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Sequence‐specific interaction of U1 snRNA with the SMN complex | The EMBO  Journal
Sequence‐specific interaction of U1 snRNA with the SMN complex | The EMBO Journal

The U1 spliceosomal RNA is recurrently mutated in multiple cancers | Nature
The U1 spliceosomal RNA is recurrently mutated in multiple cancers | Nature

Recurrent Spliceosome Mutations in Cancer | Encyclopedia MDPI
Recurrent Spliceosome Mutations in Cancer | Encyclopedia MDPI

Structure of a transcribing RNA polymerase II–U1 snRNP complex | Science
Structure of a transcribing RNA polymerase II–U1 snRNP complex | Science

U1 spliceosomal RNA - Wikipedia
U1 spliceosomal RNA - Wikipedia

U1 spliceosomal RNA - Wikipedia
U1 spliceosomal RNA - Wikipedia

Small Nuclear Rnps (Snrnps) (Molecular Biology)
Small Nuclear Rnps (Snrnps) (Molecular Biology)

Sequence and predicted structure of U1 snRNA chimeric ribozymes. arrows...  | Download Scientific Diagram
Sequence and predicted structure of U1 snRNA chimeric ribozymes. arrows... | Download Scientific Diagram

Chemical Synthesis of U1 snRNA Derivatives | Organic Letters
Chemical Synthesis of U1 snRNA Derivatives | Organic Letters

Polycistronic pre-mRNA processing in vitro: snRNP and pre-mRNA role  reversal in trans-splicing
Polycistronic pre-mRNA processing in vitro: snRNP and pre-mRNA role reversal in trans-splicing

Preparation and identification of anti-transforming growth factor β1 U1  small nuclear RNA chimeric ribozyme in vitro
Preparation and identification of anti-transforming growth factor β1 U1 small nuclear RNA chimeric ribozyme in vitro

Conditional U1 Gene Silencing in Toxoplasma gondii | PLOS ONE
Conditional U1 Gene Silencing in Toxoplasma gondii | PLOS ONE

A new vector, based on the PolII promoter for the U1 snRNA gene, for the  expression of siRNAs in mammalian cells: Molecular Therapy
A new vector, based on the PolII promoter for the U1 snRNA gene, for the expression of siRNAs in mammalian cells: Molecular Therapy

IJMS | Free Full-Text | An Exon-Specific Small Nuclear U1 RNA (ExSpeU1)  Improves Hepatic OTC Expression in a Splicing-Defective spf/ash Mouse Model  of Ornithine Transcarbamylase Deficiency
IJMS | Free Full-Text | An Exon-Specific Small Nuclear U1 RNA (ExSpeU1) Improves Hepatic OTC Expression in a Splicing-Defective spf/ash Mouse Model of Ornithine Transcarbamylase Deficiency

Sequence-specific RNA recognition by an RGG motif connects U1 and U2 snRNP  for spliceosome assembly
Sequence-specific RNA recognition by an RGG motif connects U1 and U2 snRNP for spliceosome assembly

U1A snRNA variants. ( A ) Alignment of the RNA sequences of the U1A,... |  Download Scientific Diagram
U1A snRNA variants. ( A ) Alignment of the RNA sequences of the U1A,... | Download Scientific Diagram

Nuclear splicing and RNA processing
Nuclear splicing and RNA processing

Recurrent non-coding U1-snRNA mutations drive cryptic splicing in Shh  medulloblastoma
Recurrent non-coding U1-snRNA mutations drive cryptic splicing in Shh medulloblastoma

Figures and data in Crystal structure of human U1 snRNP, a small nuclear  ribonucleoprotein particle, reveals the mechanism of 5′ splice site  recognition | eLife
Figures and data in Crystal structure of human U1 snRNP, a small nuclear ribonucleoprotein particle, reveals the mechanism of 5′ splice site recognition | eLife

U1 snRNP-Dependent Suppression of Polyadenylation: Physiological Role and  Therapeutic Opportunities in Cancer
U1 snRNP-Dependent Suppression of Polyadenylation: Physiological Role and Therapeutic Opportunities in Cancer

Chemical Synthesis of U1 snRNA Derivatives | Organic Letters
Chemical Synthesis of U1 snRNA Derivatives | Organic Letters

A Gene Therapeutic Approach to Correct Splice Defects with Modified U1 and  U6 snRNPs | Human Gene Therapy
A Gene Therapeutic Approach to Correct Splice Defects with Modified U1 and U6 snRNPs | Human Gene Therapy

Insights into the U1 small nuclear ribonucleoprotein complex superfamily -  Guiro - 2015 - WIREs RNA - Wiley Online Library
Insights into the U1 small nuclear ribonucleoprotein complex superfamily - Guiro - 2015 - WIREs RNA - Wiley Online Library

Recurrent noncoding U1 snRNA mutations drive cryptic splicing in SHH  medulloblastoma | Nature
Recurrent noncoding U1 snRNA mutations drive cryptic splicing in SHH medulloblastoma | Nature