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1. Nfs1 cysteine desulfurase protein complexes and phosphorylation sites as assessed by mass spectrometry

2. Turning Saccharomyces cerevisiae into a Frataxin-Independent Organism.

4. Characteristics of the Isu1 C-terminus in relation to [2Fe-2S] cluster assembly and ISCU Myopathy

5. Splitting the functions of Rim2, a mitochondrial iron/pyrimidine carrier

6. Mitochondria export iron–sulfur and sulfur intermediates to the cytoplasm for iron–sulfur cluster assembly and tRNA thiolation in yeast

7. Cysteine desulfurase is regulated by phosphorylation of Nfs1 in yeast mitochondria

8. Nfs1 cysteine desulfurase protein complexes and phosphorylation sites as assessed by mass spectrometry

9. In vitro characterization of a novel Isu homologue from Drosophila melanogaster for de novo FeS-cluster formation

10. Roles of Fe–S proteins: from cofactor synthesis to iron homeostasis to protein synthesis

11. Mitochondria Export Sulfur Species Required for Cytosolic tRNA Thiolation

12. Fe-S Cluster Biogenesis in Isolated Mammalian Mitochondria

14. Ionizing radiation-induced metabolic oxidative stress and prolonged cell injury

15. Identification of a Nfs1p-bound persulfide intermediate in Fe–S cluster synthesis by intact mitochondria

16. Mitochondrial NADH Kinase, Pos5p, Is Required for Efficient Iron-Sulfur Cluster Biogenesis in Saccharomyces cerevisiae

17. Frataxin and Mitochondrial FeS Cluster Biogenesis

18. Mitochondrial Complex II Dysfunction Can Contribute Significantly to Genomic Instability after Exposure to Ionizing Radiation

19. Normal Human Fibroblasts Exposed to High- or Low-Dose Ionizing Radiation: Differential Effects on Mitochondrial Protein Import and Membrane Potential

20. A GTP:AMP Phosphotransferase, Adk2p, in Saccharomyces cerevisiae

21. Nucleoside diphosphate kinase of Saccharomyces cerevisiae, Ynk1p: localization to the mitochondrial intermembrane space

23. Fe-S cluster biogenesis in isolated mammalian mitochondria: coordinated use of persulfide sulfur and iron and requirements for GTP, NADH, and ATP

24. Frataxin or a mutant Fe‐S cluster scaffold protein with frataxin‐bypassing ability directly stimulates mitochondrial cysteine desulfurase by exposing substrate‐binding sites (578.4)

25. Distinct roles for two N-terminal cleaved domains in mitochondrial import of the yeast frataxin homolog, Yfh1p

26. Adrenodoxin Reductase Homolog (Arh1p) of Yeast Mitochondria Required for Iron Homeostasis

27. Mechanisms of mitochondrial protein import

28. Dual targeting of cytochrome P4502B1 to endoplasmic reticulum and mitochondria involves a novel signal activation by cyclic AMP-dependent phosphorylation at Ser128

29. A Multisubunit Complex of Outer and Inner Mitochondrial Membrane Protein Translocases Stabilized in Vivo by Translocation Intermediates

30. The Yeast Connection to Friedreich Ataxia

31. Mt-Hsp70 Homolog, Ssc2p, Required for Maturation of Yeast Frataxin and Mitochondrial Iron Homeostasis

32. The Mechanism of Action of Steroidogenic Acute Regulatory Protein (StAR)

33. Frataxin-bypassing Isu1: characterization of the bypass activity in cells and mitochondria

34. Frataxin Directly Stimulates Mitochondrial Cysteine Desulfurase by Exposing Substrate-binding Sites, and a Mutant Fe-S Cluster Scaffold Protein with Frataxin-bypassing Ability Acts Similarly*♦

35. Mitochondrial two-component signaling systems in Candida albicans

36. Steroidogenic acute regulatory protein (StAR) retains activity in the absence of its mitochondrial import sequence: Implications for the mechanism of StAR action

37. Role of the translationally controlled tumor protein in DNA damage sensing and repair

38. Rim2, a pyrimidine nucleotide exchanger, is needed for iron utilization in mitochondria

39. Mutation in the Fe-S scaffold protein Isu bypasses frataxin deletion

40. Isd11p Protein Activates the Mitochondrial Cysteine Desulfurase Nfs1p Protein*

41. Long-term consequences of radiation-induced bystander effects depend on radiation quality and dose and correlate with oxidative stress

42. Chapter 14 Nucleotide-dependent iron-sulfur cluster biogenesis of endogenous and imported apoproteins in isolated intact mitochondria

43. Chapter 14 Nucleotide‐Dependent Iron‐Sulfur Cluster Biogenesis of Endogenous and Imported Apoproteins in Isolated Intact Mitochondria

44. Signal peptide analogs derived from two chloroplast precursors interact with the signal recognition system of the chloroplast envelope

45. Dre2, a Conserved Eukaryotic Fe/S Cluster Protein, Functions in Cytosolic Fe/S Protein Biogenesis▿

46. Isolation and characterization of the gene for a yeast mitochondrial import receptor

47. Identification of a receptor for protein import into mitochondria

48. The chloroplast import receptor is an integral membrane protein of chloroplast envelope contact sites

49. GTP is required for iron-sulfur cluster biogenesis in mitochondria

50. GTP in the mitochondrial matrix plays a crucial role in organellar iron homoeostasis

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