Ricin: Difference between revisions
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'''Ricin''' is a potent cytotoxin that is synthesized in the endosperm cells of maturing seeds of the castor oil plant (''Ricinus communis'')<ref name="lord">PMID: 8119491</ref>. Ricin belongs to a small multi-gene family<ref name="montfort">PMID: 3558397</ref> that is composed of eight members. Ricin is classified as a type II heterodimeric Ribosome Inactivating Protein<ref name="lord" /> or RIPs. For toxins in Proteopedia see [[Toxins]]. | |||
<StructureSection load='3rtj' size='400' side='right' caption='Glycosylated ricin chain A (grey) and chain B (green) bound to dinucleotide APG (stick model) (PDB entry [[3rtj]])'> | <StructureSection load='3rtj' size='400' side='right' caption='Glycosylated ricin chain A (grey) and chain B (green) bound to dinucleotide APG (stick model) (PDB entry [[3rtj]])'> | ||
__notoc__ | __notoc__ | ||
==Structure== | ==Structure== | ||
Ricin is a heterodimer that consists of a 32 kilodalton A chain glycoprotein (light blue) linked by a <scene name='Sandbox_BCMB402_Ricin/Dihedral_link_between_subunits/1'>disulfide bond</scene> to a 32 kilodalton <scene name='Sandbox_BCMB402_Ricin/B_subunit/1'>B chain</scene> glycoprotein<ref name="montfort" /> (green). | |||
The <scene name='Sandbox_BCMB402_Ricin/A_subunit_secondary_structure/2'> A chain</scene> is an alpha/beta protein which contains eight alpha helices (pink) and eight beta sheets (yellow). It has three domains<ref name="Weston">PMID: 7990130</ref>. <scene name='Sandbox_BCMB402_Ricin/Domain_1_of_a_subunit/2'>Domain 1 </scene> consists of a beta sheet containing both parallel and anti-parallel strands. The <scene name='Sandbox_BCMB402_Ricin/Domain2_of_a_subunit/1'> second alpha helical domain </scene> makes up the core of the protein, and includes the active site. The<scene name='Sandbox_BCMB402_Ricin/Domain3_of_a_subunit/1'> third domain</scene> interacts with the B chain, and contains a helix and two beta strands. | The <scene name='Sandbox_BCMB402_Ricin/A_subunit_secondary_structure/2'> A chain</scene> is an alpha/beta protein which contains eight alpha helices (pink) and eight beta sheets (yellow). It has three domains<ref name="Weston">PMID: 7990130</ref>. <scene name='Sandbox_BCMB402_Ricin/Domain_1_of_a_subunit/2'>Domain 1 </scene> consists of a beta sheet containing both parallel and anti-parallel strands. The <scene name='Sandbox_BCMB402_Ricin/Domain2_of_a_subunit/1'> second alpha helical domain </scene> makes up the core of the protein, and includes the active site. The<scene name='Sandbox_BCMB402_Ricin/Domain3_of_a_subunit/1'> third domain</scene> interacts with the B chain, and contains a helix and two beta strands. | ||
The A chain contains the active site that is responsible for inactivating the [[Ribosome]] via depurination. RIPs have very diverse structures, containing only eight invariant residues<ref name = "lord"/>. These <scene name='Sandbox_BCMB402_Ricin/Conserved_residues/2'>conserved residues</scene> are clustered in the active site. | The A chain contains the active site that is responsible for inactivating the [[Ribosome]] via depurination. RIPs have very diverse structures, containing only eight invariant residues<ref name = "lord"/>. These <scene name='Sandbox_BCMB402_Ricin/Conserved_residues/2'>conserved residues</scene> are clustered in the active site. | ||
The B chain is a lectin<ref name="lord" /> that <scene name='Sandbox_BCMB402_Ricin/Carbohydrate_binding/1'>binds</scene> to galactose-containing surface receptors. Originally it was thought that the mode of action of Ricin poisoning was due to hemagglutination due to a closely related, co-isolating lectin, RCA. | The B chain is a lectin<ref name="lord" /> that <scene name='Sandbox_BCMB402_Ricin/Carbohydrate_binding/1'>binds</scene> to galactose-containing surface receptors. Originally it was thought that the mode of action of Ricin poisoning was due to hemagglutination due to a closely related, co-isolating lectin, RCA. | ||
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The proposed mechanism of depurination utilizes the <scene name='Sandbox_BCMB402_Ricin/Conserved_residues/2'>conserved residues</scene> in the A chain. The aromatic ring structures of the substrate adenosine stack with the aromatic side chains of <scene name='Sandbox_BCMB402_Ricin/Tyr_stacking/1'>two tyrosine residues</scene>, Tyr 80 and 123, above and below. Hydrogen bonds form between the conserved arginine and a backbone carbonyl. The depurination reaction is aided by the protonation of N3 by Arg 180 and by ion pairing to Glu 177. A water molecule on the opposite side of the ribose is activated by hydrogen bonding to Arg 180. The activated water attacks C1' of the ribose, releasing the adenine and depurinated RNA fragment. This interferes with elongation factor binding to the ribosome, thus inhibiting [[translation|translation]]. | The proposed mechanism of depurination utilizes the <scene name='Sandbox_BCMB402_Ricin/Conserved_residues/2'>conserved residues</scene> in the A chain. The aromatic ring structures of the substrate adenosine stack with the aromatic side chains of <scene name='Sandbox_BCMB402_Ricin/Tyr_stacking/1'>two tyrosine residues</scene>, Tyr 80 and 123, above and below. Hydrogen bonds form between the conserved arginine and a backbone carbonyl. The depurination reaction is aided by the protonation of N3 by Arg 180 and by ion pairing to Glu 177. A water molecule on the opposite side of the ribose is activated by hydrogen bonding to Arg 180. The activated water attacks C1' of the ribose, releasing the adenine and depurinated RNA fragment. This interferes with elongation factor binding to the ribosome, thus inhibiting [[translation|translation]]. | ||
