Poly(A) binding protein

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====Adenosine Stabilization Interaction Patterns====
====Adenosine Stabilization Interaction Patterns====
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There are several significant interaction patterns that stabilize adenosine recognition. RRM 1 and 2 makes significant interactions with the adenosine backbone. Four of eight Adenosine backbones participate in the phosphate-protein electrostatic interactions: Adenosine-2, Adenosine-3, Adenosine-6, Adenosine-8. For example, basic residues such as Lys 104 interact with the backbone of Adenosine-2 while Arg 89 interact with the phosphate backbone of Adenosine-8, shown in Figure 3. On the other hand, the adenosine nucleobase participates in many stabilizing interactions. The Poly(A) tail stabilizes itself via intramolecular stacking interactions between adenosines. Through the extensive <scene name='78/781947/Interactions_with_a2/1'>interactions with adenosine 2</scene>, the RRM specifies the position of A2, allowing it to make strong intramolecular stacking interactions with A1. As a result, A1 requires less contact with the RRM. A3 and A6 are stabilized by being sandwiched between [https://en.wikipedia.org/wiki/Aromatic_amino_acid aromatic] and [https://en.wikipedia.org/wiki/Aliphatic_compound alipathic] side chains. Stacking interactions also occur between nucleobases and aromatic or alipathic side chains, such as <scene name='78/781947/Stacking_interactions_a3/1'>Adenosine-3 stacking interactions</scene> occur between Phe 102 and Arg 179, and it is specified by [https://en.wikipedia.org/wiki/Lysine Lysine] 104. Additionally, <scene name='78/781947/Residues_interacting_with_a6/3'>Adenosine-6 stacking interactions</scene> occurs similarly between Tyr 14 and Arg 94, but it is specified doubly by two residues, Trp-86 and Gln-88 <ref name= "PABP"/>. Thus, the entirety of the adenosine nucleotide is stabilized within the protein through a variety of interactions.
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There are several significant interaction patterns that stabilize adenosine recognition. RRM 1 and 2 makes significant interactions with the adenosine backbone. Four of eight Adenosine backbones participate in the phosphate-protein electrostatic interactions: Adenosine-2, Adenosine-3, Adenosine-6, Adenosine-8. For example, basic residues such as Lys 104 interact with the backbone of Adenosine-2 while Arg 89 interact with the phosphate backbone of Adenosine-8, shown in Figure 3. On the other hand, all adenosine nucleobases except for Adenosine-1 participate in stabilizing interactions with the protein. The Poly(A) tail stabilizes itself via intramolecular stacking interactions between adenosines. Through the extensive <scene name='78/781947/Interactions_with_a2/1'>interactions with adenosine 2</scene>, the RRM specifies the position of Adenosine-2, allowing it to make strong intramolecular stacking interactions with A1. As a result, A1 requires less contact with the RRM. A3 and A6 are stabilized by being sandwiched between [https://en.wikipedia.org/wiki/Aromatic_amino_acid aromatic] and [https://en.wikipedia.org/wiki/Aliphatic_compound alipathic] side chains. Stacking interactions also occur between nucleobases and aromatic or alipathic side chains, such as <scene name='78/781947/Stacking_interactions_a3/1'>Adenosine-3 stacking interactions</scene> occur between Phe 102 and Arg 179, and it is specified by [https://en.wikipedia.org/wiki/Lysine Lysine] 104. Additionally, <scene name='78/781947/Residues_interacting_with_a6/3'>Adenosine-6 stacking interactions</scene> occurs similarly between Tyr 14 and Arg 94, but it is specified doubly by two residues, Trp-86 and Gln-88 <ref name= "PABP"/>. Thus, the entirety of the adenosine nucleotide is stabilized within the protein through a variety of interactions.
===Translation Initiation===
===Translation Initiation===

Revision as of 23:40, 23 April 2018

Poly(A) binding protein

PDB ID 1cvj

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Proteopedia Page Contributors and Editors (what is this?)

Isabelle A. Altieri, Kasey E. Meeks

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