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Characterization of Arabidopsis fluoroacetate-resitant mutants reveals the principal mechanism of acetate activation for entry into the glyoxylate cycle. / Turner, J.E.; Greville, K.; Murphy, E.C. et al.
In: Journal of Biological Chemistry, Vol. 280, No. 4, 28.01.2005, p. 2780-2787.

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Turner JE, Greville K, Murphy EC, Hooks MA. Characterization of Arabidopsis fluoroacetate-resitant mutants reveals the principal mechanism of acetate activation for entry into the glyoxylate cycle. Journal of Biological Chemistry. 2005 Jan 28;280(4):2780-2787. doi: 10.1074/jbc.M407291200

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Turner, J.E. ; Greville, K. ; Murphy, E.C. et al. / Characterization of Arabidopsis fluoroacetate-resitant mutants reveals the principal mechanism of acetate activation for entry into the glyoxylate cycle. In: Journal of Biological Chemistry. 2005 ; Vol. 280, No. 4. pp. 2780-2787.

RIS

TY - JOUR

T1 - Characterization of Arabidopsis fluoroacetate-resitant mutants reveals the principal mechanism of acetate activation for entry into the glyoxylate cycle.

AU - Turner, J.E.

AU - Greville, K.

AU - Murphy, E.C.

AU - Hooks, M.A.

PY - 2005/1/28

Y1 - 2005/1/28

KW - BIOCHEMISTRY & MOLECULAR BIOLOGY

U2 - 10.1074/jbc.M407291200

DO - 10.1074/jbc.M407291200

M3 - Article

VL - 280

SP - 2780

EP - 2787

JO - Journal of Biological Chemistry

JF - Journal of Biological Chemistry

SN - 0021-9258

IS - 4

ER -