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  1. Full Sequencing and Genomic Analysis of Three emm75 Group A Streptococcus Strains Recovered in the Course of an Epidemiological Shift in French Brittany
  2. Genome Sequence of the UncommonStreptococcus pyogenesM/emm66 Strain STAB13021, Isolated from Clonal Clustered Cases in French Brittany
  3. Complete Genome Sequence of Noninvasive Streptococcus pyogenes M/ emm28 Strain STAB10015, Isolated from a Child with Perianal Dermatitis in French Brittany
  4. Full-Length Genome Sequence of Type M/emm83Group A Streptococcus pyogenes Strain STAB1101, Isolated from Clustered Cases in Brittany
  5. Complete Genome Sequence of Streptococcus pyogenes M/emm44 Strain STAB901, Isolated in a Clonal Outbreak in French Brittany
  6. Closed Genome Sequence of Noninvasive Streptococcus pyogenes M/emm3 Strain STAB902
  7. Colocalization of Porphyromonas gingivalis with CD4+ T cells in periodontal disease
  8. Role of DNA polymerases η, ι and ζ in UV resistance and UV-induced mutagenesis in a human cell line
  9. Proteasomal degradation restricts the nuclear lifespan of AID
  10. Proteasomal degradation restricts the nuclear lifespan of AID
  11. Hypermutation des gènes des immunoglobulines et polymérases mutagènes
  12. DNA polymerase η is the sole contributor of A/T modifications during immunoglobulin gene hypermutation in the mouse
  13. DNA polymerase η is the sole contributor of A/T modifications during immunoglobulin gene hypermutation in the mouse
  14. Contribution of DNA polymerase η to immunoglobulin gene hypermutation in the mouse
  15. DNA Polymerase η Is Involved in Hypermutation Occurring during Immunoglobulin Class Switch Recombination
  16. What role for AID: mutator, or assembler of the immunoglobulin mutasome?
  17. Hypermutation in Human B Cellsin Vivoandin Vitro
  18. Induction of somatic hypermutation in immunoglobulin genes is dependent on DNA polymerase iota
  19. AID-dependent somatic hypermutation occurs as a DNA single-strand event in the BL2 cell line
  20. Ig gene hypermutation: A mechanism is due
  21. COnvulxin, a potent platelet-aggregating protein from Crotalus durissus terrificus venom, specifically binds to platelets
  22. Dissociation between the phospholipases C and A2 activities in stimulated platelets and their involvement in the arachidonic acid liberation
  23. Secretory phospholipase A2 is not required for arachidonic acid liberation during platelet activation
  24. Reduction by arachidonic acid of prostaglandin i2-induced cyclic amp formation
  25. Carrageenan-induced activation of human platelets is dependent on the phospholipase C Pathway