scholarly journals Distinct functions of the closely related tandem RNA-recognition motifs of hnRNP A1

RNA ◽  
1998 ◽  
Vol 4 (9) ◽  
pp. 1111-1123 ◽  
Author(s):  
AKILA MAYEDA ◽  
STEPHEN H. MUNROE ◽  
RUI-MING XU ◽  
ADRIAN R. KRAINER
2016 ◽  
Vol 2016 ◽  
pp. 1-9 ◽  
Author(s):  
Young Jun Choi ◽  
Je-Hyun Yoon ◽  
Jeong Ho Chang

AU-rich element binding/degradation factor 1 (AUF1) plays a role in destabilizing mRNAs by forming complexes with AU-rich elements (ARE) in the 3′-untranslated regions. Multiple AUF1-ARE complexes regulate the translation of encoded products related to the cell cycle, apoptosis, and inflammation. AUF1 contains two tandem RNA recognition motifs (RRM) and a Gln- (Q-) rich domain in their C-terminal region. To observe how the two RRMs are involved in recognizing ARE, we obtained the AUF1-p37 protein covering the two RRMs. However, only N-terminal RRM (RRM1) was crystallized and its structure was determined at 1.7 Å resolution. It appears that the RRM1 and RRM2 separated before crystallization. To demonstrate which factors affect the separate RRM1-2, we performed limited proteolysis using trypsin. The results indicated that the intact proteins were cleaved by unknown proteases that were associated with them prior to crystallization. In comparison with each of the monomers, the conformations of theβ2-β3 loops were highly variable. Furthermore, a comparison with the RRM1-2 structures of HuR and hnRNP A1 revealed that a dimer of RRM1 could be one of the possible conformations of RRM1-2. Our data may provide a guidance for further structural investigations of AUF1 tandem RRM repeat and its mode of ARE binding.


eLife ◽  
2017 ◽  
Vol 6 ◽  
Author(s):  
Irene Beusch ◽  
Pierre Barraud ◽  
Ahmed Moursy ◽  
Antoine Cléry ◽  
Frédéric Hai-Trieu Allain

HnRNP A1 regulates many alternative splicing events by the recognition of splicing silencer elements. Here, we provide the solution structures of its two RNA recognition motifs (RRMs) in complex with short RNA. In addition, we show by NMR that both RRMs of hnRNP A1 can bind simultaneously to a single bipartite motif of the human intronic splicing silencer ISS-N1, which controls survival of motor neuron exon 7 splicing. RRM2 binds to the upstream motif and RRM1 to the downstream motif. Combining the insights from the structure with in cell splicing assays we show that the architecture and organization of the two RRMs is essential to hnRNP A1 function. The disruption of the inter-RRM interaction or the loss of RNA binding capacity of either RRM impairs splicing repression by hnRNP A1. Furthermore, both binding sites within the ISS-N1 are important for splicing repression and their contributions are cumulative rather than synergistic.


Structure ◽  
1997 ◽  
Vol 5 (4) ◽  
pp. 559-570 ◽  
Author(s):  
Rui-Ming Xu ◽  
Lana Jokhan ◽  
Xiaodong Cheng ◽  
Akila Mayeda ◽  
Adrian R Krainer

2005 ◽  
Vol 25 (1) ◽  
pp. 150-162 ◽  
Author(s):  
Francesca Vitali ◽  
Anke Henning ◽  
Florian C Oberstrass ◽  
Yann Hargous ◽  
Sigrid D Auweter ◽  
...  

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