User:Dzmitry Mukha/sandbox1
From Proteopedia
(Difference between revisions)
| Line 3: | Line 3: | ||
'''hnRNP A1''' is a member of A/B subfamily of heterogeneous nuclear ribonucleoproteins (hnRNPs). The hnRNPs are RNA binding proteins and they complex with heterogeneous nuclear RNA (hnRNA). hnRNP A1 is involved in the packaging of premature mRNA into hnRNP particles and transport of poly(A) mRNA from the nucleus to the cytoplasm. hnRNP A1 has been characterized as a component of protein complexes bound to premature mRNA (hnRNP complexes). hnRNP A1 is one of the most abundant and best-characterized components of hnRNP complexes. Human hnRNP functions also in telomere length regulation and miRNA biogenesis. It may play a role in the replication of RNA viruses. | '''hnRNP A1''' is a member of A/B subfamily of heterogeneous nuclear ribonucleoproteins (hnRNPs). The hnRNPs are RNA binding proteins and they complex with heterogeneous nuclear RNA (hnRNA). hnRNP A1 is involved in the packaging of premature mRNA into hnRNP particles and transport of poly(A) mRNA from the nucleus to the cytoplasm. hnRNP A1 has been characterized as a component of protein complexes bound to premature mRNA (hnRNP complexes). hnRNP A1 is one of the most abundant and best-characterized components of hnRNP complexes. Human hnRNP functions also in telomere length regulation and miRNA biogenesis. It may play a role in the replication of RNA viruses. | ||
| - | Human hnRNP A1 consists of 320 amino acids. N-terminal region is composed of 2 RNA recognition motifs (RRM) followed by highly flexible C-terminal glycine-rich region (45 % of glycine). RRM1 and RRM2 (span residues 1 to 196) form unwinding protein 1 (UP1). | + | Human hnRNP A1 consists of 320 amino acids. N-terminal region is composed of 2 RNA recognition motifs (RRM) followed by highly flexible C-terminal glycine-rich region (45 % of glycine). RRM1 and RRM2 (span residues 1 to 196) together form unwinding protein 1 (UP1). |
To date, several crystal structures of UP1 have been solved both in their free form and bound to repeats of telomeric DNA fragments. | To date, several crystal structures of UP1 have been solved both in their free form and bound to repeats of telomeric DNA fragments. | ||
| Line 14: | Line 14: | ||
NMR structure of hnRNP A1 (RRM domains) was determined using a segmental labeling strategy. In the solution structure of free UP1, the two Arg-Asp salt bridges are conserved at the interface between RRM1 and RRM2. | NMR structure of hnRNP A1 (RRM domains) was determined using a segmental labeling strategy. In the solution structure of free UP1, the two Arg-Asp salt bridges are conserved at the interface between RRM1 and RRM2. | ||
| - | |||
| - | == THE REST == | ||
| - | |||
| - | This is a default text for your page '''Dzmitry Mukha/sandbox1'''. Click above on '''edit this page''' to modify. Be careful with the < and > signs. | ||
| - | You may include any references to papers as in: the use of JSmol in Proteopedia <ref>DOI 10.1002/ijch.201300024</ref> or to the article describing Jmol <ref>PMID:21638687</ref> to the rescue. | ||
| - | |||
| - | == Function == | ||
| - | |||
| - | == Disease == | ||
| - | |||
| - | == Relevance == | ||
== Structural highlights == | == Structural highlights == | ||
| Line 30: | Line 19: | ||
This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes. | This is a sample scene created with SAT to <scene name="/12/3456/Sample/1">color</scene> by Group, and another to make <scene name="/12/3456/Sample/2">a transparent representation</scene> of the protein. You can make your own scenes on SAT starting from scratch or loading and editing one of these sample scenes. | ||
| - | + | Myers, J.C., Moore, S.A., Shamoo, Y. Structure-based incorporation of 6-methyl-8-(2-deoxy-beta-ribofuranosyl)isoxanthopteridine into the human telomeric repeat DNA as a probe for UP1 binding and destabilization of G-tetrad structures. (2003) J.BIOL.CHEM. 278: 42300-42306 | |
| - | + | Myers, J.C., Shamoo, Y. Human UP1 as a model for understanding purine recognition in the family of proteins containing the RNA recognition motif (RRM). (2004) J.Mol.Biol. 342: 743-756 | |
| - | + | Barraud, P., Allain, F.H. Solution structure of the two RNA recognition motifs of hnRNP A1 using segmental isotope labeling: how the relative orientation between RRMs influences the nucleic acid binding topology. (2013) J.Biomol.Nmr 55: 119-138 | |
</StructureSection> | </StructureSection> | ||
== References == | == References == | ||
<references/> | <references/> | ||
Revision as of 11:08, 5 May 2015
Nucleic acid binding mechanism of hnRNP A1
| |||||||||||
