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Biomedical subjects

T W Goodwin

Publications and source records attributed to T W Goodwin.

At least 55 records · Page 3Linked to original sources

Aspects of the stereochemistry of torularhodin biosynthesis.

1. The incorporation of [2-(14)C]acetate, [2-(14)C]mevalonic acid and [2-(14)C,2-(3)H(2)]-mevalonic acid into torulene and torularhodin by Rhodotorula rubra and Rhodotorula glutinis was studied. 2. A recovery of 14.3% of the label was obtained on decarboxylation of the torularhodin biosynthesized from [2-(14)C]mevalonic acid. 3. An analysis of the (3)H/(14)C ratio in torularhodin gave a value of 9.44:8. 4. These results, obtained by different experimental techniques, show that the reactions in the conversion of the dimethyl group of isopentenyl pyrophosphate into the 16',17'-position of torularhodin must be free from randomization. A mechanism for the isomerization of isopentenyl pyrophosphate to dimethylallyl pyrophosphate is suggested.

Acetates↗

Stereochemistry of phytoene biosynthesis by isolated chloroplasts.

The incorporation of [2-(14)C,(5R)-5-(3)H(1)]MVA* and [2-(14)C,5-(3)H(2)]MVA into geranylgeraniol and phytoene by a preparation of ;non-aqueous' bean leaf chloroplasts has been studied. In the formation of phytoene from two molecules of geranylgeranyl pyrophosphate, the loss of hydrogen is stereospecific, the hydrogen atom lost from C-1 of each molecule of geranylgeranyl pyrophosphate being that which was originally the pro-S hydrogen atom from C-5 of mevalonate. All the pro-R hydrogen atoms from C-5 of mevalonate are retained. These results with a cell-free system confirm and extend the observations made in previous work with tomato slices.

Alcohols↗

Incorporation of (2-14C, (5r)-5-3H1) mevalonic acid into cholesterol by a rat liver homogenate and into beta-sitosterol and 28-isofucosterol by larix decidua leaves.

1. Incubation of a rat liver homogenate with 3R-[2-(14)C,(5R)-5-(3)H(1)]mevalonic acid gave cholesterol with (3)H/(14)C atomic ratio 6:5. 2. Conversion of the labelled cholesterol into 3beta-acetoxy-6-nitrocholest-5-ene or cholest-4-ene-3,6-dione resulted in the loss of one tritium atom from C-6. 3. These results show that during cholesterol biosynthesis the 6alpha-hydrogen atom of a precursor sterol is eliminated during formation of the C-5-C-6 double bond. 4. Incorporation of 3R-[2-(14)C,(5R)-5-(3)H(1)]mevalonic acid into the sterols of larch (Larix decidua) leaves gave labelled cycloartenol and beta-sitosterol with (3)H/(14)C atomic ratios 6:6 and 6:5 respectively. 5. One tritium atom was lost from C-6 on conversion of the labelled beta-sitosterol into either 3beta-acetoxy-6-nitrostigmast-5-ene or stigmast-4-ene-3,6-dione, demonstrating that formation of the C-5-C-6 double bond of phytosterols also involves the elimination of the 6alpha-hydrogen atom of a precursor sterol. 6. The 3R-[2-(14)C,(5R)-5-(3)H(1)]mevalonic acid was also incorporated by larch (L. decidua) leaves into a sterol that co-chromatographed with 28-isofucosterol. Confirmation that the radioactivity was associated with 28-isofucosterol was obtained by co-crystallization with carrier 28-isofucosterol and ozonolysis of the acetate to give radioactively labelled 24-oxocholesteryl acetate. 7. The significance of these results to phytosterol biosynthesis is discussed.

Animals↗