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J S Beaty

Publications and source records attributed to J S Beaty.

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Differential expression of related HLA class II DQ beta genes caused by nucleotide variation in transcriptional regulatory elements.

HLA class II genes comprise a large multigene family with intra- and interlocus variation in structure and expression. Within this family of related genes, the HLA-DX alpha and beta loci (HLA DQA2 and DQB2) are highly homologous to functional HLA-DQ loci (HLA DQA1 and DQB1) but are frequently termed pseudogenes because DX gene transcription has not been observed, even in cells expressing HLA-DQ. Analysis of upstream transcriptional regulatory elements for the DX beta and DQ beta genes identified a high degree of nucleotide homology, consistent with their derivation from a common ancestral class II gene. However, transient expression assays with plasmids utilizing promoter elements from the DX beta gene had no activity in transfected human B cells, in contrast to homologous DQ beta sequences. Reciprocal exchange of specific sequences from the DQ beta gene with those of the DX beta gene restored expression to wild-type DQ beta levels, as did mutagenesis of only three DX-specific nucleotides in the upstream regulatory region. These three nucleotides mark two binding sites for distinct nuclear DNA-binding proteins that differentially recognize DQ beta and DX beta sequences. Transcription of these genes is critically dependent on interactions between these two upstream regulatory region sites which distinguish DX beta from its closely related homologue, DQ beta.

Base Sequence

Allelic polymorphism in transcriptional regulatory regions of HLA-DQB genes.

Class II genes of the human major histocompatibility complex (MHC) are highly polymorphic. Allelic variation of structural genes provides diversity in immune cell interactions, contributing to the formation of the T cell repertoire and to susceptibility to certain autoimmune diseases. We now report that allelic polymorphism also exists in the promoter and upstream regulatory regions (URR) of human histocompatibility leukocyte antigen (HLA) class II genes. Nucleotide sequencing of these regulatory regions of seven alleles of the DQB locus reveals a number of allele-specific polymorphisms, some of which lie in functionally critical consensus regions thought to be highly conserved in class II promoters. These sequence differences also correspond to allelic differences in binding of nuclear proteins to the URR. Fragments of the URR of two DQB alleles were analyzed for binding to nuclear proteins extracted from human B lymphoblastoid cell lines (B-LCL). Gel retardation assays showed substantially different banding patterns to the two promoters, including prominent variation in nuclear protein binding to the partially conserved X box regions and a novel upstream polymorphic sequence element. Comparison of these two polymorphic alleles in a transient expression system demonstrated a marked difference in their promoter strengths determined by relative abilities to initiate transcription of the chloramphenicol acetyltransferase reporter gene in human B-LCL. Shuttling of URR sequences between alleles showed that functional variation corresponded to both the X box and upstream sequence polymorphic sites. These findings identify an important source of MHC class II diversity, and suggest the possibility that such regulatory region polymorphisms may confer allelic differences in expression, inducibility, and/or tissue specificity of class II molecules.

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History, 20th Century