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27 results on '"ALDH18A1"'

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1. Integrative Analysis of Radiation-Induced Senescence-Associated Secretory Phenotype Factors in Kidney Cancer Progression.

2. Targeting the glutamine-arginine-proline metabolism axis in cancer.

3. Deciphering glutamine metabolism patterns for malignancy and tumor microenvironment in clear cell renal cell carcinoma.

4. ALDH18A1‐related hereditary spastic paraplegia and developmental and epileptic encephalopathy with spike‐wave activation in sleep: Expanding the clinical phenotype

5. SPG9A with the new occurrence of an ALDH18A1 mutation in a CMT1A family with PMP22 duplication: case report

6. Proline metabolism in cancer.

7. Novel Compound Missense and Intronic Splicing Mutation in ALDH18A1 Causes Autosomal Recessive Spastic Paraplegia

8. Novel Compound Missense and Intronic Splicing Mutation in ALDH18A1 Causes Autosomal Recessive Spastic Paraplegia.

9. The Role of MYCN in Symmetric vs. Asymmetric Cell Division of Human Neuroblastoma Cells

10. Salubrinal in Combination With 4E1RCat Synergistically Impairs Melanoma Development by Disrupting the Protein Synthetic Machinery

11. Proline Metabolism in Tumor Growth and Metastatic Progression

12. SPG9A with the new occurrence of an ALDH18A1 mutation in a CMT1A family with PMP22 duplication: case report.

13. The Role of MYCN in Symmetric vs. Asymmetric Cell Division of Human Neuroblastoma Cells.

14. Salubrinal in Combination With 4E1RCat Synergistically Impairs Melanoma Development by Disrupting the Protein Synthetic Machinery.

15. Proline Metabolism in Tumor Growth and Metastatic Progression.

16. Hereditary Spastic Paraplegia Is a Common Phenotypic Finding in ARG1 Deficiency, P5CS Deficiency and HHH Syndrome: Three Inborn Errors of Metabolism Caused by Alteration of an Interconnected Pathway of Glutamate and Urea Cycle Metabolism

17. Hereditary Spastic Paraplegia Is a Common Phenotypic Finding in ARG1 Deficiency, P5CS Deficiency and HHH Syndrome: Three Inborn Errors of Metabolism Caused by Alteration of an Interconnected Pathway of Glutamate and Urea Cycle Metabolism.

18. Comparative and evolutionary studies of ALDH18A1 genes and proteins.

19. Recurrent De Novo Mutations Affecting Residue Arg138 of Pyrroline-5-Carboxylate Synthase Cause a Progeroid Form of Autosomal-Dominant Cutis Laxa.

20. Alteration of ornithine metabolism leads to dominant and recessive hereditary spastic paraplegia.

21. Novel Compound Missense and Intronic Splicing Mutation in

22. Autosomal recessive cutis laxa type IIIA: Report of a patient with severe phenotype and review of the literature.

23. A missense mutation in ALDH18A1, encoding Δ1-pyrroline-5-carboxylate synthase (P5CS), causes an autosomal recessive neurocutaneous syndrome.

24. Expanding the Spectrum of Neurological Manifestations in Cutis Laxa, Autosomal Recessive, Type IIIA

25. Compound heterozygous mutations in two different domains of ALDH18A1 do not affect the amino acid levels in a patient with hereditary spastic paraplegia

26. Investigating Metabolic Adaptations of Cancer Cells to Nutrient Stress

27. Alteration of ornithine metabolism leads to dominant and recessive hereditary spastic paraplegia

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