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A, the menD1 mutant contains a single insertion of the paromomycin cassette. DNA from wild-type and menD1 cells was extracted, digested with restriction enzymes as indicated, fractionated by ...
Phylloquinone functions as the electron transfer cofactor at the A1 site of photosystem I. We have isolated and characterized a mutant of Chlamydomonas reinhardtii, menD1, that is deficient in MenD, which encodes 2-succinyl-6-hydroxy-2,4-cyclohexadiene-1-carboxylate synthase, an enzyme that catalyzes the first specific step of the phylloquinone biosynthetic pathway. The mutant is ...
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Consistent with a replacement of phylloquinone by plastoquinone, the size of the free plastoquinone pool of menD1 is reduced by 20-30%. In contrast to cyanobacterial MenD-deficient mutants, photosystem I accumulates normally in menD1, whereas the level of photosystem II declines.
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Phylloquinone functions as the electron transfer cofactor at the A 1 site of photosystem I. We have isolated and characterized a mutant of Chlamydomonas reinhardtii, menD1, that is deficient in MenD, which encodes
We show that this process of photoinactivation is due to double reduction of PQ in the menD1 PS1 and have characterized the process. It is accelerated at lower pH, consistent with a rate-limiting protonation step.
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The pKS/IB plasmid that complements the menD1 mutant encodes the first 637 amino acids of the MenD protein, indicating that the C-terminal end of the MenD protein is most likely dispensable for ...
The invention provides a human multiple endocrine neoplasia type 1 protein (MEND1) and polynucleotides which identify and encode MEND1. The invention also provides expression vectors, host cells, agonists, antibodies and antagonists. The invention also provides methods for treating disorders associated with expression of MEND1.