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Biomedical subjects

L J Greenberg

Publications and source records attributed to L J Greenberg.

At least 19 recordsLinked to original sources

Arg120stop nonsense mutation in the RP2 gene: mutational hotspot and germ line mosaicism?

Mutations in the RP2 gene account for up to 20% of X-linked recessive retinitis pigmentosa (RP). Arg120stop is to date the most frequently reported mutation found in RP2. Mutation screening was performed during the course of a large screening program of retinal degenerative disorders (RDDs) in South Africa using exon 1 and 2 of RP2 in 20 unrelated families with an X-linked mode of retinal degenerative inheritance. Direct sequencing analysis revealed a C-->T transition at position 358 in the proband in a family of German origin. Subsequent analysis revealed that this Arg120stop mutation cosegregated with the disease in an additional affected family member. The nonsense mutation, Arg120stop, could not however, be detected in the somatic cells of the obligate carrier female. This, the first report of a germ line mutation for a family with RP, has many implications for genetic counseling of retinal degeneration (RD). To avoid inaccurate risk assessment for RP due to epigenetic events, such as the rare occurrence of germ line mosaicism, genetic counseling in families with XLRP should always be guided by molecular testing.

Adult↗

A computer-based register for inherited retinal dystrophies in Southern Africa.

A genetic register for inherited retinal degenerative disorders (RDDs) has been established at the Division of Human Genetics, UCT Medical School, Cape Town, South Africa. The primary role of the register is to monitor the progress of molecular research and to facilitate the efficient delivery of services, including genetic counselling, to respective family members and new patients. The database currently holds information on 1829 subjects. The RDD-specific breakdown of the data are presented.

Databases, Factual↗

Ethnic variation and in vivo effects of the -93t-->g promoter variant in the lipoprotein lipase gene.

Recently, a (t-->g) transition at nucleotide -93 in the lipoprotein lipase (LPL) gene promoter has been observed in Caucasians. Here, we have compared the frequency of the -93g carriers in three distinct populations (Caucasians, South African Blacks, and Chinese). The carrier frequency in the Caucasian population was 1.7% (4/232), which was in contrast to the South African Black population, which had a frequency for this allele of 76.4% (123/161) of the individuals tested. This transition was not observed in the Chinese population under study. Near complete linkage disequilibrium between the -93g and the previously described D9N mutation was observed in the Caucasian population but not in South African Blacks. To further assess the ancestral origins of these DNA changes, DNA haplotyping using a CA repeat 5' to these substitutions was performed. The -93t allele was associated with only a few specific dinucleotide repeat sizes. In contrast, the -93g allele occurred on chromosomes with many different repeat lengths. The broad distribution of repeats on -93g carrying chromosomes, their high frequency in the South African Black population, and the conservation of the -93g allele among different species may suggest that the -93g allele is the ancestral allele on which a transition to t and the D9N mutations arose. The very high frequency of the -93g allele distinct from the N9 allele in a cohort of Black South Africans allowed us to specifically assess the phenotypic effects of the -93g allele on lipids. Individuals homozygous for the g allele at -93 showed mildly decreased triglycerides compared with individuals homozygous for the t allele (1.14 +/- 0.66 mmol/L versus 0.82 +/- 0.3; P = .04). Thus, the -93g allele in this cohort is associated with low plasma triglyceride levels.

Adult↗

Genetic linkage between Huntington disease and the D4S10 locus in South African families: further evidence against non-allelic heterogeneity.

A study of genetic linkage between Huntington disease (HD) and the D4S10 locus (G8) has been undertaken in 10 South African (SA) families originating from the black, white and mixed acestry population groups. Allele frequencies at the D4S10 locus have been established in the non-Caucasoid population groups. There are significant differences in the allele frequencies at the D4S10 locus between the various SA populations. Clearly, information about population-specific frequencies for all polymorphisms is essential prior to the implementation of predictive testing in different population groups. Linkage has been demonstrated within this mixed group of HD families in SA using the HindIII, EcoRI and MspI polymorphisms, detected by G8. A maximum lod score of 8.14 at a recombination fraction of 0.00 (confidence limit 0-0.058) has been calculated using a combined haplotype of the HindIII and MspI polymorphisms. Taking into account the diverse ethnic backgrounds of the different SA population groups in this investigation, the data obtained from the study provide further evidence that there is probably only a single HD locus.

Alleles↗

Tumor marker kinetics in the monitoring of breast cancer.

