4.6 Article

Soluble Ecto-5′-nucleotidase (5′-NT), Alkaline Phosphatase, and Adenosine Deaminase (ADA1) Activities in Neonatal Blood Favor Elevated Extracellular Adenosine

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JOURNAL OF BIOLOGICAL CHEMISTRY
卷 288, 期 38, 页码 27315-27326

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AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.M113.484212

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资金

  1. National Institutes of Health (NIH) [1R01AI100135-01]
  2. NIH [T32 HD055148, R01 HL094400, R21 CA164970, P01 HL087203]
  3. NIH, NIDCR [R01 DE012889]
  4. NIH, NIAMS [R01 AR053102]
  5. NIH, NIAID [N01 AI50023]
  6. European Society for Pediatric Infectious Diseases
  7. Medical Research Council, United Kingdom
  8. Canadian Institutes of Health Research
  9. Burroughs Wellcome Career Award in the Biomedical Sciences, a Michael Smith Foundation for Health Research Career Investigator Award
  10. AllerGen NCE [07-A1A, 07-B2B]
  11. Bill and Melinda Gates Foundation Global Health Award [OPPGH5284]
  12. Grand Challenges Explorations Award [OPP1035192]
  13. MRC [MC_UP_A900_1122, MC_UP_A900_1115] Funding Source: UKRI
  14. Medical Research Council [MC_UP_A900_1115, MC_UP_A900_1122] Funding Source: researchfish

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Extracellular adenosine, a key regulator of physiology and immune cell function that is found at elevated levels in neonatal blood, is generated by phosphohydrolysis of adenine nucleotides released from cells and catabolized by deamination to inosine. Generation of adenosine monophosphate (AMP) in blood is driven by cell-associated enzymes, whereas conversion of AMP to adenosine is largely mediated by soluble enzymes. The identities of the enzymes responsible for these activities in whole blood of neonates have been defined in this study and contrasted to adult blood. We demonstrate that soluble 5 '-nucleotidase (5 '-NT) and alkaline phosphatase (AP) mediate conversion of AMP to adenosine, whereas soluble adenosine deaminase (ADA) catabolizes adenosine to inosine. Newborn blood plasma demonstrates substantially higher adenosine-generating 5 '-NT and AP activity and lower adenosine-metabolizing ADA activity than adult plasma. In addition to a role in soluble purine metabolism, abundant AP expressed on the surface of circulating neonatal neutrophils is the dominant AMPase on these cells. Plasma samples from infant observational cohorts reveal a relative plasma ADA deficiency at birth, followed by a gradual maturation of plasma ADA through infancy. The robust adenosine-generating capacity of neonates appears functionally relevant because supplementation with AMP inhibited whereas selective pharmacologic inhibition of 5 '-NT enhanced Toll-like receptor-mediated TNF-alpha production in neonatal whole blood. Overall, we have characterized previously unrecognized age-dependent expression patterns of plasma purine-metabolizing enzymes that result in elevated plasma concentrations of anti-inflammatory adenosine in new-borns. Targeted manipulation of purine-metabolizing enzymes may benefit this vulnerable population.

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