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G Corthals

Publications and source records attributed to G Corthals.

4 recordsLinked to original sources

A gene encoding a novel RFX-associated transactivator is mutated in the majority of MHC class II deficiency patients.

Major histocompatibility class II (MHC-II) molecules are transmembrane proteins that have a central role in development and control of the immune system. They are encoded by a multigene family and their expression is tightly regulated. MHC-II deficiency (OMIM 209920) is an autosomal recessive immunodeficiency syndrome resulting from defects in trans-acting factors essential for transcription of MHC-II genes. There are four genetic complementation groups (A, B, C and D), reflecting the existence of four MHC-II regulators. The factors defective in groups A (CIITA), C (RFX5) and D (RFXAP) have been identified. CIITA is a non-DNA-binding co-activator that controls the cell-type specificity and inducibility of MHC-II expression. RFX5 and RFXAP are two subunits of RFX, a multi-protein complex that binds the X box motif of MHC-II promoters. Mutations in the genes encoding RFX5 (RFX5) or RFXAP (RFXAP) abolish binding of RFX (refs 7,8,12). Similar to groups C and D, group B is characterized by a defect in RFX binding, and although it accounts for the majority of patients, the factor defective in group B has remained unknown. We report here the isolation of RFX by a novel single-step DNA-affinity purification approach and the identification of RFXANK, the gene encoding a third subunit of RFX. RFXANK restores MHC-II expression in cell lines from patients in group B and is mutated in these patients. RFXANK contains a protein-protein interaction region consisting of three ankyrin repeats. Its interaction with RFX5 and RFXAP is essential for binding of the RFX complex to MHC-II promoters.

Amino Acid Sequence↗

Preparative reflux electrophoresis.

As part of the method for large-scale preparative electrophoresis across membranes of controlled porosity, we show that successive amounts of the leading component of a mixture migrating across a thin membrane can be collected by 'reflux electrophoresis'. This consists of a series of cycles, in each of which the forward phase is stopped before the trailing components can emerge, the leading fraction is collected and the membrane cleared by reversing the current before commencing the next cycle. The reflux principle is demonstrated by separations based on size or on charge differences of protein molecules.

Acrylic Resins↗

Comparison of serum antibody reactivities to a conformational and to linear antigenic sites in the external envelope glycoprotein of simian immunodeficiency virus (SIVmac) induced by infection and vaccination.

Forty-six overlapping peptides (20-mers) representing the amino acid sequence of the external envelope glycoprotein of simian immunodeficiency virus (SIVmac; 32H isolate) were used to investigate linear antigenic sites recognized by antibodies in sera from SIV-infected rhesus macaques and in animals vaccinated with formalin-inactivated SIV. The reactivity to a discontinuous antigenic site as defined by a neutralizing monoclonal antibody was measured by competition assay. The majority of infected macaques recognized three linear antigenic determinants within the V1, V3 and C5 regions of the external glycoprotein. Animals infected with virus derived from the molecular clone SIVmac 32H (pJ5) showed broader reactivity to peptides with half of these animals having antibodies to the V2 region in addition to the V1, V3 and C5 regions. The majority of animals produced antibodies in response to the discontinuous epitope although these responses were weaker in animals infected with molecularly cloned virus. Seven of eight animals given vaccine in syntex adjuvant formulation (saf-1) produced antibodies in response to the discontinuous epitope and all reacted with peptides from the V1, V2 and V3 regions but only half recognized the C5 region. Animals receiving vaccine in alum adjuvant generally showed weaker responses to the discontinuous and linear determinants than those receiving saf-1 adjuvanted vaccine.

Amino Acid Sequence↗