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Methodology optimization for KIR genotyping

The killer cell immunoglobulin-like receptors (KIRs) are molecules expressed on natural killer (NK) cells surface and in T-cell subsets encoded by genes located in chromosome 19q13.4. The interaction between KIR receptors and HLA class I molecules determines if the NK cells will fulfill their cytotoxic function and/or cytokine secretion or if this function will be inhibited. The objective of this work was to optimize KIR genotyping method described by Martin (2004). It was used PCR-SSP (polymerase chain reaction-sequence-specific primers) with primers synthesized by Invitrogen® and visualization of the amplified products on 2% agarose gel electrophoresis, containing ethidium bromide. Some adaptations were made and the reagents had their concentrations increased: the internal control from 100 nM to 150 nM, forward and reverse specific primers KIR12.5/12.3, KIR13.5/13.3, KIR14.5/14.3, KIR22.5/22.3 and KIR36.5/36.3 from 500 nM to 750 nM, and MgCl2 solution from 1.5 mM to 2 mM. Other reagent concentrations and amplification temperatures were maintained. Satisfactory results were obtained with Taq DNA Polymerase Recombinant (Invitrogen®). The results of seventy samples were confirmed by rSSO-Luminex® (One Lambda, Canoga Park, CA, USA). This KIR typing method proved to be accurate, specific, reproducible and cost effective.

Natural killer cells; Genotyping; KIR; PCR-SSP; PCR-SSO


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