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Biomedical subjects

M T Dorak

Publications and source records attributed to M T Dorak.

2 recordsLinked to original sources

Major histocompatibility complex, t-complex, and leukemia.

In experimental models, leukemia was the first disease shown to have an association with the major histocompatibility complex (MHC) genes. In humans, several allelic human-leukocyte antigen (HLA) associations also have been recognized. In addition to allelic associations, atypical HLA segregation patterns have been observed in leukemic families. These include a higher frequency of HLA-identical unaffected siblings, increased HLA homozygosity and increased maternal HLA-DR identity. These observations suggest preferential transmission of disease-associated haplotypes and a male transmission bias in leukemic families. The lack of disease-specific segregation, however, supports the idea that the HLA system is not directly relevant in leukemogenesis. Therefore, the existence of another genetic region linked to the MHC, causing segregation distortion, and containing recessive leukemia susceptibility genes may be postulated. The mouse t-complex would fit this model. This gene complex has recessive (semi-) lethal genes, is transmitted preferentially through fathers, and both the mouse t-complex and its rat homolog, growth and reproduction complex grc, confer susceptibility to carcinogenesis. This model could also explain the increased spontaneous abortion rate in mothers of leukemic patients, epidemiologic associations of leukemia with oral clefts and neuroectodermal tumors, and the transmission of a radiation-induced leukemia risk through fathers. Such segregation distortion might be the reason behind the maintenance of a gene(s) with a lethal effect in the population.

Animals

HLA and leukemia: is it a simple allelic association?

The first association between a disease and MHC antigens was established for viral leukemogenesis in mice. Since then, numerous studies in humans have been carried out and the data obtained suggest that Cw3 and Cw4 may be markers for leukemia susceptibility genes. Given the relatively weak relevance of HLA-C locus antigens in immune response, unrecognized properties of Cw3 and Cw4 should be considered to explain this association. Family studies have consistently revealed limited heterogeneity of HLA antigens in those families, increased parental HLA antigen sharing resulting in increased homozygosity among offspring and high frequency of recombinations within the MHC. Furthermore, the HLA genotype of leukemic patients was found more frequently among their siblings than the anticipated 25 percent. Another significant deviation from the Mendelian expectation was increased HLA-DR identity of offspring to that of their mother in those families. These and other observations imply that in leukemia families unknown MHC-linked recessive factors linked to Cw3 and Cw4 alleles may be susceptibility genes which also cause segregation distortion of HLA genes and probably developmental errors.

Animals