouse
Product Name
Pah-R243Q Mouse
Product ID
C001738
Strain Name
C57BL/6NCya-Pahem2(R243Q)/Cya
Backgroud
C57BL/6NCya
Status
When using this mouse strain in a publication, please cite “Pah-R243Q Mouse (Catalog C001738) were purchased from Cyagen.”
Product Type
Age
Genotype
Sex
Quantity
The standard delivery applies for a guaranteed minimum of three heterozygous carriers. Breeding services for homozygous carriers and/or specified sex are available.
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Basic Information
Validation Data
Related Resource
Basic Information
Gene Name
Pah
Gene Alias
--
NCBI ID
Chromosome
Chr 10 (Mouse)
MGI ID
Datasheet
Strain Description
Phenylalanine hydroxylase (PAH) is a member of the biotin-dependent aromatic amino acid hydroxylase protein family encoded by the PAH gene. The main function of PAH is to hydroxylate phenylalanine (Phe) into tyrosine (Tyr), a crucial step in phenylalanine catabolic metabolism. Lack of PAH activity can lead to the autosomal recessive inherited disorder phenylketonuria (PKU), also known as PAH deficiency. PKU is a congenital disease caused by pathogenic variants in the PAH gene and belongs to the group of amino acid metabolic disorders. Patients with PKU excrete large amounts of phenylketones and other metabolites in their urine. In PKU patients, deficiency of the PAH enzyme results in elevated blood phenylalanine (Phe) levels, leading to brain dysfunction. Untreated PKU patients may experience severe and irreversible intellectual disabilities, seizures, behavioral disturbances, microcephaly, epilepsy, psychological symptoms, and generalized hypopigmentation of the skin (including hair and eyes). Approximately 1 in 24,000 individuals is affected by PKU [1-2]. R243Q is a high-frequency mutation site in East Asian/Asian PKU patients. This mutation is located in exon 7 of the PAH gene and results in the amino acid at position 243 changing from arginine (R) to glutamine (Q) [3-4]. In vitro experiments have confirmed that the activity and expression levels of the defective PAH protein based on the R243Q mutation can be modulated, suggesting that this site has the potential to be a therapeutic target for PKU [5].
Pah-R243Q mice are obtained by introducing the R243Q mutation into the mouse Pah gene using gene editing technology. Pah-R243Q mice serve as valuable tools for studying the genetic mechanisms of PKU in humans and for the preclinical evaluation of therapeutic drugs.
Reference
Elhawary NA, AlJahdali IA, Abumansour IS, Elhawary EN, Gaboon N, Dandini M, Madkhali A, Alosaimi W, Alzahrani A, Aljohani F, Melibary EM, Kensara OA. Genetic etiology and clinical challenges of phenylketonuria. Hum Genomics. 2022 Jul 19;16(1):22
MedlinePlus Genetics. PAH gene. U.S. National Library of Medicine. https://medlineplus.gov/genetics/gene/pah/
Chen T, Xu W, Wu D, et al. Mutational and phenotypic spectrumof phenylalaninehydroxylase deficiency in Zhejiang Province, China. Sci Rep. 2018;8(1):17137. Published 2018 Nov 20. doi:10.1038/s41598-018-35373-9. 2.
Zhu T, Ye J, Han L, et al. Variations in genotype-phenotype correlations in phenylalanine hydroxylase deficiency in Chinese Han population. Gene. 2013;529(1):80-87. doi:10.1016/j.gene.2013.07.079.
Pey AL, Desviat LR, Gámez A, Ugarte M, Pérez B. Phenylketonuria: genotype- phenotype correlations based on expression analysis of structural and functional mutations in PAH. Hum Mutat. 2003;21(4):370-378. doi:10.1002/humu.10198.
Strain Strategy
The p.R243Q (CGT to CAA) point mutation was introduced into exon 7 of the mouse Pah gene.

Figure 1. Gene editing strategy of Pah-R243Q mice.
Application Area
Research on the genetic mechanism of phenylketonuria (PKU) and the preclinical evaluation of therapeutic drugs;
Research related to protein metabolism, nervous system, pigmentation, etc.
Validation Data
Related Resource
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