User:Clayton Moore/Sandbox 1

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=== Uracil recognition ===
=== Uracil recognition ===
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Hrp1 interacts with the three uracil bases mainly though Van der Waals contacts. All three uridines interact with aromatic residues of the protein, although Ura3 and Ura5 have low surface accessibility compared to Ura7. Ura3 interacts with Phe288 in a nonplanar position, and Ura5 behaves the same with Phe162. However, Ura7 does form a planar stacking arrangement with the aromatic ring of Phe202. Base discrimination from cytosine relies heavily on the hydrogen bonding between the O4 of the uracil base and the amine group of Lys160. The O2 and O4 of Ura5 also play a role in base discrimination as they form hydrogen bonds with Lys244 and Lys231, respectively. While these two lysines are conserved in most Hrp1-like proteins, there are variations in other organisms that replace Lys244 with an Asn, although the interaction remains conserved. Discrimination at Ura3 is less clear, but it is suggested that it is due to the interaction of its N3 with the backbone phosphate of Ade6.
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Hrp1 interacts with the three uracil bases mainly though Van der Waals contacts. All three uridines interact with aromatic residues of the protein, although <scene name='78/782604/Uracil_3_interactions/1'>Ura3</scene> and <scene name='78/782604/Uracil_5_interactions/1'>Ura5</scene> have low surface accessibility compared to <scene name='78/782604/Uracil_7_interactions/1'>Ura7</scene>. <scene name='78/782604/Uracil_3_interactions/1'>Ura3</scene> interacts with Phe288 in a nonplanar position, and <scene name='78/782604/Uracil_5_interactions/1'>Ura5</scene> behaves the same with Phe162. However, <scene name='78/782604/Uracil_7_interactions/1'>Ura7</scene> does form a planar stacking arrangement with the aromatic ring of Phe202. Base discrimination from cytosine relies heavily on the hydrogen bonding between the O4 of the uracil base and the amine group of Lys160. The O2 and O4 of <scene name='78/782604/Uracil_5_interactions/1'>Ura5</scene> also play a role in base discrimination as they form hydrogen bonds with Lys244 and Lys231, respectively. While these two lysines are conserved in most Hrp1-like proteins, there are variations in other organisms that replace Lys244 with an Asn, although the interaction remains conserved. Discrimination at <scene name='78/782604/Uracil_3_interactions/1'>Ura3</scene> is less clear, but it is suggested that it is due to the interaction of its N3 with the backbone phosphate of <scene name='78/782604/Adenosine_6_interactions/1'>Ade6</scene>.
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<scene name='78/782604/Uracil_3_interactions/1'>Uracil 3 interactions</scene>
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<scene name='78/782604/Uracil_3_interactions/1'>Ura3</scene>
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<scene name='78/782604/Uracil_5_interactions/1'>Uracil 5 interactions</scene>
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<scene name='78/782604/Uracil_5_interactions/1'>Ura5</scene>
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<scene name='78/782604/Uracil_7_interactions/1'>Uracil 7 interactions</scene>
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<scene name='78/782604/Uracil_7_interactions/1'>Ura7</scene>
== Novelty ==
== Novelty ==

Revision as of 17:47, 6 April 2018

HRP1 found in Saccharomyces cerevisiae

Introduction

Hrp1 is a heterogeneous ribonuclear protein of Saccharomyces cerevisiae, baker’s yeast. Hrp1 is an essential component of 3’ pre-mRNA processing and contributes to the preparatory cleavage required for polyadenylation. The gene expressed as Hrp1, HRP1, was first isolated by Henry, et al.[1] and was later attributed to the Hrp1 protein by Kessler, et al.[2] Hrp1 also participates in the regulation of the 3’ end.

(PDB entry 2cjk)

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Clayton Moore

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