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新生儿遗传性果糖不耐受筛查:英国人群中最常见的突变醛缩酶B等位基因(A149P)的频率。

Neonatal screening for hereditary fructose intolerance: frequency of the most common mutant aldolase B allele (A149P) in the British population.

作者信息

James C L, Rellos P, Ali M, Heeley A F, Cox T M

机构信息

Department of Medicine, University of Cambridge, Addenbrooke's Hospital, UK.

出版信息

J Med Genet. 1996 Oct;33(10):837-41. doi: 10.1136/jmg.33.10.837.

Abstract

Hereditary fructose intolerance (HFI) causes severe and sometimes fatal metabolic disturbances in infants and children but responds to dietary treatment. To determine the practicability of screening newborn infants for HFI, we have investigated the frequency of the most common and widespread mutant allele of aldolase B, A149P, in the neonatal population. The polymerase chain reaction was used to amplify aldolase B exon 5 genomic sequences in DNA present in dried blood specimens preserved on Guthrie cards. The A149P mutation was identified by discriminatory hybridisation to allele specific oligonucleotides and confirmed independently by digestion with the restriction endonuclease BsaHI. Twenty-seven A149P heterozygotes were identified by the molecular analysis of aldolase B genes in blood samples obtained from a random cohort of 2050 subjects born in 1994 and 1995, 1.32 +/- 0.49% (95% confidence level). Although no A149P homozygotes were identified, the data allow the frequency of 1 in 23,000 homozygotes for this allele to be predicted. Our findings have implications for establishing an interventional mass screening programme to identify newborn infants with HFI in the UK.

摘要

遗传性果糖不耐受症(HFI)可导致婴幼儿出现严重且有时甚至致命的代谢紊乱,但通过饮食治疗可得到缓解。为了确定对新生儿进行HFI筛查的可行性,我们研究了醛缩酶B最常见且分布最广的突变等位基因A149P在新生儿群体中的频率。采用聚合酶链反应扩增保存在格思里卡片上的干血标本中DNA的醛缩酶B外显子5基因组序列。通过与等位基因特异性寡核苷酸进行鉴别杂交来鉴定A149P突变,并通过限制性内切酶BsaHI消化进行独立确认。通过对1994年和1995年出生的2050名随机队列受试者的血样进行醛缩酶B基因分子分析,鉴定出27名A149P杂合子,频率为±1.32 0.49%(95%置信水平)。虽然未鉴定出A149P纯合子,但这些数据可预测该等位基因纯合子的频率为1/23000。我们的研究结果对于在英国建立一项干预性群体筛查计划以识别患有HFI的新生儿具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d0af/1050763/78af3fa29426/jmedgene00264-0031-a.jpg

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