Search

Your search keyword '"SMN Complex Proteins chemistry"' showing total 24 results

Search Constraints

Start Over You searched for: Descriptor "SMN Complex Proteins chemistry" Remove constraint Descriptor: "SMN Complex Proteins chemistry" Search Limiters Full Text Remove constraint Search Limiters: Full Text
24 results on '"SMN Complex Proteins chemistry"'

Search Results

1. Pathogenic variants in the survival of motor neurons complex gene GEMIN5 cause cerebellar atrophy.

2. The RBS1 domain of Gemin5 is intrinsically unstructured and interacts with RNA through conserved Arg and aromatic residues.

3. Assembly of higher-order SMN oligomers is essential for metazoan viability and requires an exposed structural motif present in the YG zipper dimer.

4. Identification and structural analysis of the Schizosaccharomyces pombe SMN complex.

5. DMA-tudor interaction modules control the specificity of in vivo condensates.

6. RNA-protein coevolution study of Gemin5 uncovers the role of the PXSS motif of RBS1 domain for RNA binding.

7. Emerging Roles of Gemin5: From snRNPs Assembly to Translation Control.

8. Structural basis for the dimerization of Gemin5 and its role in protein recruitment and translation control.

9. Negative cooperativity between Gemin2 and RNA provides insights into RNA selection and the SMN complex's release in snRNP assembly.

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

11. Mild SMN missense alleles are only functional in the presence of SMN2 in mammals.

12. The right pick: structural basis of snRNA selection by Gemin5.

13. Structural basis for snRNA recognition by the double-WD40 repeat domain of Gemin5.

14. Structural insights into Gemin5-guided selection of pre-snRNAs for snRNP assembly.

15. Gemin5: A Multitasking RNA-Binding Protein Involved in Translation Control.

16. The SMN structure reveals its crucial role in snRNP assembly.

17. SMA-causing missense mutations in survival motor neuron (Smn) display a wide range of phenotypes when modeled in Drosophila.

18. Protein structure validation and refinement using amide proton chemical shifts derived from quantum mechanics.

19. Gemin5 promotes IRES interaction and translation control through its C-terminal region.

20. Gemin5 proteolysis reveals a novel motif to identify L protease targets.

21. Crystal structure of TDRD3 and methyl-arginine binding characterization of TDRD3, SMN and SPF30.

22. Structural basis for dimethylarginine recognition by the Tudor domains of human SMN and SPF30 proteins.

23. SMN-assisted assembly of snRNP-specific Sm cores in trypanosomes.

24. Role of survival motor neuron complex components in small nuclear ribonucleoprotein assembly.

Catalog

Books, media, physical & digital resources