User:Mark Macbeth/Sandbox5

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<StructureSection load='1B7F' size='350' frame='true' side='right' caption='Sex lethal (PDB: 1B7F)' scene='78/782600/Opening_image/2'>
<StructureSection load='1B7F' size='350' frame='true' side='right' caption='Sex lethal (PDB: 1B7F)' scene='78/782600/Opening_image/2'>
== Introduction ==
== Introduction ==
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[[Image:Sxl function 2018-03-27 at 2.41.00 PM.png|500 px|right|thumb|Figure 1. Sxl sex determination and dosage compensation pathways. Functionality of Sxl is determined by the number of X chromosomes. The functional protein (XX) causes a cascade that leads to female structures and behaviors, while the nonfunctional protein results in the default male structures and behaviors.]]Sex lethal (Sxl) is an [https://en.wikipedia.org/wiki/RNA-binding_protein RNA-binding protein] that plays a vital role in sex determination and dosage compensation in ''[https://en.wikipedia.org/wiki/Drosophila_melanogaster Drosophila melanogaster]'', the common fruit fly <ref name="Black">doi: 10.1146/annurev.biochem.72.121801.161720</ref>. Sxl binds specifically to the continuous single-stranded RNA sequence 5’-UGUUUUUUU <ref name="Handa">doi:10.1038/19242
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[[Image:Sxl function 2018-03-27 at 2.41.00 PM.png|400 px|right|thumb|Figure 1. Sxl sex determination and dosage compensation pathways. Functionality of Sxl is determined by the number of X chromosomes. The functional protein (XX) causes a cascade that leads to female structures and behaviors, while the nonfunctional protein results in the default male structures and behaviors.]]Sex lethal (Sxl) is an [https://en.wikipedia.org/wiki/RNA-binding_protein RNA-binding protein] that plays a vital role in sex determination and dosage compensation in ''[https://en.wikipedia.org/wiki/Drosophila_melanogaster Drosophila melanogaster]'', the common fruit fly <ref name="Black">doi: 10.1146/annurev.biochem.72.121801.161720</ref>. Sxl binds specifically to the continuous single-stranded RNA sequence 5’-UGUUUUUUU <ref name="Handa">doi:10.1038/19242
</ref>. Functional copies of Sxl are expressed only in female fruit flies, where they induce sex-specific splicing patterns in the transcript of the ''[https://en.wikipedia.org/wiki/Transformer_(gene) Transformer]'' (Tra) gene that lead to its function. Tra initiates a cascade pathway that results in the development of female structures and behaviors (Figure 1). Sxl binds to its recognition element in the Tra pre-mRNA transcript, thereby blocking association of the splicing factor U2AF at the nearby splice site. Without the association of this essential splicing factor, the 3’ splice site shifts downstream, causing the removal of a premature stop codon and preventing truncation and inactivation of the Tra protein <ref name="Black" />. The pre-mRNA transcript of ''[https://www.wikigenes.org/e/gene/e/33565.html Male-specific lethal 2]'' (Msl-2) is the downstream target through which Sxl regulates dosage compensation. Active Sxl protein (in females) binds to two recognition elements on Msl-2 causing the retention of the first intron in the 5’UTR of Msl-2. Sxl protein bound at this intron then blocks translation, preventing expression of Msl-2 in females <ref name="Black" />. With no Msl-2 protein present, the Male-specific lethal complex cannot form and carry out its function of upregulating expression of genes on the X chromosome <ref name="dosage">Georgiev P, Chlamydas S, Akhtar A. Drosophila dosage compensation. Fly 2011;5(2):147-154. https://doi.org/10.4161/fly.5.2.14934</ref> (Figure 1).
</ref>. Functional copies of Sxl are expressed only in female fruit flies, where they induce sex-specific splicing patterns in the transcript of the ''[https://en.wikipedia.org/wiki/Transformer_(gene) Transformer]'' (Tra) gene that lead to its function. Tra initiates a cascade pathway that results in the development of female structures and behaviors (Figure 1). Sxl binds to its recognition element in the Tra pre-mRNA transcript, thereby blocking association of the splicing factor U2AF at the nearby splice site. Without the association of this essential splicing factor, the 3’ splice site shifts downstream, causing the removal of a premature stop codon and preventing truncation and inactivation of the Tra protein <ref name="Black" />. The pre-mRNA transcript of ''[https://www.wikigenes.org/e/gene/e/33565.html Male-specific lethal 2]'' (Msl-2) is the downstream target through which Sxl regulates dosage compensation. Active Sxl protein (in females) binds to two recognition elements on Msl-2 causing the retention of the first intron in the 5’UTR of Msl-2. Sxl protein bound at this intron then blocks translation, preventing expression of Msl-2 in females <ref name="Black" />. With no Msl-2 protein present, the Male-specific lethal complex cannot form and carry out its function of upregulating expression of genes on the X chromosome <ref name="dosage">Georgiev P, Chlamydas S, Akhtar A. Drosophila dosage compensation. Fly 2011;5(2):147-154. https://doi.org/10.4161/fly.5.2.14934</ref> (Figure 1).

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Sex lethal: RNA-binding protein

Sex lethal (PDB: 1B7F)

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