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胆酸-CoA 连接酶缺乏症——一种新的胆汁酸代谢先天性错误。

Bile acid-CoA ligase deficiency--a new inborn error of bile acid metabolism.

机构信息

Clinical & Molecular Genetics Unit, UCL Institute of Child Health, London WC1N 1EH, UK.

出版信息

J Inherit Metab Dis. 2012 May;35(3):521-30. doi: 10.1007/s10545-011-9416-3. Epub 2011 Nov 17.

DOI:10.1007/s10545-011-9416-3
PMID:22089923
Abstract

Born at 27 weeks gestation, a child of consanguineous parents of Pakistani origin required prolonged parenteral nutrition. She developed jaundice, with extensive fibrosis and architectural distortion at liver biopsy; jaundice resolved with supportive care. Serum γ-glutamyl transpeptidase values were within normal ranges. The bile acids in her plasma and urine were >85% unconjugated (non-amidated). Two genes encoding bile-acid amidation enzymes were sequenced. No mutations were found in BAAT, encoding bile acid-CoA : aminoacid N-acyl transferase. The patient was homozygous for the missense mutation c.1012C > T in SLC27A5, predicted to alter a highly conserved amino-acid residue (p.H338Y) in bile acid-CoA ligase (BACL). She also was homozygous for the missense mutation c.1772A > G in ABCB11, predicted to alter a highly conserved amino-acid residue (p.N591S) in bile salt export pump (BSEP). BACL is essential for reconjugation of bile acids deconjugated by gut bacteria, and BSEP is essential for hepatocyte-canaliculus export of conjugated bile acids. A female sibling born at term had the same bile-acid phenotype and SLC27A5 genotype, without clinical liver disease. She was heterozygous for the c.1772A > G ABCB11 mutation. This is the first report of a mutation in SLC27A5. The amidation defect may have contributed to cholestatic liver disease in the setting of prematurity, parenteral nutrition, and homozygosity for an ABCB11 mutation.

摘要

患儿为巴基斯坦裔近亲婚配所生,胎龄 27 周,需要长期肠外营养。患儿出现黄疸,肝活检显示广泛纤维化和结构扭曲;经支持治疗后黄疸消退。血清γ-谷氨酰转肽酶值在正常范围内。其血浆和尿液中的胆汁酸 >85%为未结合(非酰胺化)。对编码胆汁酸酰胺化酶的两个基因进行测序。未发现编码胆酸-CoA:氨基酸 N-酰基转移酶的 BAAT 基因中有突变。患者 SLC27A5 基因上 c.1012C>T 错义突变纯合,预测改变胆汁酸-CoA 连接酶(BACL)中高度保守的氨基酸残基(p.H338Y);ABCB11 基因上 c.1772A>G 错义突变纯合,预测改变胆盐输出泵(BSEP)中高度保守的氨基酸残基(p.N591S)。BACL 对于肠道细菌脱结合的胆汁酸重新结合至关重要,BSEP 对于肝细胞胆管胆汁酸的分泌至关重要。足月出生的女性同胞具有相同的胆汁酸表型和 SLC27A5 基因型,但无临床肝脏疾病。她 ABCB11 基因 c.1772A>G 突变杂合。这是 SLC27A5 基因突变的首次报道。结合早产儿、肠外营养和 ABCB11 基因突变的纯合性,酰胺化缺陷可能导致胆汁淤积性肝病。

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