AI Article Synopsis

  • The absence of GPI-anchored proteins in PIG-A mutated hematopoietic stem cells (HSCs) doesn't fully explain why PNH clones outperform normal HSCs.
  • A study of 50 PNH patients found strong associations between certain MHC alleles (specifically DRB1*15:01 and DQB1*06:02) and non-aplastic PNH outcomes.
  • MHC class I allele B*18:01 was linked to a higher risk of the initial severe aplastic anemia subtype, indicating that different MHC alleles influence various PNH subsets.

Article Abstract

The deficiency of glycosyl-phosphatidylinositol (GPI)-anchored proteins in plasma membranes of PIG-A gene mutated hematopoietic stem cells (HSCs) is so far insufficient to explain the domination of paroxysmal nocturnal hemoglobinuria (PNH) clone over the normal HSC. We attempted to elucidate possible link between MHC and initial severe aplastic anemia (ISAA/PNH) type and non-aplastic (n/PNH) outcome of PNH. In 50 PNH patients assigned as ISAA/PNH (n = 13), n/PNH (n = 33) or nonassigned (n = 4) and 200 ethnically matched controls we analyzed MHC associations. Our data confirmed strong associations of DRB1*15:01 (RR = 3.51, p = 0.0011) and DQB1*06:02 (RR = 7.09, p = 0.000026) alleles, especially with n/PNH subtype. B*18:01 allele was associated with increased risk of ISAA/PNH subtype (RR = 5.25, p = 0.0028). We conclude that both class II and class I MHC alleles are associated with different subsets of PNH. Clonal selection of PIG-A mutated cells with cognate metabolic block is associated with MHC class II alleles DRB1*15:01 and DQB1*06:02 independent from initial severe AA clone selection. MHC class I molecule B*18:01 can additionally influence the domination of PNH clone in PNH subjects with initial severe aplastic anemia.

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Source
http://dx.doi.org/10.1007/s00005-011-0125-2DOI Listing

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