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1 to a Phe residue found in the active site of isoprene synthases.
5 ge and light, do not alter the percentage of isoprene synthase activity in the bound or soluble form.
8 comparable with that observed for angiosperm isoprene synthases and 3 orders of magnitude higher than
10 terpene synthase gene family indicated that isoprene synthases are either within the monoterpene syn
11 ing two Phe residues do not have homologs in isoprene synthases but occupy the same space as a second
13 The solubilized thylakoid-bound and stromal isoprene synthases exhibit similar catalytic properties,
14 It was found that genes encoding stromal isoprene synthase exist as a small gene family, the memb
15 ray crystal structure of recombinant PcISPS (isoprene synthase from gray poplar hybrid Populusxcanesc
16 the isolation of thylakoid-bound and soluble isoprene synthases from a single willow (Salix discolor
22 iously, thylakoid-bound and soluble forms of isoprene synthase had been isolated separately, each fro
23 soprene emission is controlled by the enzyme isoprene synthase; however, there is still relatively li
25 In Arabidopsis, the gene most similar to isoprene synthase is a myrcene/ocimene (acyclic monoterp
29 ms of (E)-beta-farnesene synthase (EBFS) and isoprene synthase (ISPS), enzymes that catalyze a formal
31 phenylalanine residues found exclusively in isoprene synthases make the active site smaller than oth
34 efore starting to decrease; in contrast, the isoprene synthase rate constant increased up to 40 degre
35 ount of DMADP fell but the rate constant for isoprene synthase remained constant, indicating that the
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