A Common Cellular Response to Broad Splicing Perturbations

Cells are constantly experiencing stress that arises from external environmental factors or internal dysfunction. Despite this, cells are remarkably robust, and possess organized cellular response pathways to adapt to stress. Cellular stress responses to disruptions in many steps of the central dogm...

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Main Author: Varineau, Jade E.
Other Authors: Calo, Eliezer
Format: Thesis
Published: Massachusetts Institute of Technology 2024
Online Access:https://hdl.handle.net/1721.1/155387
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author Varineau, Jade E.
author2 Calo, Eliezer
author_facet Calo, Eliezer
Varineau, Jade E.
author_sort Varineau, Jade E.
collection MIT
description Cells are constantly experiencing stress that arises from external environmental factors or internal dysfunction. Despite this, cells are remarkably robust, and possess organized cellular response pathways to adapt to stress. Cellular stress responses to disruptions in many steps of the central dogma - from DNA synthesis to post-translational protein processing - are well classified. However, we have yet to establish a unifying mechanism describing how cells respond to disruptions in the process of mRNA splicing. Here, I demonstrate that a p53-stabilizing Mdm2 alternative splicing event is a common feature that arises under broad splicing perturbations. I then demonstrate that the resulting p53 stabilization propagates downregulation of metabolic transcripts. Furthermore, I show that this metabolic alteration is relevant to tissue-specific disorders that arise due to mutations in splicing factors, and other disorders of aberrant p53 stabilization, more broadly. Together, this work elucidates common components of a cellular response to broad splicing perturbations that are similar to other cellular stress responses, and lends insight into molecular mechanisms of splicing-associated developmental disorders.
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spelling mit-1721.1/1553872024-06-28T03:58:40Z A Common Cellular Response to Broad Splicing Perturbations Varineau, Jade E. Calo, Eliezer Massachusetts Institute of Technology. Department of Biology Cells are constantly experiencing stress that arises from external environmental factors or internal dysfunction. Despite this, cells are remarkably robust, and possess organized cellular response pathways to adapt to stress. Cellular stress responses to disruptions in many steps of the central dogma - from DNA synthesis to post-translational protein processing - are well classified. However, we have yet to establish a unifying mechanism describing how cells respond to disruptions in the process of mRNA splicing. Here, I demonstrate that a p53-stabilizing Mdm2 alternative splicing event is a common feature that arises under broad splicing perturbations. I then demonstrate that the resulting p53 stabilization propagates downregulation of metabolic transcripts. Furthermore, I show that this metabolic alteration is relevant to tissue-specific disorders that arise due to mutations in splicing factors, and other disorders of aberrant p53 stabilization, more broadly. Together, this work elucidates common components of a cellular response to broad splicing perturbations that are similar to other cellular stress responses, and lends insight into molecular mechanisms of splicing-associated developmental disorders. Ph.D. 2024-06-27T19:49:50Z 2024-06-27T19:49:50Z 2024-05 2024-05-17T16:34:53.815Z Thesis https://hdl.handle.net/1721.1/155387 In Copyright - Educational Use Permitted Copyright retained by author(s) https://rightsstatements.org/page/InC-EDU/1.0/ application/pdf Massachusetts Institute of Technology
spellingShingle Varineau, Jade E.
A Common Cellular Response to Broad Splicing Perturbations
title A Common Cellular Response to Broad Splicing Perturbations
title_full A Common Cellular Response to Broad Splicing Perturbations
title_fullStr A Common Cellular Response to Broad Splicing Perturbations
title_full_unstemmed A Common Cellular Response to Broad Splicing Perturbations
title_short A Common Cellular Response to Broad Splicing Perturbations
title_sort common cellular response to broad splicing perturbations
url https://hdl.handle.net/1721.1/155387
work_keys_str_mv AT varineaujadee acommoncellularresponsetobroadsplicingperturbations
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