Javascript must be enabled to continue!
Characterization of novel cytoplasmic roles for the N-terminal methyltransferase NRMT1
View through CrossRef
Abstract
N-terminal methylation of proteins by the trimethylase NRMT1 plays important roles in oncogenesis, development, and aging. As N-terminal methylation has frequently been shown to regulate protein-DNA interactions, and many NRMT1 substrates are transcription factors or regulators of chromatin structure, previous research has focused on how transcriptional regulation by NRMT1 affects cell growth and differentiation. However, we have recently identified a new, cytoplasmic role for NRMT1, inhibiting the eukaryotic elongation factor 1 alpha (eEF1A) methyltransferase METTL13, which indicates NRMT1 could also be acting as a translational regulator. Here we further explore NRMT1 cytoplasmic functions and show that, unlike previously thought, NRMT1 can methylate substrates in the cytoplasm. We also show that while many of these substrates remain bound to NRMT1, it can also interact with a number of non-target ribosomal proteins and proteins associated with the endoplasmic reticulum (ER). To confirm NRMT1 interaction with the ribosome, we performed polysome profiling, which showed a portion of NRMT1 co-migrates with the 40S and 60S subunits but not with actively translating polysomes, indicating NRMT1 may play an early role in translation. To see if NRMT1 was affecting target mRNA selection of ribosomes, we also performed ribosome-sequencing experiments in proliferating and differentiating C2C12 mouse myoblasts. These results show a striking upregulation of translation of soluble proteins with NRMT1 loss and corresponding decrease in translation of transmembrane and signal sequence-containing proteins. We now propose a model where NRMT1 regulates the translation of transmembrane and secreted proteins by facilitating interactions between the ribosome and the ER.
Title: Characterization of novel cytoplasmic roles for the N-terminal methyltransferase NRMT1
Description:
Abstract
N-terminal methylation of proteins by the trimethylase NRMT1 plays important roles in oncogenesis, development, and aging.
As N-terminal methylation has frequently been shown to regulate protein-DNA interactions, and many NRMT1 substrates are transcription factors or regulators of chromatin structure, previous research has focused on how transcriptional regulation by NRMT1 affects cell growth and differentiation.
However, we have recently identified a new, cytoplasmic role for NRMT1, inhibiting the eukaryotic elongation factor 1 alpha (eEF1A) methyltransferase METTL13, which indicates NRMT1 could also be acting as a translational regulator.
Here we further explore NRMT1 cytoplasmic functions and show that, unlike previously thought, NRMT1 can methylate substrates in the cytoplasm.
We also show that while many of these substrates remain bound to NRMT1, it can also interact with a number of non-target ribosomal proteins and proteins associated with the endoplasmic reticulum (ER).
To confirm NRMT1 interaction with the ribosome, we performed polysome profiling, which showed a portion of NRMT1 co-migrates with the 40S and 60S subunits but not with actively translating polysomes, indicating NRMT1 may play an early role in translation.
To see if NRMT1 was affecting target mRNA selection of ribosomes, we also performed ribosome-sequencing experiments in proliferating and differentiating C2C12 mouse myoblasts.
These results show a striking upregulation of translation of soluble proteins with NRMT1 loss and corresponding decrease in translation of transmembrane and signal sequence-containing proteins.
We now propose a model where NRMT1 regulates the translation of transmembrane and secreted proteins by facilitating interactions between the ribosome and the ER.
Related Results
CREB-mediated transcriptional activation of NRMT1 drives muscle differentiation
CREB-mediated transcriptional activation of NRMT1 drives muscle differentiation
Abstract
The N-terminal methyltransferase NRMT1 is an important regulator of protein-DNA interactions and plays a role in many cellular processes, including mitosis...
Novel regulation of the transcription factor ZHX2 by N-terminal methylation
Novel regulation of the transcription factor ZHX2 by N-terminal methylation
Abstract
N-terminal methylation (Nα-methylation) by the methyltransferase NRMT1 is an important post-translational modification that regulates pr...
Loss of NRMT1 allows expression of multiple differentiation pathways and alters transcription of secreted proteins in C2C12 myoblasts
Loss of NRMT1 allows expression of multiple differentiation pathways and alters transcription of secreted proteins in C2C12 myoblasts
Abstract
Muscle stem cells (satellite cells) retain their identity and function through expression of the paired homeobox transcription factor PA...
Cigarette smoke condensate and individual constituents modulate DNA methyltransferase expression in human liver cells
Cigarette smoke condensate and individual constituents modulate DNA methyltransferase expression in human liver cells
Objectives:
Previous studies found higher expression levels of DNA methyltransferase 1 in liver samples from smokers compared to those from non-smokers. In cont...
Kajian Kondisi Fisik Terminal Leuwipanjang Berdasarkan Persepsi Penumpang
Kajian Kondisi Fisik Terminal Leuwipanjang Berdasarkan Persepsi Penumpang
Leuwipanjang terminal is a passenger terminal serving AKDP and AKAP. UPTD Terminal is required to provide convenient facilities for passengers during activities within the Terminal...
Optimalisasi Pemanfaatan Dan Pengelolaan Terminal Angkutan Umum Sawerigading Kota Sengkang Kabupaten Wajo
Optimalisasi Pemanfaatan Dan Pengelolaan Terminal Angkutan Umum Sawerigading Kota Sengkang Kabupaten Wajo
Tujuan dari penelitian ini yaitu Menganalisis faktor-faktor teridentifikasi yang mempengaruhi ketidakoptimalan pemanfaatan dan pengelolaan terminal angkutan umum Sawerigading Kota ...
Overexpression of CPEB4 in glioma indicates a poor prognosis by promoting cell migration and invasion
Overexpression of CPEB4 in glioma indicates a poor prognosis by promoting cell migration and invasion
Glioma is an aggressive malignancy with limited effective treatment and poor prognosis. Cytoplasmic polyadenylation element binding protein 4 is a regulator of gene transcription a...
Evaluasi Efektivitas Terminal Penumpang Cileunyi
Evaluasi Efektivitas Terminal Penumpang Cileunyi
Abstract. The transportation system is affected by dynamic regional developments, one of which is the Cileunyi Terminal as a transportation node in Bandung Regency, which has probl...

