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The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3

In the parasite Trypanosoma brucei, the causative agent of human African sleeping sickness, all mRNAs are trans-spliced to generate a common 5′ exon derived from the spliced leader (SL) RNA. Perturbations of protein translocation across the endoplasmic reticulum (ER) induce the spliced leader RNA si...

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Autores principales: Okalang, Uthman, Mualem Bar-Ner, Bar, Rajan, K. Shanmugha, Friedman, Nehemya, Aryal, Saurav, Egarmina, Katarina, Hope, Ronen, Khazanov, Netaly, Senderowitz, Hanoch, Alon, Assaf, Fass, Deborah, Michaeli, Shulamit
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8630539/
https://www.ncbi.nlm.nih.gov/pubmed/34844425
http://dx.doi.org/10.1128/mBio.02602-21
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author Okalang, Uthman
Mualem Bar-Ner, Bar
Rajan, K. Shanmugha
Friedman, Nehemya
Aryal, Saurav
Egarmina, Katarina
Hope, Ronen
Khazanov, Netaly
Senderowitz, Hanoch
Alon, Assaf
Fass, Deborah
Michaeli, Shulamit
author_facet Okalang, Uthman
Mualem Bar-Ner, Bar
Rajan, K. Shanmugha
Friedman, Nehemya
Aryal, Saurav
Egarmina, Katarina
Hope, Ronen
Khazanov, Netaly
Senderowitz, Hanoch
Alon, Assaf
Fass, Deborah
Michaeli, Shulamit
author_sort Okalang, Uthman
collection PubMed
description In the parasite Trypanosoma brucei, the causative agent of human African sleeping sickness, all mRNAs are trans-spliced to generate a common 5′ exon derived from the spliced leader (SL) RNA. Perturbations of protein translocation across the endoplasmic reticulum (ER) induce the spliced leader RNA silencing (SLS) pathway. SLS activation is mediated by a serine-threonine kinase, PK3, which translocates from the cytosolic face of the ER to the nucleus, where it phosphorylates the TATA-binding protein TRF4, leading to the shutoff of SL RNA transcription, followed by induction of programmed cell death. Here, we demonstrate that SLS is also induced by depletion of the essential ER-resident chaperones BiP and calreticulin, ER oxidoreductin 1 (ERO1), and the Golgi complex-localized quiescin sulfhydryl oxidase (QSOX). Most strikingly, silencing of Rhomboid-like 1 (TIMRHOM1), involved in mitochondrial protein import, also induces SLS. The PK3 kinase, which integrates SLS signals, is modified by phosphorylation on multiple sites. To determine which of the phosphorylation events activate PK3, several individual mutations or their combination were generated. These mutations failed to completely eliminate the phosphorylation or translocation of the kinase to the nucleus. The structures of PK3 kinase and its ATP binding domain were therefore modeled. A conserved phenylalanine at position 771 was proposed to interact with ATP, and the PK3(F771L) mutation completely eliminated phosphorylation under SLS, suggesting that the activation involves most if not all of the phosphorylation sites. The study suggests that the SLS occurs broadly in response to failures in protein sorting, folding, or modification across multiple compartments.
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spelling pubmed-86305392021-12-02 The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3 Okalang, Uthman Mualem Bar-Ner, Bar Rajan, K. Shanmugha Friedman, Nehemya Aryal, Saurav Egarmina, Katarina Hope, Ronen Khazanov, Netaly Senderowitz, Hanoch Alon, Assaf Fass, Deborah Michaeli, Shulamit mBio Research Article In the parasite Trypanosoma brucei, the causative agent of human African sleeping sickness, all mRNAs are trans-spliced to generate a common 5′ exon derived from the spliced leader (SL) RNA. Perturbations of protein translocation across the endoplasmic reticulum (ER) induce the spliced leader RNA silencing (SLS) pathway. SLS activation is mediated by a serine-threonine kinase, PK3, which translocates from the cytosolic face of the ER to the nucleus, where it phosphorylates the TATA-binding protein TRF4, leading to the shutoff of SL RNA transcription, followed by induction of programmed cell death. Here, we demonstrate that SLS is also induced by depletion of the essential ER-resident chaperones BiP and calreticulin, ER oxidoreductin 1 (ERO1), and the Golgi complex-localized quiescin sulfhydryl oxidase (QSOX). Most strikingly, silencing of Rhomboid-like 1 (TIMRHOM1), involved in mitochondrial protein import, also induces SLS. The PK3 kinase, which integrates SLS signals, is modified by phosphorylation on multiple sites. To determine which of the phosphorylation events activate PK3, several individual mutations or their combination were generated. These mutations failed to completely eliminate the phosphorylation or translocation of the kinase to the nucleus. The structures of PK3 kinase and its ATP binding domain were therefore modeled. A conserved phenylalanine at position 771 was proposed to interact with ATP, and the PK3(F771L) mutation completely eliminated phosphorylation under SLS, suggesting that the activation involves most if not all of the phosphorylation sites. The study suggests that the SLS occurs broadly in response to failures in protein sorting, folding, or modification across multiple compartments. American Society for Microbiology 2021-11-30 /pmc/articles/PMC8630539/ /pubmed/34844425 http://dx.doi.org/10.1128/mBio.02602-21 Text en Copyright © 2021 Okalang et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Okalang, Uthman
Mualem Bar-Ner, Bar
Rajan, K. Shanmugha
Friedman, Nehemya
Aryal, Saurav
Egarmina, Katarina
Hope, Ronen
Khazanov, Netaly
Senderowitz, Hanoch
Alon, Assaf
Fass, Deborah
Michaeli, Shulamit
The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title_full The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title_fullStr The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title_full_unstemmed The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title_short The Spliced Leader RNA Silencing (SLS) Pathway in Trypanosoma brucei Is Induced by Perturbations of Endoplasmic Reticulum, Golgi Complex, or Mitochondrial Protein Factors: Functional Analysis of SLS-Inducing Kinase PK3
title_sort spliced leader rna silencing (sls) pathway in trypanosoma brucei is induced by perturbations of endoplasmic reticulum, golgi complex, or mitochondrial protein factors: functional analysis of sls-inducing kinase pk3
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8630539/
https://www.ncbi.nlm.nih.gov/pubmed/34844425
http://dx.doi.org/10.1128/mBio.02602-21
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