Javascript must be enabled to continue!
aCPSF1 controlled archaeal transcription termination: a prototypical eukaryotic model
View through CrossRef
Abstract
Transcription termination defines RNA 3′-ends and guarantees programmed transcriptomes, thus is an essential biological process for life. However, transcription termination mechanisms remain almost unknown in Archaea. Here reported the first general transcription termination factor of Archaea, the conserved ribonuclease aCPSF1, and elucidated its 3′-end cleavage dependent termination mechanism. Depletion of
Mmp-aCPSF1
in a methanoarchaeon
Methanococcus maripaludis
caused a genome-wide transcription termination defect and overall transcriptome chaos, and cold-sensitive growth. Transcript-3′end-sequencing (Term-seq) revealed transcriptions mostly terminated downstream of a uridine-rich terminator motif, where
Mmp
-aCPSF1 performed cleavage. The endoribonuclease activity was determined essential to terminate transcription
in vivo
as well. Through super-resolution photoactivated localization microscopy imaging, co-immunoprecipitation, and chromatin immunoprecipitation, we demonstrated that
Mmp
-aCPSF1 localizes within nucleoid and associates with RNAP and chromosomes. aCPSF1 appears to co-evolve with archaeal RNAPs, and two distant orthologs each from
Lokiarchaeota
and
Thaumarchaeota
could replace
Mmp
-aCPSF1 to termination transcription. Thus, aCPSF1 dependent termination mechanism could be universally employed in Archaea, including
Lokiarchaeota
, one supposed archaeal ancestor of Eukaryotes. Therefore, the reported aCPSF1 cleavage-dependent termination mode not only hints an archetype of Eukaryotic 3′-end processing/cleavage triggered RNAP II termination, but also would shed lights on understanding the complex eukaryotic termination based on the simplified archaeal model.
Title: aCPSF1 controlled archaeal transcription termination: a prototypical eukaryotic model
Description:
Abstract
Transcription termination defines RNA 3′-ends and guarantees programmed transcriptomes, thus is an essential biological process for life.
However, transcription termination mechanisms remain almost unknown in Archaea.
Here reported the first general transcription termination factor of Archaea, the conserved ribonuclease aCPSF1, and elucidated its 3′-end cleavage dependent termination mechanism.
Depletion of
Mmp-aCPSF1
in a methanoarchaeon
Methanococcus maripaludis
caused a genome-wide transcription termination defect and overall transcriptome chaos, and cold-sensitive growth.
Transcript-3′end-sequencing (Term-seq) revealed transcriptions mostly terminated downstream of a uridine-rich terminator motif, where
Mmp
-aCPSF1 performed cleavage.
The endoribonuclease activity was determined essential to terminate transcription
in vivo
as well.
Through super-resolution photoactivated localization microscopy imaging, co-immunoprecipitation, and chromatin immunoprecipitation, we demonstrated that
Mmp
-aCPSF1 localizes within nucleoid and associates with RNAP and chromosomes.
aCPSF1 appears to co-evolve with archaeal RNAPs, and two distant orthologs each from
Lokiarchaeota
and
Thaumarchaeota
could replace
Mmp
-aCPSF1 to termination transcription.
Thus, aCPSF1 dependent termination mechanism could be universally employed in Archaea, including
Lokiarchaeota
, one supposed archaeal ancestor of Eukaryotes.
Therefore, the reported aCPSF1 cleavage-dependent termination mode not only hints an archetype of Eukaryotic 3′-end processing/cleavage triggered RNAP II termination, but also would shed lights on understanding the complex eukaryotic termination based on the simplified archaeal model.
Related Results
Deciphering the archaeal communities in tree rhizosphere of the Qinghai-Tibetan Plateau
Deciphering the archaeal communities in tree rhizosphere of the Qinghai-Tibetan Plateau
Abstract
Background: The Qinghai-Tibetan Plateau represents one of the most important component of the terrestrial ecosystem and a particularly vulnerable region, which har...
Intrinsic RNA hairpin-mediated transcription termination at high temperature in
Thermus aquaticus
Intrinsic RNA hairpin-mediated transcription termination at high temperature in
Thermus aquaticus
ABSTRACT
Transcription termination establishes gene boundaries and limits regulatory interference. In bacteria, intrinsic termination, mediated b...
Factor-dependent archaeal transcription termination
Factor-dependent archaeal transcription termination
Significance
Proper transcription regulation is necessary for timely and accurate gene expression underlying growth and development. Transcription is regulated at...
Archaeal communities in natural and artificially restored mangrove sediments in Tieshan Bay, China
Archaeal communities in natural and artificially restored mangrove sediments in Tieshan Bay, China
Mangrove forests are crucial wetland ecosystems located in tropical and subtropical intertidal zones, but they have become extensively degraded. As a viable ecological restoration ...
Origin of Eukaryotes
Origin of Eukaryotes
Much of the visible living world around us is characterized by cells that contain a nucleus enclosing the genetic material, a highly specialized network of dynamic interconnected m...
Rho-dependent terminators and transcription termination
Rho-dependent terminators and transcription termination
Rho-dependent transcription terminators participate in sophisticated genetic regulatory mechanisms, in both bacteria and phages; they occur in regulatory regions preceding the codi...
Transcription termination and readthrough in African swine fever virus
Transcription termination and readthrough in African swine fever virus
IntroductionAfrican swine fever virus (ASFV) is a nucleocytoplasmic large DNA virus (NCLDV) that encodes its own host-like RNA polymerase (RNAP) and factors required to produce mat...
Analysis of the Conditions and Regulations of Contract Termination in the Laws of Iran and Iraq
Analysis of the Conditions and Regulations of Contract Termination in the Laws of Iran and Iraq
Contract termination is an essential legal tool in contractual systems, allowing the termination of contracts when specific conditions arise or when one party breaches its obligati...

