The exosome is a conserved multi-subunit ribonuclease complex that functions in 3' end processing, turnover and surveillance of nuclear and cytoplasmic RNAs. In the yeast nucleus, the 10-subunit core complex of the exosome (Exo-10) physically and functionally interacts with the Rrp6 exoribonuclease and its associated cofactor Rrp47, the helicase Mtr4 and Mpp6. Here, we show that binding of Mtr4 to Exo-10 in vitro is dependent upon both Rrp6 and Rrp47, whereas Mpp6 binds directly and independently of other cofactors. Crystallographic analyses reveal that the N-terminal domains of Rrp6 and Rrp47 form a highly intertwined structural unit. Rrp6 and Rrp47 synergize to create a composite and conserved surface groove that binds the N-terminus of M...
Mtr4 is an essential RNA helicase involved in nuclear RNA processing and degradation and is a member...
The nuclear exosome and its essential co-factor, the RNA helicase MTR4, play crucial roles in severa...
RNA processing and degradation are two important functions that control gene expression and promote ...
The exosome is a conserved multi‐subunit ribonuclease complex that functions in 3′ end processing, t...
The RNA-degrading exosome mediates the processing and decay of many cellular transcripts. In the yea...
The RNA exosome is an essential 3’-5 ribonuclease that processes or degrades a variety of RNA specie...
Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex that fu...
<div><p>Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex...
Mtr4 is a conserved RNA helicase that functions together with the nuclear exosome. It participates i...
The nuclear exosome and the associated RNA helicase Mtr4 participate in the processing of several ri...
The exosome complex is a key component of the cellular RNA surveillance machinery and is required fo...
The exosome is a conserved macromolecular complex essential for RNA degradation. The nine-subunit co...
SummaryThe exosome is a conserved macromolecular complex essential for RNA degradation. The nine-sub...
The eukaryotic exosome is a conserved RNA-degrading complex that functions in RNA surveillance, turn...
Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex that fu...
Mtr4 is an essential RNA helicase involved in nuclear RNA processing and degradation and is a member...
The nuclear exosome and its essential co-factor, the RNA helicase MTR4, play crucial roles in severa...
RNA processing and degradation are two important functions that control gene expression and promote ...
The exosome is a conserved multi‐subunit ribonuclease complex that functions in 3′ end processing, t...
The RNA-degrading exosome mediates the processing and decay of many cellular transcripts. In the yea...
The RNA exosome is an essential 3’-5 ribonuclease that processes or degrades a variety of RNA specie...
Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex that fu...
<div><p>Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex...
Mtr4 is a conserved RNA helicase that functions together with the nuclear exosome. It participates i...
The nuclear exosome and the associated RNA helicase Mtr4 participate in the processing of several ri...
The exosome complex is a key component of the cellular RNA surveillance machinery and is required fo...
The exosome is a conserved macromolecular complex essential for RNA degradation. The nine-subunit co...
SummaryThe exosome is a conserved macromolecular complex essential for RNA degradation. The nine-sub...
The eukaryotic exosome is a conserved RNA-degrading complex that functions in RNA surveillance, turn...
Rrp6 is a conserved catalytic subunit of the eukaryotic nuclear exosome ribonuclease complex that fu...
Mtr4 is an essential RNA helicase involved in nuclear RNA processing and degradation and is a member...
The nuclear exosome and its essential co-factor, the RNA helicase MTR4, play crucial roles in severa...
RNA processing and degradation are two important functions that control gene expression and promote ...