MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription
<p>Translocations between the human Mixed Lineage Leukemia (MLL) and AF4 Family (AFF) member genes, are implicated in leukemia. Mutations to AFFs can disrupt lymphopoesis, CNS development and spermatogenesis. However, despite the growing list of pathologies linked to AFF members, their evoluti...
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doaj-3bd0f1e41a304061af8b72b82e7b43862020-11-25T01:05:49ZengIvyspring International PublisherInternational Journal of Biological Sciences1449-22882007-01-0134225236MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcriptionMaksymilian F. Niedzielski , Robert Hopewell, Zohra Ismail, Mario C. Estable<p>Translocations between the human Mixed Lineage Leukemia (MLL) and AF4 Family (AFF) member genes, are implicated in leukemia. Mutations to AFFs can disrupt lymphopoesis, CNS development and spermatogenesis. However, despite the growing list of pathologies linked to AFF members, their evolutionary relationship and the structure/function of individual members, remain to be elucidated. Here, we first report that database mining and phylogenetic analysis with AFF proteins from multiple species, revealed two monophyletic sister clades, suggesting a common<i> Bilateria </i>ancestor. We then examined the structure/function of the most recently discovered AFF member, MCEF (also known as AF5q31 or AFF4). <i>In silico</i>, the human MCEF gene was found to have 21 exons, and code for a protein with seven nuclear localization sequences (NLS). In HeLa cells, an MCEF-EGFP fusion protein, localized exclusively to the nucleus. Consequently, we made twenty constructs, expressing MCEF deletion mutants fused to EGFP and/or DsRed fluorescent proteins. Three distinct protein sequences, encoded by three separate MCEF exons, were found to mediate nuclear localization, only two of which were predicted <i>in silico</i>. Importantly, we also found that ectopic expression of MCEF, repressed HIV-1 LTR-directed RNA Polymerase II transcription, at the level of Tat-transactivation. We suggest that portions of MCEF could be exploited for chimeric transcription factor repression (CTFR) of HIV-1.</p>http://www.biolsci.org/v03p0225.htm |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Maksymilian F. Niedzielski , Robert Hopewell, Zohra Ismail, Mario C. Estable |
spellingShingle |
Maksymilian F. Niedzielski , Robert Hopewell, Zohra Ismail, Mario C. Estable MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription International Journal of Biological Sciences |
author_facet |
Maksymilian F. Niedzielski , Robert Hopewell, Zohra Ismail, Mario C. Estable |
author_sort |
Maksymilian F. Niedzielski , Robert Hopewell, Zohra Ismail, Mario C. Estable |
title |
MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription |
title_short |
MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription |
title_full |
MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription |
title_fullStr |
MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription |
title_full_unstemmed |
MCEF is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses HIV-1 Tat-transactivation of LTR-directed transcription |
title_sort |
mcef is localized to the nucleus by protein sequences encoded within three distinct exons, where it represses hiv-1 tat-transactivation of ltr-directed transcription |
publisher |
Ivyspring International Publisher |
series |
International Journal of Biological Sciences |
issn |
1449-2288 |
publishDate |
2007-01-01 |
description |
<p>Translocations between the human Mixed Lineage Leukemia (MLL) and AF4 Family (AFF) member genes, are implicated in leukemia. Mutations to AFFs can disrupt lymphopoesis, CNS development and spermatogenesis. However, despite the growing list of pathologies linked to AFF members, their evolutionary relationship and the structure/function of individual members, remain to be elucidated. Here, we first report that database mining and phylogenetic analysis with AFF proteins from multiple species, revealed two monophyletic sister clades, suggesting a common<i> Bilateria </i>ancestor. We then examined the structure/function of the most recently discovered AFF member, MCEF (also known as AF5q31 or AFF4). <i>In silico</i>, the human MCEF gene was found to have 21 exons, and code for a protein with seven nuclear localization sequences (NLS). In HeLa cells, an MCEF-EGFP fusion protein, localized exclusively to the nucleus. Consequently, we made twenty constructs, expressing MCEF deletion mutants fused to EGFP and/or DsRed fluorescent proteins. Three distinct protein sequences, encoded by three separate MCEF exons, were found to mediate nuclear localization, only two of which were predicted <i>in silico</i>. Importantly, we also found that ectopic expression of MCEF, repressed HIV-1 LTR-directed RNA Polymerase II transcription, at the level of Tat-transactivation. We suggest that portions of MCEF could be exploited for chimeric transcription factor repression (CTFR) of HIV-1.</p> |
url |
http://www.biolsci.org/v03p0225.htm |
work_keys_str_mv |
AT maksymilianfniedzielskiroberthopewellzohraismailmariocestable mcefislocalizedtothenucleusbyproteinsequencesencodedwithinthreedistinctexonswhereitrepresseshiv1tattransactivationofltrdirectedtranscription |
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