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1. Charles Scriver: Epitome of the physician scientist.

2. Phenylalanine ammonia lyase (PAL): From discovery to enzyme substitution therapy for phenylketonuria.

3. Tetrahydrobiopterin treatment reduces brain L-Phe but only partially improves serotonin in hyperphenylalaninemic ENU1/2 mice.

4. Crowd-funded micro-grants for genomics and "big data": an actionable idea connecting small (artisan) science, infrastructure science, and citizen philanthropy.

5. The mechanism of BH4 -responsive hyperphenylalaninemia--as it occurs in the ENU1/2 genetic mouse model.

6. Chaperone-like therapy with tetrahydrobiopterin in clinical trials for phenylketonuria: is genotype a predictor of response?

7. Evaluation of orally administered PEGylated phenylalanine ammonia lyase in mice for the treatment of Phenylketonuria.

8. Converting an injectable protein therapeutic into an oral form: phenylalanine ammonia lyase for phenylketonuria.

9. What we know that could influence future treatment of phenylketonuria.

10. Preclinical evaluation of multiple species of PEGylated recombinant phenylalanine ammonia lyase for the treatment of phenylketonuria.

11. Structural and biochemical characterization of the therapeutic Anabaena variabilis phenylalanine ammonia lyase.

12. Structure-based epitope and PEGylation sites mapping of phenylalanine ammonia-lyase for enzyme substitution treatment of phenylketonuria.

13. Quantitation of phenylalanine and its trans-cinnamic, benzoic and hippuric acid metabolites in biological fluids in a single GC-MS analysis.

14. Phenylalanine ammonia lyase, enzyme substitution therapy for phenylketonuria, where are we now?

15. Structure-based chemical modification strategy for enzyme replacement treatment of phenylketonuria.

16. Development of pegylated forms of recombinant Rhodosporidium toruloides phenylalanine ammonia-lyase for the treatment of classical phenylketonuria.

17. The phenylketonuria mouse model: a meeting review.

18. Measurement of phenyllactate, phenylacetate, and phenylpyruvate by negative ion chemical ionization-gas chromatography/mass spectrometry in brain of mouse genetic models of phenylketonuria and non-phenylketonuria hyperphenylalaninemia.

19. A heteroallelic mutant mouse model: A new orthologue for human hyperphenylalaninemia.

20. A different approach to treatment of phenylketonuria: phenylalanine degradation with recombinant phenylalanine ammonia lyase.

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