TY - JOUR
T1 - Mechanisms of inherited deficiencies of multiple UDP- glucuronosyltransferase isoforms in two patients with Crigler-Najjar syndrome, type I
AU - Bosma, Piter J.
AU - Chowdhury, Jayanta Roy
AU - Huang, Tian Jun
AU - Lahiri, Pulak
AU - Oude Elferink, Ronald P J
AU - Van Es, Helmuth H G
AU - Lederstein, Mitchell
AU - Whitington, Peter F.
AU - Jansen, Peter L M
AU - Chowdhury, Namita Roy
PY - 1992
Y1 - 1992
N2 - Crigler-Najjar syndrome, type I (CN-I) is a potentially lethal disorder characterized by severe unconjugated hyperbilirubinemia resulting from a recessively inherited deficiency of hepatic UDP-glucuronosyltransferase (UGT) activity toward bilirubin (B-UGT). Two forms of B-UGT exist in human liver. mRNAs for these two forms and that for another isoform with activity toward simple phenols (P-UGT) have unique 5' regions, but their 3' regions are identical. The three mRNA species are derived from a single locus; the unique 5' regions are encoded by single unique exons and the identical 3' regions consist of four consecutive exons that are shared by all three isoforms. In this paper, we determined genetic lesions in two CN-I patients with deficiency of hepatic B-UGT and P-UGT activities. In one patient, there was a C → T substitution in exon 4 (common region) predicting the substitution of a serine residue with a phenylalanine residue; this mutation was present in the identical region of B-UGT and P-UGT mRNAs. In the other patient, a C → T substitution in exon 2 (common region) of the B-UGT/P-UGT locus resulted in a premature stop codon. This exon (132 nt) was absent in hepatic B-UGT and P- UGT mRNAs of this patient due to exon skipping during pre-mRNA processing. Sequence abnormality of three distinct mRNA species explains the abnormality of multiple UGT isoforms in these patients. Presence of identical abnormalities in the common regions of the three mRNAs is consistent with the finding that the common 3' regions of the two B-UGT mRNAs and the P-UGT mRNA are encoded by four shared exons.
AB - Crigler-Najjar syndrome, type I (CN-I) is a potentially lethal disorder characterized by severe unconjugated hyperbilirubinemia resulting from a recessively inherited deficiency of hepatic UDP-glucuronosyltransferase (UGT) activity toward bilirubin (B-UGT). Two forms of B-UGT exist in human liver. mRNAs for these two forms and that for another isoform with activity toward simple phenols (P-UGT) have unique 5' regions, but their 3' regions are identical. The three mRNA species are derived from a single locus; the unique 5' regions are encoded by single unique exons and the identical 3' regions consist of four consecutive exons that are shared by all three isoforms. In this paper, we determined genetic lesions in two CN-I patients with deficiency of hepatic B-UGT and P-UGT activities. In one patient, there was a C → T substitution in exon 4 (common region) predicting the substitution of a serine residue with a phenylalanine residue; this mutation was present in the identical region of B-UGT and P-UGT mRNAs. In the other patient, a C → T substitution in exon 2 (common region) of the B-UGT/P-UGT locus resulted in a premature stop codon. This exon (132 nt) was absent in hepatic B-UGT and P- UGT mRNAs of this patient due to exon skipping during pre-mRNA processing. Sequence abnormality of three distinct mRNA species explains the abnormality of multiple UGT isoforms in these patients. Presence of identical abnormalities in the common regions of the three mRNAs is consistent with the finding that the common 3' regions of the two B-UGT mRNAs and the P-UGT mRNA are encoded by four shared exons.
KW - 4-nitrophenol
KW - Crigler-Najjar syndrome
KW - UDP-glucuronosyltransferase
KW - bilirubin
KW - exon skipping
KW - multiple isoform deficiency
KW - sequence abnormality
KW - type I
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U2 - 10.1096/fasebj.6.10.1634050
DO - 10.1096/fasebj.6.10.1634050
M3 - Article
C2 - 1634050
AN - SCOPUS:0026668559
SN - 0892-6638
VL - 6
SP - 2859
EP - 2863
JO - FASEB Journal
JF - FASEB Journal
IS - 10
ER -