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81 results on '"Angus I. Lamond"'

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1. Composition of the Survival Motor Neuron (SMN) Complex in Drosophila melanogaster

3. EMSY expression affects multiple components of the skin barrier with relevance to atopic dermatitis

4. Composition of the Survival Motor Neuron (SMN) Complex in Drosophila melanogaster

5. Brd4‐Brd2 isoform switching coordinates pluripotent exit and Smad2‐dependent lineage specification

6. The NEDD8 inhibitor MLN4924 increases the size of the nucleolus and activates p53 through the ribosomal-Mdm2 pathway

7. The Aquarius/EMB-4 helicase licenses co-transcriptional gene silencing

8. Unlocking the chromatin code by deciphering protein– <scp>DNA</scp> interactions

9. The histone chaperone Vps75 forms multiple oligomeric assemblies capable of mediating exchange between histone H3-H4 tetramers and Asf1-H3-H4 complexes

10. Common genetic variation drives molecular heterogeneity in human iPSCs

11. Enhanced snoMEN Vectors Facilitate Establishment of GFP-HIF-1α Protein Replacement Human Cell Lines

12. Human box C/D snoRNA processing conservation across multiple cell types

13. Exo70, a subunit of the exocyst complex, interacts with SNEVhPrp19/hPso4 and is involved in pre-mRNA splicing

14. Identification of human miRNA precursors that resemble box C/D snoRNAs

15. Direct interaction between hnRNP‐M and CDC5L/PLRG1 proteins affects alternative splice site choice

16. Characterization and prediction of protein nucleolar localization sequences

17. Blom7α Is a Novel Heterogeneous Nuclear Ribonucleoprotein K Homology Domain Protein Involved in Pre-mRNA Splicing That Interacts with SNEVPrp19-Pso4

18. NOPdb: Nucleolar Proteome Database—2008 update

19. Spatial mapping of splicing factor complexes involved in exon and intron definition

20. The multifunctional nucleolus

21. Condensin and Repo-Man–PP1 co-operate in the regulation of chromosome architecture during mitosis

22. SNEV is an evolutionarily conserved splicing factor whose oligomerization is necessary for spliceosome assembly

23. hLodestar/HuF2 interacts with CDC5L and is involved in pre-mRNA splicing

24. The Dynamics of the Nucleolus

25. Erratum: Corrigendum: Common genetic variation drives molecular heterogeneity in human iPSCs

26. PRCC, the commonest TFE3 fusion partner in papillary renal carcinoma is associated with pre-mRNA splicing factors

27. Nuclear organization of pre-mRNA splicing factors

28. NOPdb: Nucleolar Proteome Database

29. RNA-binding protein GLD-1/quaking genetically interacts with the mir-35 and the let-7 miRNA pathways in Caenorhabditis elegans

30. p72: a human nuclear DEAD box protein highly related to p68

31. RNA splicing: Unexpected spliceosome diversity

32. Perturbation of chromatin structure globally affects localization and recruitment of splicing factors

33. Nucleus and gene expression

34. An intranucleolar body associated with rDNA

35. PNAC: a protein nucleolar association classifier

36. Non-snRNP protein splicing factors

37. High-Resolution Whole-Genome Sequencing Reveals That Specific Chromatin Domains from Most Human Chromosomes Associate with Nucleoli

38. The serine/arginine-rich protein SF2/ASF regulates protein sumoylation

39. Analysis of human small nucleolar RNAs (snoRNA) and the development of snoRNA modulator of gene expression vectors

40. A proteomic screen for nucleolar SUMO targets shows SUMOylation modulates the function of Nop5/Nop58

41. Transcription-dependent colocalization of the U1, U2, U4/U6, and U5 snRNPs in coiled bodies

42. Ser/Thr-specific protein phosphatases are required for both catalytic steps of pre-mRNA splicing

43. Human miRNA Precursors with Box H/ACA snoRNA Features

44. Antisense probes containing 2-aminoadenosine allow efficient depletion of U5 snRNP from HeLa splicing extracts

45. Where in the cell is the minor spliceosome?

46. Catalytic RNA and the origin of genetic systems

47. Metabolic complexity in the RNA world and implications for the origin of protein synthesis

48. Spliceosome assembly: The unwinding role of DEAD-box proteins

49. Mitotic phosphatases: no longer silent partners

50. Proteomic analysis of the Arabidopsis nucleolus suggests novel nucleolar functions

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