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Biomedical subjects

S I Beale

Publications and source records attributed to S I Beale.

76 records · Page 5Linked to original sources

Chlorophyll synthesis in chlorella: regulation by degree of light limitation of growth.

The degree of light limitation of growth is the primary controlling factor of chlorophyll synthesis during photoautotrophic growth of Chlorella. The chlorophyll content of the cells increases when light is limiting for growth as occurs in dense cultures, or in cultures under low incident light, or when the light is used less efficiently through partial inhibition of photosynthesis by 3-(p-chlorophenyl)-1, 1-dimethylurea. The chlorophyll content decreases when light is not limiting for growth, as occurs in cells in high light intensity and in dilute suspensions. The initial lag in rate of chlorophyll synthesis in a freshly inoculated culture can be attributed to light at first not being growth limiting, and then becoming growth limiting as the cell suspension becomes denser. Continuous culture experiments support the above conclusions by showing that under steady state conditions the chlorophyll content is inversely related to the relative available light.

Journal Article↗

Studies on the Biosynthesis and Metabolism of delta-Aminolevulinic Acid in Chlorella.

The regulation of chlorophyll synthesis in Chlorella was examined at the level of the formation and metabolism of delta-aminolevulinic acid. delta-Aminolevulinic acid synthetase activity could not be detected in broken cell preparations, and exogenously supplied delta-aminolevulinic acid was taken up only in the presence of dimethylsulfoxide, with a corresponding production of porphobilinogen.The delta-aminolevulinic acid dehydratase of Chlorella has a pH optimum of 7.8 and at this pH the Michaelis constant for delta-aminolevulinic acid is 0.13 millimolar.delta-Aminolevulinic acid excretion in the presence of levulinic acid, a competitive inhibitor of delta-aminolevulinic acid dehydratase, allowed measurement of the relative rates of delta-aminolevulinic acid synthesis under various growth conditions. A mutant which requires light for chlorophyll synthesis also requires light for delta-aminolevulinic acid accumulation in the presence of levulinic acid. This same mutant has 40% of the delta-aminolevulinic acid dehydratase activity of the wild-type Chlorella during growth in the dark on glucose.The necessity for protein synthesis during chlorophyll synthesis is due primarily to the requirement for protein synthesis during delta-aminolevulinic acid formation.It is concluded that the rate of chlorophyll formation and the cellular chlorophyll content are regulated by the relative rates of synthesis and breakdown of an enzyme responsible for delta-aminolevulinic acid biosynthesis and that this enzyme has an in vivo lifetime of about 30 minutes.

Journal Article↗

The biosynthesis of delta-aminolevulinic acid in Chlorella.

When autotrophically growing cultures of Chlorella are treated with levulinic acid, delta-aminolevulinic acid is excreted into the medium, providing a direct demonstration of alpha-aminolevulinic acid production in a green plant. Evidence is presented which indicates that alpha-aminolevulinic acid formation may be the the rate-controlling step of chlorophyll synthesis in Chlorella, and that control of the rate of alpha-aminolevulinic acid synthesis may be exerted at the level of production and breakdown of an enzyme which catalyzes its formation.

Amino Acids↗