Abstract
1. Evidence has been produced for the formation of 5-phosphomevalonate from potassium dl-mevalonate by the latex of Hevea brasiliensis and by reconstituted freeze-dried serum obtained from this latex. 2. The enzyme, mevalonate kinase, catalysing the formation of 5-phosphomevalonate from potassium dl-mevalonate and ATP has been partially purified. 3. 5-Phosphomevalonate formed by the purified mevalonate kinase from potassium [2-(14)C]mevalonate has been shown to be incorporated by latex into rubber to about 2.4 times the extent of dl-mevalonate. 4. The enzyme can utilize inosine triphosphate as effectively as adenosine triphosphate as a phosphate donor and is also slightly active with uridine triphosphate. 5. The enzyme was fairly stable to a range of pH values and temperatures, the activity being optimum at pH7.5 and 60-70 degrees . The energy of activation was 10.7kcal./mole. The K(m) values were 0.13mm for potassium dl-mevalonate and 2.0mm for ATP at 30 degrees . 6. The enzyme required the presence of Mn(2+) (1mm) for maximum activity; this could be replaced by Mg(2+) (4mm), which was less effective, and by Ca(2+), which was far less effective. 6. Although the enzyme did not require cysteine or reduced glutathione for activation in aerobic conditions, it was inhibited by reagents known to react with thiol groups.
MeSH Terms
Adenosine Triphosphate/metabolism
Chromatography, Paper
In Vitro Techniques
Latex
Magnesium/metabolism
Manganese/metabolism
Mevalonic Acid/biosynthesis,metabolism
Microspheres
Phosphates/biosynthesis
Phosphotransferases/metabolism
Rubber
Chemicals
Latex
Phosphates
Manganese
Adenosine Triphosphate
Rubber
Phosphotransferases
Magnesium
Mevalonic Acid
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Williamson I P
Kekwick R G
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15 references, click to expand
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