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Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon

COBRA1, co-factor of BRCA1, is a transcriptional regulator and a subunit of the Negative elongation complex also known as NELF-B. Although this protein was first designated as a cofactor of BRCA1 and hence acts accordingly, it was found later that it elicits a battery of response genes overlapping t...

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Main Author: Abouelsoud, Mohamed
Format: Thesis
Published: AUC Knowledge Fountain 2012
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access_status_str Open Access
author Abouelsoud, Mohamed
author_browse Abouelsoud, Mohamed
author_facet Abouelsoud, Mohamed
author_sort Abouelsoud, Mohamed
collection Thesis
dc_rights_str_mv The author retains all rights with regard to copyright. The author certifies that written permission from the owner(s) of third-party copyrighted matter included in the thesis, dissertation, paper, or record of study has been obtained. The author further certifies that IRB approval has been obtained for this thesis, or that IRB approval is not necessary for this thesis. Insofar as this thesis, dissertation, paper, or record of study is an educational record as defined in the Family Educational Rights and Privacy Act (FERPA) (20 USC 1232g), the author has granted consent to disclosure of it to anyone who requests a copy.
description COBRA1, co-factor of BRCA1, is a transcriptional regulator and a subunit of the Negative elongation complex also known as NELF-B. Although this protein was first designated as a cofactor of BRCA1 and hence acts accordingly, it was found later that it elicits a battery of response genes overlapping those regulated by BRCA1 in absence of BRCA1 itself. Cobra1 deletion is embryonic lethal and results in embryonic stem cells (ESC) differentiation independent of the typical pluripotency machinery. Moreover, it was found that it has a role in suppression of tumors' growth and patients with poor prognosis of breast cancer had decreased levels of COBRA1. Paradoxically, levels of COBRA1 was found elevated in some upper gastro-intestinal tract tumors. Our understanding of the regulation of gene expression has been evolving as an important venue to explain gene product's diversification. Alternative initiation of translation has been observed in many important genes and showed different subsequent phenotypes. In some cases, the discovered protein isoforms are not generated from the classically recognized Kozak/ATG system (i.e. Canonical initiation). Alternatively, their expression is initiated using a non-canonical mechanism resembling viral internal ribosomal entry site (IRES) pathway. Generation of different protein isoforms has been linked to paradoxes in the associated genes' functions. Among the different functions observed are resistance to degradation, altered cellular localization and regulation of different cell cycle phases. In this study we have substantiated the hypothesis that Cobra1 has two protein isoforms, which might be one of the possible reasons for the associated paradoxes. We have used in-silico prediction analyses to verify that the 5' un-translated region (5'UTR) of Cobra1 has the required sequences and complex RNA structures for non-canonical initiation. We also could detect these isoforms in endogenous mouse tissues from different strains and ages. Finally, we were able to induce the expression of the two isoforms ex-vivo and still could recognize the isoforms in flag-tag based systems.
format Thesis
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institution American University in Cairo (Egypt)
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license_str Other — see source repository
provenance_str_mv Harvested via OAI-PMH from AUC Knowledge Fountain — bepress
publishDate 2012
publishDateRange 2012
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publisher AUC Knowledge Fountain
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source_str AUC Knowledge Fountain — bepress
spelling oai:fount.aucegypt.edu:etds-2185 Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon Abouelsoud, Mohamed COBRA1, co-factor of BRCA1, is a transcriptional regulator and a subunit of the Negative elongation complex also known as NELF-B. Although this protein was first designated as a cofactor of BRCA1 and hence acts accordingly, it was found later that it elicits a battery of response genes overlapping those regulated by BRCA1 in absence of BRCA1 itself. Cobra1 deletion is embryonic lethal and results in embryonic stem cells (ESC) differentiation independent of the typical pluripotency machinery. Moreover, it was found that it has a role in suppression of tumors' growth and patients with poor prognosis of breast cancer had decreased levels of COBRA1. Paradoxically, levels of COBRA1 was found elevated in some upper gastro-intestinal tract tumors. Our understanding of the regulation of gene expression has been evolving as an important venue to explain gene product's diversification. Alternative initiation of translation has been observed in many important genes and showed different subsequent phenotypes. In some cases, the discovered protein isoforms are not generated from the classically recognized Kozak/ATG system (i.e. Canonical initiation). Alternatively, their expression is initiated using a non-canonical mechanism resembling viral internal ribosomal entry site (IRES) pathway. Generation of different protein isoforms has been linked to paradoxes in the associated genes' functions. Among the different functions observed are resistance to degradation, altered cellular localization and regulation of different cell cycle phases. In this study we have substantiated the hypothesis that Cobra1 has two protein isoforms, which might be one of the possible reasons for the associated paradoxes. We have used in-silico prediction analyses to verify that the 5' un-translated region (5'UTR) of Cobra1 has the required sequences and complex RNA structures for non-canonical initiation. We also could detect these isoforms in endogenous mouse tissues from different strains and ages. Finally, we were able to induce the expression of the two isoforms ex-vivo and still could recognize the isoforms in flag-tag based systems. 2012-06-01T07:00:00Z thesis application/pdf https://fount.aucegypt.edu/etds/1186 https://fount.aucegypt.edu/context/etds/article/2185/viewcontent/MAS_20thesis_dissertation_20__20Final__2031.5.12.pdf The author retains all rights with regard to copyright. The author certifies that written permission from the owner(s) of third-party copyrighted matter included in the thesis, dissertation, paper, or record of study has been obtained. The author further certifies that IRB approval has been obtained for this thesis, or that IRB approval is not necessary for this thesis. Insofar as this thesis, dissertation, paper, or record of study is an educational record as defined in the Family Educational Rights and Privacy Act (FERPA) (20 USC 1232g), the author has granted consent to disclosure of it to anyone who requests a copy. Theses and Dissertations AUC Knowledge Fountain COBRA 1 Protein isoforms
spellingShingle COBRA 1
Protein isoforms
Abouelsoud, Mohamed
Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title_full Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title_fullStr Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title_full_unstemmed Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title_short Investigating the translation of Cobra1: canonical expression is alternatively initiated from a non-AUG codon
title_sort investigating the translation of cobra1 canonical expression is alternatively initiated from a non aug codon
topic COBRA 1
Protein isoforms
url https://fount.aucegypt.edu/etds/1186
https://fount.aucegypt.edu/context/etds/article/2185/viewcontent/MAS_20thesis_dissertation_20__20Final__2031.5.12.pdf
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