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Biomedical subjects

T S Collins

Publications and source records attributed to T S Collins.

3 recordsLinked to original sources

Hemolytically inactive C4B complement allotype caused by a proline to leucine mutation in the C5-binding site.

The fourth component of complement (C4) is encoded by two highly homologous genes, C4A and C4B. Only one hemolytically inactive C4A allotype (C4A6) has been reported. No hemolytically inactive C4B allotype has been described. We report the first hemolytically inactive (hi) allotype of C4B, C4B*1 (hi). This unique variant was first recognized by hemolytic overlay assays and confirmed to segregate in the affected pedigree with the major histocompatibility complex haplotype A28,B35,CW4,DR6, C4A3,C4B1(hi), BFF,C2C. By single strand conformational polymorphism, we detected only a migration variant in exon 12 caused by a C to T transition in the second base of codon 459. This mutation results in a leucine substitution for proline (P459L) 1 residue downstream of a residue known to contribute to the C5-binding site. Allele-specific oligonucleotide analysis of samples demonstrated cosegregation of the mutation with the hemolytically inactive allotype in the affected pedigree. Site-directed mutagenesis and expression studies showed that the P459L mutation causes loss of hemolytic function. C4B*1(hi) is the first example of a circulating C4B protein lacking detectable hemolytic activity and the P459L mutation expands our knowledge of the C5-binding site of C4.

Base Sequence

Soluble human complement receptor type 1 inhibits complement-mediated host defense.

Soluble complement receptor type 1 (sCR1) is a powerful inhibitor of complement activation. Because of this ability, sCR1 may prove to be an important therapeutic agent that can be used to block the immunopathologic effects of uncontrolled complement activation in a variety of clinically significant disorders. Although several previous studies have examined the ability of sCR1 to inhibit complemented-mediated immunopathologic damage, there is no information on its ability to interfere with the host's defense against infection. In the current experiments sCR1 exerted a concentration-dependent inhibitory effect on the phagocytosis of Streptococcus pneumoniae by human polymorphonuclear leukocytes in vitro. Not only di sCR1 inhibit complement-dependent opsonization of the pneumococcus but at higher concentrations it also inhibited the ingestion of bacteria which had been previously opsonized. Furthermore, when rats were injected with sCR1, it inhibited both their serum hemolytic activity and serum opsonic activity in a dose-dependent fashion. Finally, for rats treated with sCR1, the 50% lethal dose was S. pneumoniae and Pseudomonas aeruginosa. These data demonstrate that sCR1 significantly inhibits complement-mediated host against bacterial infection.

Animals

Neonatal tetanus in Peru: risk assessment with modified enzyme-linked immunosorbent assay and toxoid skin test.

We used a modified enzyme-linked immunosorbent assay (ELISA) to investigate tetanus immunity in 232 pregnant Peruvian women. One hundred forty-two (61.2%) had protective antitoxin titers (> or = 0.01 IU/mL). Protective titers correlated positively with the number of toxoid doses reported during the current pregnancy. A majority of women reporting no toxoid doses during the current pregnancy had at least one prenatal health care visit. We evaluated a toxoid skin test in 44 of the subjects, but it correlated poorly with the ELISA. The modified ELISA is a useful in vitro method for studying tetanus immunity in the developing world.

Adult