Resistance to malaria through structural variation of red blood cell invasion receptors.

Leffler EM, Band G, Busby GBJ, Kivinen K, Le QS, Clarke GM, Bojang KA, Conway DJ, Jallow M, Sisay-Joof F, Bougouma EC, Mangano VD, Modiano D, Sirima SB, Achidi E, Apinjoh TO, Marsh K, Ndila CM, Peshu N, Williams TN, Drakeley C, Manjurano A, Reyburn H, Riley E, Kachala D, Molyneux M, Nyirongo V, Taylor T, Thornton N, Tilley L, Grimsley S, Drury E, Stalker J, Cornelius V, Hubbart C, Jeffreys AE, Rowlands K, Rockett KA, Spencer CCA, Kwiatkowski DP, Malaria Genomic Epidemiology Network

Open source

DOI
10.1126/science.aam6393
Published
2017 Jun 16
Container
Science (New York, N.Y.)
Publisher
Not recorded
Open access
yes

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BibTeX

@article{allodium:10.1126/science.aam6393,
  title = {Resistance to malaria through structural variation of red blood cell invasion receptors.},
  author = {Leffler EM and Band G and Busby GBJ and Kivinen K and Le QS and Clarke GM and Bojang KA and Conway DJ and Jallow M and Sisay-Joof F and Bougouma EC and Mangano VD and Modiano D and Sirima SB and Achidi E and Apinjoh TO and Marsh K and Ndila CM and Peshu N and Williams TN and Drakeley C and Manjurano A and Reyburn H and Riley E and Kachala D and Molyneux M and Nyirongo V and Taylor T and Thornton N and Tilley L and Grimsley S and Drury E and Stalker J and Cornelius V and Hubbart C and Jeffreys AE and Rowlands K and Rockett KA and Spencer CCA and Kwiatkowski DP and Malaria Genomic Epidemiology Network},
  year = {2017},
  journal = {Science (New York, N.Y.)},
  doi = {10.1126/science.aam6393},
  url = {https://doi.org/10.1126/science.aam6393}
}

RIS

TY  - JOUR
TI  - Resistance to malaria through structural variation of red blood cell invasion receptors.
AU  - Leffler EM
AU  - Band G
AU  - Busby GBJ
AU  - Kivinen K
AU  - Le QS
AU  - Clarke GM
AU  - Bojang KA
AU  - Conway DJ
AU  - Jallow M
AU  - Sisay-Joof F
AU  - Bougouma EC
AU  - Mangano VD
AU  - Modiano D
AU  - Sirima SB
AU  - Achidi E
AU  - Apinjoh TO
AU  - Marsh K
AU  - Ndila CM
AU  - Peshu N
AU  - Williams TN
AU  - Drakeley C
AU  - Manjurano A
AU  - Reyburn H
AU  - Riley E
AU  - Kachala D
AU  - Molyneux M
AU  - Nyirongo V
AU  - Taylor T
AU  - Thornton N
AU  - Tilley L
AU  - Grimsley S
AU  - Drury E
AU  - Stalker J
AU  - Cornelius V
AU  - Hubbart C
AU  - Jeffreys AE
AU  - Rowlands K
AU  - Rockett KA
AU  - Spencer CCA
AU  - Kwiatkowski DP
AU  - Malaria Genomic Epidemiology Network
PY  - 2017
JO  - Science (New York, N.Y.)
DO  - 10.1126/science.aam6393
UR  - https://doi.org/10.1126/science.aam6393
ER  - 

APA

EM, L., G, B., GBJ, B., K, K., QS, L., GM, C., KA, B., DJ, C., M, J., F, S., EC, B., VD, M., D, M., SB, S., E, A., TO, A., K, M., CM, N., N, P., TN, W., C, D., A, M., H, R., E, R., D, K., M, M., V, N., T, T., N, T., L, T., S, G., E, D., J, S., V, C., C, H., AE, J., K, R., KA, R., CCA, S., DP, K., & Network, M. G. E. (2017). Resistance to malaria through structural variation of red blood cell invasion receptors.. Science (New York, N.Y.). https://doi.org/10.1126/science.aam6393

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