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huELP1-c.2204+6T>C Mouse
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huELP1-c.2204+6T>C Mouse
제품명
huELP1-c.2204+6T>C Mouse
제품 ID
C001960
품종 계통
C57BL/6NCya-Elp1em1(hELP1*c.2204+6T>C)/Cya
Backgroud
C57BL/6NCya
상태
이 마우스 계통을 논문에서 사용할 경우, “huELP1-c.2204+6T>C Mouse (카탈로그 번호 C001960)은 Cyagen에서 구입하였습니다.”라고 명시해 주시기 바랍니다.
HUGO-GT Humanized Models
Small Nucleic Acids
구매 가능한 제품 종류
연령
Genotype
성별
수량
표준 제공 조건은 최소 3마리의 이형접합(heterozygous) 보균자를 보장합니다. 동형접합(homozygous) 보균자 및/또는 특정 성별에 대한 브리딩 서비스도 제공됩니다.
가격 문의
HUGO-GT Humanized Models
Small Nucleic Acids
기본 정보
관련 자료
기본 정보
유전자명
유전자 별칭
FD, DYS, IKAP, IKI3, TOT1, IKBKAP
NCBI ID
염색체
Chr 9
MGI ID
Datasheet
품종 계통 설명
Familial dysautonomia (FD), also known as Riley-Day syndrome or hereditary sensory and autonomic neuropathy type III (HSAN III), is a rare autosomal recessive neurological disorder. The disease is primarily caused by developmental and functional abnormalities of the autonomic and sensory nervous systems. Patients with FD exhibit symptoms associated with autonomic dysfunction, including excessive sweating, intermittent hypertension, drooling, abnormal glandular secretion, difficulty swallowing, urinary and fecal dysfunction, breathing difficulties, and periodic vomiting, along with physical developmental abnormalities such as developmental delay, intellectual disability, and osteoporosis. FD is mainly associated with defects in the development of peripheral sensory and autonomic neurons, with biallelic mutations in the elongator complex protein 1 (ELP1) gene, also known as IKBKAP, representing the major genetic cause of this disease. ELP1 is a core subunit of the Elongator complex, which is essential for various tRNA modification processes and plays an important role in neuronal development, survival, and functional maintenance. Loss of ELP1 function results in reduced or abnormal ELP1 protein levels, leading to impaired neuronal function and neuronal damage, ultimately contributing to the development of familial dysautonomia (FD) [1]. The c.2204+6T>C variant is the most common pathogenic splice-site mutation associated with familial dysautonomia (FD) and represents one of the most prevalent founder mutations of this disease. Approximately 99% of FD patients in the Ashkenazi Jewish population carry this specific splice-site mutation [2].
The huELP1-c.2204+6T>C mouse model is a humanized mutation model generated via gene-editing technology, in which the sequences from upstream of exon 19 to downstream of exon 22 of the mouse Elp1 gene were replaced with the corresponding human ELP1 gene sequences, along with the introduction of a c.2204+6T>C mutation in intron 20 of the human ELP1 gene. This strain is homozygous lethal. This model is suitable for investigating the pathogenic mechanisms of the human ELP1 c.2204+6T>C mutation and familial dysautonomia (FD), as well as for the screening, development, and efficacy evaluation of targeted therapies.
Reference
Carmel I, Tal S, Vig I, Ast G. Comparative analysis detects dependencies among the 5' splice-site positions. RNA. 2004 May;10(5):828-40.
Cheney AM, Costello SM, Pinkham NV, Waldum A, Broadaway SC, Cotrina-Vidal M, Mergy M, Tripet B, Kominsky DJ, Grifka-Walk HM, Kaufmann H, Norcliffe-Kaufmann L, Peach JT, Bothner B, Lefcort F, Copié V, Walk ST. Gut microbiome dysbiosis drives metabolic dysfunction in Familial dysautonomia. Nat Commun. 2023 Jan 13;14(1):218.
변형 전략
The sequences from upstream of exon 19 to downstream of exon 22 of the mouse Elp1 gene were replaced with the corresponding sequences of the human ELP1 gene, introducing a c.2204+6T>C mutation in intron 20 of the human ELP1 gene.

Figure 1. Gene editing strategy of huELP1-c.2204+6T>C mice.
응용 분야
Research on the disease mechanisms of familial dysautonomia (FD);
Screening, development, and efficacy evaluation of FD-related targeted therapies.
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