Controversy exists in using carcinoembryonic antigen (CEA) for monitoring the clinical course of breast cancer. In this study, the kinetics of two plasma tumor markers, CEA and CA15-3, immediately after the initiation of chemotherapy were assessed in 30 patients with advanced breast cancer. Four distinct kinetic patterns were seen. Two patterns fitted the expected relationship where the plasma marker increased during tumor progression (nine patients), and declined in tumor regression (five patients). The third pattern was paradoxical in that objective tumor regression in eight patients was associated with an acute surge of these markers followed by a steady decline. The doubling times for both CEA and CA15-3 were immediately shortened four-fold after therapy suggesting tumor cytolysis in treatment responders. Equally paradoxical was the fourth pattern where tumor progression in eight patients was associated with a rapid and transient decline of markers followed by rebounds. Such a rapid decline may be due to a suppression of marker release, as demonstrated in an in vitro study. Adequate knowledge of these putative paradoxical patterns will permit their effective use in monitoring the disease course and perhaps in the early prediction of the therapeutic response.

Adult↗

Immunogenetics of response to a purified antigen from group A streptococci. I. Complex segregation analysis.

A purified, extracellular protein, M. W. 17500, from group A streptococci was used in an in vitro model to study genetic aspects of immune responsiveness. Peripheral blood lymphocytes from members of eight nuclear families and one kindred of three generations were isolated and purified by F-icoll-Isopaque flotation and cultured together with varying concentrations of antigen. A summary measure of the antigen response data (measured as CPM) was constructed through a weighted regression analysis of response on dose. Commingling analysis of the standardized regression coefficients provided evidence for the existence of two underlaying distributions. Segregation analysis confirmed that response to this antigen is controlled by a major gene and is inherited in an autosomal dominant manner.

Adolescent↗

Immunogenetics of response to a purified antigen from group A streptococci. II. Linkage of response to HLA.

Employing an in vitro blastogenesis model, evidence has been set forth for a major gene locus which controls response to a purified, extracellular antigen from group A streptococci. Response to this antigen is inherited in an autosomal dominant manner. Analysis of the data for linkage to HLA was done with the computer program LINKAS which can resolve pleiotropy from linkage and can detect and estimate recombination in the presence of etiological heterogeneity. Maximum likelihood estimation and likelihood ratio tests were used to assess the relative support for competing hypotheses. The results of this analysis indicate that at least two loci are involved in one of two ways: one locus that is closely linked to HLA and one locus that is unlinked; or a two-locus system of complementary alleles which are both tightly linked to HLA.

Adolescent↗

Anomalous mixed lymphocyte culture reactivity between HLA--A, --B, --C, --DR identical siblings.

Complete HLA typing including HLA--A, --B, --C, --DR (D related B cell typing), --D, mixed lymphocyte culture (MLC), and primed lymphocyte testing (PLT), together with complete red blood cell (RBC), glyoxalase (GLO), GBG (Factor B), and phosphoglucomutase 3 (PGM3) typings were performed on a informative family. The five siblings inherited the four possible combinations of parental HLA haplotypes, and two of the siblings were HLA--A, --B, --C and --DR identical. Repeated MLC testing of the family revealed positive mixed lymphocyte reactivity in all combinations. B cell typing for the DR specificities demonstrated no variation from the expected inheritance pattern and specifically no recombination event. GBG and GLO typings militated against a recombination involving the paternal chromosome. HLA--D testing revealed that only one of the HLA--A, --B, --C, and --DR identical siblings gave typing responses to the HLA--Dw3 specificity present on that maternal haplotype. Utilizing HLA haploidentical combinations, lymphocytes were primed against the four parental haplotypes and the non-Dw3 haplotype of interest (Aw24--B8--DRw3--LDY) in the PLT. The sibling inheriting this haplo-type did not restimulate cells primed against the A2--B40--DRW6--LDY specificity. Furthermore, no discrimination was observed in the restimulation of lymphocytes primed against this haplo-type. Possible interpretations of these family data include: a spontaneous mutation, non-major histocompatibility locus (MHC) stimulation, and HLA--DR/D recombination.

B-Lymphocytes↗

Serological inhibition of blast transformation to purified streptococcal antigens by planned immunization in HLA (A,B) compatible unrelated individuals.

Sera obtained from planned immunizations between unrelated donors and recipients, identical or compatible at HLA-A and B, were assessed for their capacity to alter the in vitro response of a test panel of lymphocytes to PHA and a purified streptococcal antigen (PAS). In the case of PHA, no serum effects were apparent. The response to PAS, however, significantly inhibited by two sera. When tested for their complement-dependent cytotoxicity on enriched populations of T and B lymphocytes, none of the sera manifested cytotoxicity against T cells nor did serological inhibition correlate with the capacity to lyze B cells. The data suggest that inhibition of the PSA response is mediated by blocking antibodies specific for a subset of lymphocytes, possibly T cells. While the precise mechanism governing the response to PSA is not known, the data are compatible with the idea that an HLA-linked Ir gene, expressed on a subset of T lymphocytes, controls immune responsiveness to PSA.

Antibody Specificity↗