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1. Ultrasensitive detection of DNA and protein markers in cancer cells.

2. Labeling native bacterial RNA in live cells.

3. Analysis of RNA localization and metabolism in single live bacterial cells: achievements and challenges.

4. Visualization of induced RNA in single bacterial cells.

5. Spatiotemporal patterns and transcription kinetics of induced RNA in single bacterial cells.

6. Ab initio RNA folding by discrete molecular dynamics: from structure prediction to folding mechanisms.

7. Visualization of RNA using fluorescence complementation triggered by aptamer-protein interactions (RFAP) in live bacterial cells.

8. RNA visualization in live bacterial cells using fluorescent protein complementation.

9. Fast complementation of split fluorescent protein triggered by DNA hybridization.

10. Profluorescent protein fragments for fast bimolecular fluorescence complementation in vitro.

12. A cancer roadmap.

14. GC/AT-content spikes as genomic punctuation marks.

15. Neurological diseases and RNA-directed gene regulation: prospects for new diagnostics and therapy.

16. Stem-loop oligonucleotides: a robust tool for molecular biology and biotechnology.

17. Differential display in the time of microarrays.

18. DNA microarrays with stem-loop DNA probes: preparation and applications.

19. High-level multiplex DNA amplification.

20. An artificial primosome: design, function, and applications.

21. Multiplex allele-specific target amplification based on PCR suppression.

22. PNA openers as a tool for direct quantification of specific targets in duplex DNA.

23. PCR based targeted genomic and cDNA differential display.

24. High polymorphism level of genomic sequences flanking insertion sites of human endogenous retroviral long terminal repeats.

25. Probing the genetic population structure of Trypanosoma cruzi with polymorphic microsatellites.

26. Instrumentation in molecular biomedical diagnostics: an overview.

27. Differential display of genome subsets containing specific interspersed repeats.

28. Efficient preparation of short DNA sequence ladders potentially suitable for MALDI-TOF DNA sequencing.

29. A DNA sequencing strategy that requires only five bases of known terminal sequence for priming.

30. Enhanced DNA sequencing by hybridization.

31. Ion-transporting ATPases: reverse genetics and direct logic.

32. Tissue-specific expression of Na,K-ATPase beta-subunit. Does beta 2 expression correlate with tumorigenesis?

33. The family of human Na,K-ATPase genes. ATP1AL1 gene is transcriptionally competent and probably encodes the related ion transport ATPase.

34. [The hormonal regulation of mRNA Na,K-ATPase expression in rat kidneys in postnatal ontogeny].

35. A comparative analysis of the putative regulatory regions in human genes for the alpha-subunit family of Na(+)-K+ ATPase.

36. [Human Na+,K+-ATPase genes. Gene family and pseudogene for beta-subunit].

38. Modification of yeast tRNA1 Val with glyoxal.

39. Family of human Na+, K+-ATPase genes. Structure of the gene for the catalytic subunit (alpha III-form) and its relationship with structural features of the protein.

41. [Primary structure of the alpha-subunit of Na+,K+-ATPase from the swine kidney. III. Complete nucleotide sequence corresponding to the structural region of the gene].

42. The family of human Na+,K+-ATPase genes. No less than five genes and/or pseudogenes related to the alpha-subunit.

43. Human Na+,K+-ATPase genes. Beta-subunit gene family contains at least one gene and one pseudogene.

44. The family of human Na+,K+-ATPase genes. A partial nucleotide sequence related to the alpha-subunit.

45. [Ribosomal proteins directly interacting with fMet-tRNAfMet in the 30S initiation complex].

47. Proteins of the 30-S subunit of Escherichia coli ribosomes which interact directly with natural mRNA.

49. Chromosomal localization of the gene coding for the beta-subunit of Na+,K+-ATPase in the American mink (Mustela vison).

50. Family of Na+,K+-ATPase genes. Intra-individual tissue-specific restriction fragment length polymorphism.

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