== Site of ricin modification of rRNA == | == Site of ricin modification of rRNA == | ||
Ricin removes an adenine from a specific portion of the 28S rRNA called the <scene name='Taylor_sandboxk_ricin_rRNA_modification_site/Sarcin-ricin_loop/1'>sacrin-ricin loop</scene>, or SRL. This <scene name='Taylor_sandboxk_ricin_rRNA_modification_site/Depurination/1'>depurination</scene> leads to reduced binding of [[elongation factors|elongation factors]] to the ribosome and reduced synthesis of proteins<ref name="holmbergnygard">PMID: 8648651</ref>. It appears that binding of ricin chain A to the ribosome is mediated by binding to the ribosomal proteins and the ribosomal stalk, as binding to the naked rRNA occurs with lower affinity.<ref name="Chiou">PMID: 19019145</ref>. | Ricin removes an adenine from a specific portion of the 28S rRNA called the <scene name='Taylor_sandboxk_ricin_rRNA_modification_site/Sarcin-ricin_loop/1'>sacrin-ricin loop</scene>, or SRL. This <scene name='Taylor_sandboxk_ricin_rRNA_modification_site/Depurination/1'>depurination</scene> leads to reduced binding of [[elongation factors|elongation factors]] to the ribosome and reduced synthesis of proteins<ref name="holmbergnygard">PMID: 8648651</ref>. It appears that binding of ricin chain A to the ribosome is mediated by binding to the ribosomal proteins and the ribosomal stalk, as binding to the naked rRNA occurs with lower affinity.<ref name="Chiou">PMID: 19019145</ref>. | ||
Ricin also triggers apoptosis <ref name="Tesh">PMID: 22130961</ref>, though the exact pathway is a current research topic. There is some evidence that it occurs via the B subunit <ref name="Yermakova">PMID: 22984492</ref>, though there is also evidence that the protein synthesis inhibition may cause apoptosis <ref name="Jetzt">PMID: 22982239</ref>. | Ricin also triggers apoptosis <ref name="Tesh">PMID: 22130961</ref>, though the exact pathway is a current research topic. There is some evidence that it occurs via the B subunit <ref name="Yermakova">PMID: 22984492</ref>, though there is also evidence that the protein synthesis inhibition may cause apoptosis <ref name="Jetzt">PMID: 22982239</ref>. | ||
</StructureSection> | </StructureSection> | ||
Revision as of 11:47, 7 April 2014
Ricin is a potent cytotoxin that is synthesized in the endosperm cells of maturing seeds of the castor oil plant (Ricinus communis)[1]. Ricin belongs to a small multi-gene family[2] that is composed of eight members. Ricin is classified as a type II heterodimeric Ribosome Inactivating Protein[1] or RIPs. For toxins in Proteopedia see Ribosome.
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Updated on 07-April-2014
Ricin A chain (RTA)
large ribosomal subunit, translation, elongation factors, 1rtc – RTA
3lc9, 3mk9, 2vc4, 1uq4, 1uq5, 1obs, 3bjg, 3srp – RTA (mutant)
Ricin A chain binary complexes
3px8 – RTA preproricin + 7-carboxy-pterin
1br5, 1br6 - RTA + pterin derivative
3px9 - RTA preproricin + furanylmethyl-carbamoyl-pterin
3lc9, 3mk9, 2vc4, 1uq4, 1uq5, 1obs – RTA (mutant)
3hio – RTA + tetranucleotide
3ej5, 1il5 – RTA pyrimidine derivative
2p8n, 1ifs – RTA + adenine
2pjo, 2r2x – RTA + urea derivative
2r3d – RTA + acetamide
2vc3 - RTA (mutant) + acetate
1il3, 1il4, 1il9 – RTA + guanine derivative
1ifu, 1fmp – RTA + formycin
1obt - RTA (mutant) + AMP
1apg – RTA + RNA
3px8 – RTA + formycin monophosphate
4kuc – RTA + antibody
Ricin B chain (RTB)
3nbc, 3nbd – CnRTB + lactose – Clitocybe nebularis
3nbe – CnRTB + lactose derivative
3phz – RTB + glycoside – Polyporus squamosus
3vsf – CtRTB lectin domain – Clostridium thermocellum
3vsz – CtRTB lectin domain + galactan
3vto – CtRTB lectin domain + lactose
3vt1, 3vt2 – CtRTB lectin domain + galactose derivative
Ricin A+B chains
2aai - RTA + RTB
3rtj - RTA + RTB + dinucleotide
See Also
References
- ↑ 1.0 1.1 Lord JM, Roberts LM, Robertus JD. Ricin: structure, mode of action, and some current applications. FASEB J. 1994 Feb;8(2):201-8. PMID:8119491
- ↑ Montfort W, Villafranca JE, Monzingo AF, Ernst SR, Katzin B, Rutenber E, Xuong NH, Hamlin R, Robertus JD. The three-dimensional structure of ricin at 2.8 A. J Biol Chem. 1987 Apr 15;262(11):5398-403. PMID:3558397
Proteopedia Page Contributors and Editors (what is this?)
Ann Taylor, Douglas Read, Wayne Decatur, Andrea Gorrell, Michal Harel, Joel L. Sussman, Angel Herraez, Alexander Berchansky, Jaime Prilusky, David Canner