Splicing of precursor mRNAs (pre-mRNA) is an important step during eukaryotic gene expression. The identification of the actual splice sites and the proper removal of introns are essential for the production of the desired mRNA isoforms and their encoded proteins. While the basic mechanisms of splicing regulation are well understood, recent work has uncovered a growing number of noncanonical splicing mechanisms that play key roles in the regulation of gene expression. In this review, we summarize the current principles of splicing regulation, including the impact of cis and trans regulatory elements, as well as the influence of chromatin structure, transcription, and RNA modifications. We further discuss the recent development of emerging s...
Alternative precursor messenger RNA (pre-mRNA) splicing plays a pivotal role in the flow of genetic ...
Splicing is a predominantly co-tran-scriptional process that has been shown to be tightly coupled to...
RNA synthesis by RNA polymerase II and RNA processing are closely coupled during the transcription c...
Precursor messenger RNA (pre-mRNA) splicing is a critical step in the posttranscriptional regulation...
Pre-mRNA splicing, once thought to be a strictly posttranscriptional event in gene expression, is su...
Alternative splicing of pre-mRNAs is a major contributor to both proteomic diversity and control of ...
The generation of protein coding mRNAs from pre-mRNA is a fundamental biological process that is req...
Most eukaryotic protein-coding transcripts contain introns, which vary in number and position along ...
Expression of genetic information proceeds through two major biological events, transcription and tr...
During eukaryotic gene expression, non-coding intron sequences are removed from the protein-coding e...
Most eukaryotic protein-coding genes have one or more introns, and their transcripts can undergo alt...
Transcription and pre-mRNA splicing are extremely complex multimolecular processes that involve prot...
Splicing and alternative splicing are involved in the expression of most human genes, playing key ro...
Alternative splicing plays critical roles in differentiation, development, and disease and is a majo...
The discovery that many intron-containing genes can be cotranscriptionally spliced has led to an inc...
Alternative precursor messenger RNA (pre-mRNA) splicing plays a pivotal role in the flow of genetic ...
Splicing is a predominantly co-tran-scriptional process that has been shown to be tightly coupled to...
RNA synthesis by RNA polymerase II and RNA processing are closely coupled during the transcription c...
Precursor messenger RNA (pre-mRNA) splicing is a critical step in the posttranscriptional regulation...
Pre-mRNA splicing, once thought to be a strictly posttranscriptional event in gene expression, is su...
Alternative splicing of pre-mRNAs is a major contributor to both proteomic diversity and control of ...
The generation of protein coding mRNAs from pre-mRNA is a fundamental biological process that is req...
Most eukaryotic protein-coding transcripts contain introns, which vary in number and position along ...
Expression of genetic information proceeds through two major biological events, transcription and tr...
During eukaryotic gene expression, non-coding intron sequences are removed from the protein-coding e...
Most eukaryotic protein-coding genes have one or more introns, and their transcripts can undergo alt...
Transcription and pre-mRNA splicing are extremely complex multimolecular processes that involve prot...
Splicing and alternative splicing are involved in the expression of most human genes, playing key ro...
Alternative splicing plays critical roles in differentiation, development, and disease and is a majo...
The discovery that many intron-containing genes can be cotranscriptionally spliced has led to an inc...
Alternative precursor messenger RNA (pre-mRNA) splicing plays a pivotal role in the flow of genetic ...
Splicing is a predominantly co-tran-scriptional process that has been shown to be tightly coupled to...
RNA synthesis by RNA polymerase II and RNA processing are closely coupled during the transcription c...