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A Novel Complex Mutation in the LDL Receptor Gene Probably Caused by the Simultaneous Occurrence of Deletion and Insertion in the Same Region

Overview
Journal Hum Genet
Specialty Genetics
Date 1994 Jun 1
PMID 8005585
Citations 4
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Abstract

A novel complex mutation with the presence of both deletion and insertion in very close proximity in the same region was detected in exon 8 of the LDL receptor gene from two apparently unrelated Japanese families with familial hypercholesterolemia (FH). In this mutant LDL receptor gene, the nine bases from nucleotide (nt) 1115 to nt 1123 (AGGGTGGCT) were replaced by six different bases (CACTGA), and consequently the four amino acids from codon 351 to 354, Glu-Gly-Gly-Tyr, were replaced by three amino acids, Ala-Leu-Asn, in the conserved amino acid region of the growth factor repeat B of the LDL receptor. The nature of the amino acid substitution and data on the families suggest that this mutation is very likely to affect the LDL receptor function and cause FH. The generation of this complex mutation can be explained by the simultaneous occurrence of deletion and insertion through the formation of a hairpin-loop structure mediated by inverted repeat sequences. This this mutation supports the hypothesis that inverted repeat sequences influence the stability of a given gene and promote human gene mutations.

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References
1.
Orita M, Suzuki Y, Sekiya T, Hayashi K . Rapid and sensitive detection of point mutations and DNA polymorphisms using the polymerase chain reaction. Genomics. 1989; 5(4):874-9. DOI: 10.1016/0888-7543(89)90129-8. View

2.
Cooper D, Krawczak M . Mechanisms of insertional mutagenesis in human genes causing genetic disease. Hum Genet. 1991; 87(4):409-15. DOI: 10.1007/BF00197158. View

3.
Krawczak M, Cooper D . Gene deletions causing human genetic disease: mechanisms of mutagenesis and the role of the local DNA sequence environment. Hum Genet. 1991; 86(5):425-41. DOI: 10.1007/BF00194629. View

4.
Hobbs H, Russell D, Brown M, Goldstein J . The LDL receptor locus in familial hypercholesterolemia: mutational analysis of a membrane protein. Annu Rev Genet. 1990; 24:133-70. DOI: 10.1146/annurev.ge.24.120190.001025. View

5.
Yamakawa K, Yanagi H, Saku K, Sasaki J, Okafuji T, Shimakura Y . Family studies of the LDL receptor gene of relatively severe hereditary hypercholesterolemia associated with Achilles tendon xanthomas. Hum Genet. 1991; 86(5):445-9. DOI: 10.1007/BF00194631. View