Genomic analysis reveals a telomere-healed DNA inversion in Plasmodium falciparum isolates, indicating a programmed pathway for antigen loss.
Ring-infected erythrocyte surface antigen-negative isolates of Plasmodium falciparum demonstrate a complex DNA rearrangement with inversion of 5' coding sequences, deletion of upstream and flanking sequences, and healing of the truncated chromosome by telomere addition. An inversion intermediate that results in the telomeric gene structure for RESA has been identified in the pathway. This inversion creates a mitotically stable substrate for the sequence-specific addition of telomere repeats at the deletion breakpoint.
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Pologe et al. (1990) studied this question.
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