Fluorotyrosine alkaline phosphatase: Internal mobility of individual tyrosines and the role of chemical shift anisotropy as a 19F nuclear spin relaxation mechanism in proteins (Q45971377)
scientific article published on October 15, 1975
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(P31) (Q13442814)
(P304) 121-153
(P407) (Q1860)
(P433) 1
(P478) 98
(P577) Wednesday, October 1, 1975
Wednesday, October 15, 1975
(P921) (Q899127)
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(P953) https://api.elsevier.com/content/article/PII:S0022283675801057?httpAccept=text/xml
https://api.elsevier.com/content/article/PII:S0022283675801057?httpAccept=text/plain
(P1433) (Q925779)
(P1476) "Fluorotyrosine alkaline phosphatase: internal mobility of individual tyrosines and the role of chemical shift anisotropy as a 19F nuclear spin relaxation mechanism in proteins" (language: en)
"Fluorotyrosine alkaline phosphatase: Internal mobility of individual tyrosines and the role of chemical shift anisotropy as a 19F nuclear spin relaxation mechanism in proteins" (language: en)
(P2093) W. E. Hull
B. D. Sykes
(P2860) (Q47968194)
(Q34707634)
(Q48521682)
(Q69237768)
(Q69814618)
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(Q40312162)
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(Q55037633)
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description scientific article published on October 15, 1975

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