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1. Higher endogenous methionine in transgenic Arabidopsis seeds affects the composition of storage proteins and lipids.

2. Characterization of aromatic aminotransferases from Ephedra sinica Stapf.

3. Soybean seeds overexpressing asparaginase exhibit reduced nitrogen concentration.

4. The importance of TRPV1-sensitisation factors for the development of neuropathic pain.

5. Characterization of a Cruciferin Deficient Mutant of Arabidopsis and Its Utility for Overexpression of Foreign Proteins in Plants

6. Transcripts of sulphur metabolic genes are co-ordinately regulated in developing seeds of common bean lacking phaseolin and major lectins.

7. Relationship between asparagine metabolism and protein concentration in soybean seed.

8. Analysis of common bean expressed sequence tags identifies sulfur metabolic pathways active in seed and sulfur-rich proteins highly expressed in the absence of phaseolin and major lectins.

9. Analysis of common bean expressed sequence tags identifies sulfur metabolic pathways active in seed and sulfur-rich proteins highly expressed in the absence of phaseolin and major lectins.

10. Proteomic analysis of common bean seed with storage protein deficiency reveals up-regulation of sulfur-rich proteins and starch and raffinose metabolic enzymes, and down-regulation of the secretory pathway

11. Structural basis of potassium activation in plant asparaginases.

12. Arabidopsis mutants lacking asparaginases develop normally but exhibit enhanced root inhibition by exogenous asparagine.

14. The multiplicity of spinal AA-5-HT anti-nociceptive action in a rat model of neuropathic pain.

15. Na+/K+ exchange switches the catalytic apparatus of potassium-dependent plant L-asparaginase.

16. Characterization of Arabidopsis serine:glyoxylate aminotransferase, AGT1, as an asparagine aminotransferase

17. RGS14 Is a Mitotic Spindle Protein Essential from the First Division of the Mammalian Zygote

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