Abstract
DNA rearrangement permits bacteria to regulate gene content and expression. In Helicobacter pylori, cagY, which contains an extraordinary number of direct DNA repeats, encodes a surface-exposed subunit of a (type IV) bacterial secretory system. Examining potential DNA rearrangements involving the cagY repeats indicated that recombination events invariably yield in-frame open reading frames, producing alternatively expressed genes. In individual hosts, H. pylori cell populations include strains that produce CagY proteins that differ in size, due to the predicted in-frame deletions or duplications, and elicit minimal or no host antibody recognition. Using repetitive DNA, H. pylori rearrangements in a host-exposed subunit of a conserved bacterial secretion system may permit a novel form of antigenic evasion.
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Aras, R. A., Fischer, W., Perez-Perez, G. I., Crosatti, M. L., Ando, T., Haas, R., & Blaser, M. J. (2003). Plasticity of Repetitive DNA Sequences within a Bacterial (Type IV) Secretion System Component. Journal of Experimental Medicine, 198(9), 1349–1360. https://doi.org/10.1084/jem.20030381
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