Essential Role for the Tudor Domain of SMN in Spliceosomal U snRNP Assembly: Implications for Spinal Muscular Atrophy
Open Access
- 1 December 1999
- journal article
- research article
- Published by Oxford University Press (OUP) in Human Molecular Genetics
- Vol. 8 (13), 2351-2357
- https://doi.org/10.1093/hmg/8.13.2351
Abstract
Spinal muscular atrophy (SMA) is a neurodegenerative disease of spinal motor neurons caused by reduced levels of functional survival of motor neurons (SMN) protein. SMN is part of a macromolecular complex that contains the SMN-interacting protein 1 (SIP1) and spliceosomal Sm proteins. Although it is clear that SIP1 as a component of this complex is essential for spliceosomal uridine-rich small ribonucleoprotein (U snRNP) assembly, the role of SMN and its functional interactions with SIP1 and Sm proteins are poorly understood. Here we show that the central region of SMN comprising a tudor domain facilitates direct binding to Sm proteins. Strikingly, the SMA-causing missense mutation E134K within the tudor domain severely reduced the ability of SMN to interact with Sm proteins. Moreover, antibodies directed against the tudor domain prevent Sm protein binding to SMN and abolish assembly of U snRNPs in vivo. Thus, our data show that SMN is an essential U snRNP assembly factor and establish a direct correlation between defects in the biogenesis of U snRNPs and SMA.Keywords
This publication has 21 references indexed in Scilit:
- A single nucleotide in the SMN gene regulates splicing and is responsible for spinal muscular atrophyProceedings of the National Academy of Sciences, 1999
- The role of the SMN gene in proximal spinal muscular atrophyHuman Molecular Genetics, 1998
- The domain encoded by exon 2 of the survival motor neuron protein mediates nucleic acid binding [published erratum appears in Hum Mol Genet 1998 Oct;7(11):1831]Human Molecular Genetics, 1998
- The Spinal Muscular Atrophy Disease Gene Product, SMN, and Its Associated Protein SIP1 Are in a Complex with Spliceosomal snRNP ProteinsCell, 1997
- The SMN–SIP1 Complex Has an Essential Role in Spliceosomal snRNP BiogenesisCell, 1997
- Correlation between severity and SMN protein level in spinal muscular atrophyNature Genetics, 1997
- An Essential Signaling Role for the m 3 G Cap in the Transport of U1 snRNP to the NucleusScience, 1990
- The trimethylguanosine cap structure of U1 snRNA is a component of a bipartite nuclear targeting signalCell, 1990
- Cap trimethylation of U snRNA is cytoplasmic and dependent on U snRNP protein bindingCell, 1986
- Small nuclear ribonucleoprotein particle assembly in vivo: Demonstration of a 6S RNA-free core precursor and posttranslational modificationCell, 1985