Lack of sequence variations in the C4b-BP beta-chain in patients with type III protein S deficiency bearing the Ser 460 to Pro mutation: description of two new intragenic isomorphisms in the C4b-BP beta-chain gene (C4BPB)
BRITISH JOURNAL OF HAEMATOLOGY
Authors: Morbaeuf, O; Aiach, M; Gandrille, S
Abstract
Type III protein S (PS) deficiency, characterized by low levels of free PS and normal total PS levels, is often associated with the Ser 460 to Pro substitution. However, some patients bearing this mutation have normal PS levels, suggesting that another gene defect may account for this phenotype. We postulated that this defect was located in the C4b-BP beta-chain gene (C4BPB) and searched for a mutation in the coding regions of this gene in 35 propositi with type III PS deficiency and bearing the Ser 460 to Pro mutation. No mutations explaining the phenotype of type III PS deficiency were identified. We did, however, find two frequent nucleotide changes, one being located in the donor splice site of intron d and the second in the codon corresponding to Asn 137. We used these two polymorphisms to establish C4BPB gene haplotype in five informative type III PS-deficient families and exclude a role of the C4BPB gene in this phenotype of three of them. Finally, increased C4b-BP beta-chain levels were not responsible for the phenotype of type III PS deficiency as the C4BPB haplotype did not correlate with C4b-BP beta-chain levels.
Promoter region of the human gene coding for beta-chain of C4b binding protein - Hepatocyte nuclear factor-3 and nuclear factor-I CTF transcription factors are required for efficient expression of C4BPB in HepG2 cells
JOURNAL OF IMMUNOLOGY
Authors: Arenzana, N; deCordoba, SR
Abstract
Differential expression of the human genes coding for the alpha and beta polypeptides of the human C component C4b binding protein (C4BP) modulates the levels of C4BP molecules containing C4BP beta polypeptides, providing a mechanism to avoid the potential harmful effects of elevated concentrations of C4BP beta in plasma. To understand how the expression of the C4BPB gene is controlled, we have examined, in the major promoter of the human C4BPB gene, potential regulatory elements. A region from nucleotide -126 to +25 was able to drive high expression of a reporter gene in the human hepatoma cell line HepG2. A small subfragment of this region (from -126 to -90) is responsible for more than 90% of the promoter activity. Electrophoretic mobility shift assays revealed that transcription factors of the hepatocyte nuclear factor-3 (HNF-3) and nuclear factor-I (NF-I/CTF) families were able to bind to this region in a sequence-specific manner. We have characterized binding sites for these transcription factors and determined their relative contribution to the activity of the C4BPB promoter. The results suggest that cooperative interaction between HNF-3 and NF-I/CTF is required to obtain a full C4BPB promoter activity. Comparison of the structures of the C4BPA and C4BPB promoters reveals significant differences that could explain the differential transcription of the C4BP alpha and C4BP beta polypeptides during the acute phase response.