RNase A: Difference between revisions

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RNase A catalyzes the cleavage of the Phosphodiester bonds in two steps: the formation of the pentavalent phosphate transition state and subsequent degradation of the 2’3’ cyclic phosphate intermediate using three main catalytic residues (<scene name='44/449690/Cv/3'>His12, Lys41, and His119</scene> and <scene name='44/449690/Cv/4'>His12, Lys41, and His119 with substrate present</scene>). An important part of the reaction is the ability of histidine (His 12 and His119) to both accept and donate electrons, allowing these histidine to be an acid or a base, making the reaction pH dependent <ref name="Raines" />.
RNase A catalyzes the cleavage of the Phosphodiester bonds in two steps: the formation of the pentavalent phosphate transition state and subsequent degradation of the 2’3’ cyclic phosphate intermediate using three main catalytic residues (<scene name='44/449690/Cv/3'>His12, Lys41, and His119</scene> and <scene name='44/449690/Cv/4'>His12, Lys41, and His119 with substrate present</scene>). An important part of the reaction is the ability of histidine (His 12 and His119) to both accept and donate electrons, allowing these histidine to be an acid or a base, making the reaction pH dependent <ref name="Raines" />.


RNA hydrolysis begins when <scene name='44/449690/Cv/5'>His12</scene> abstracts a proton from the 2’ OH group on RNA; thus, assisting in the nucleophilic attack of the 2’ oxygen on the electrophilic phosphorus atom. A transition state is then formed, having a pentavalent phosphate, which is stabilized by the positively charged amino group of <scene name='Sandbox_Reserved_193/Lys41a_a/1'>Lys41</scene> and the main chain amide nitrogen of Phe120. <scene name='Sandbox_Reserved_193/His119a_a/1'>His119</scene> then protonates the 5' oxygen on the ribose ring and the transition state falls to form a 2’3’cyclic phosphate intermediate <ref name="Raines" />.  
RNA hydrolysis begins when <scene name='44/449690/Cv/5'>His12</scene> abstracts a proton from the 2’ OH group on RNA; thus, assisting in the nucleophilic attack of the 2’ oxygen on the electrophilic phosphorus atom. A transition state is then formed, having a pentavalent phosphate, which is stabilized by the positively charged amino group of <scene name='44/449690/Cv/6'>Lys41</scene> and the main chain amide nitrogen of Phe120. <scene name='44/449690/Cv/7'>His119</scene> then protonates the 5' oxygen on the ribose ring and the transition state falls to form a 2’3’cyclic phosphate intermediate <ref name="Raines" />.  


In a secondary and separate reaction, the 2’,3’ cyclic phosphate is hydrolyzed to a mixture of 2'phosphate and 3' hydroxyl. His12 donates a proton to the leaving group of this reaction, the 3’ oxygen of the cyclic intermediate. Simultaneously, His-119 abstracts the proton from a water molecule, activating it for nucleophilic attack. The activated water molecule attacks the cyclic phosphate causing the cleavage of the 2'3’ cyclic phosphate intermediate. The truncated nucleotide is then released with a 3’ phosphate group <ref name="Raines" />.
In a secondary and separate reaction, the 2’,3’ cyclic phosphate is hydrolyzed to a mixture of 2'phosphate and 3' hydroxyl. His12 donates a proton to the leaving group of this reaction, the 3’ oxygen of the cyclic intermediate. Simultaneously, His-119 abstracts the proton from a water molecule, activating it for nucleophilic attack. The activated water molecule attacks the cyclic phosphate causing the cleavage of the 2'3’ cyclic phosphate intermediate. The truncated nucleotide is then released with a 3’ phosphate group <ref name="Raines" />.

Revision as of 10:43, 27 February 2019

This page, as it appeared on October 8, 2011, was featured in this article in the journal Biochemistry and Molecular Biology Education.


Bovine Pancreatic Ribonuclease A (RNase A), 7rsa

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Additional Proteopedia Pages about RNase A

3D structures of ribonuclease

1rta

References


External Resources

Student Contributors