mRNA processing (Danio rerio)

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mRNA cappingexon 23GMPsplicesome associated helicasesFormation of the Spliceosomal B complexHOMOLOGY MAPPCF IIRngtt (capping enzyme)RNA helicase AA(2)Additional SR proteinsAG(2c)snRNP Sm core complex5ATP3CFIexon 1CstFPolr2aexon 2CF IU4YYYYU2 snRNPexon 1pre-mRNAexon 1Poly(A)-binding protein II5exon 13exon 2AAAAAAAsplicing factor SF3AYYYYiPoSR-binding sites3Processing of Intron-Containing Pre-mRNAPrimary RNA transcriptGU3Poly(A)pb IIhnRNP regulatorsU6 snRNPAFormation of pre-mRNPsAdditional FactorsPiexon 1CstFSR protein phosphatases3Misc.mRNA CappingUG5 G cap(3)Formation of the Spliceosomal E complexSR-proteinssnRNP Sm core complexAGU4:U5:U6 tri-snRNP complexPoly(A) polCF II(1)(2b)U2 snRNPsFormation of the Spliceosomal A complexexon 2U5 snRNPYYYYhnRNPsexon 1Regulation ofFormation of the Spliceosomal B complexPoly(A) polymerase alphamRNA polyadenylation5CAAGNote: New participating members shown at each stepCPSFCap BindingA53U6RNA helicaseU2AFSerine/Argenine Rich Proteins(SR)SR-binding sitesYYYYU5YYYYSR protein kinasesU1right click on blue text for detailed informationU55Methylation of mRNAintronCPSF3Internal methylation of mRNA5AsnRNP Sm core complexSR-proteinsAccessory ProteinsAdditional Factorssplicing factor SF3BYYYY355Formation of pre-mRNPsAU1 snRNPU2 snRNPP-5RNAi pathway3SR-repressor proteinsAAUAAAmRNA 3’-end processingSF3b14b5Formation of the active Spliceosomal C complex(2a)Spt5AGCleavage at the 3’-Splice-Site and Exon LigationSR-phosphatasesPutative Alternative SplicingInternal methylation of mRNAFormation of the Spliceosomal A complex5heterogeneous nuclear ribonucleoproteinsAGdegradedKinases Phosphorylating RS domains?3Formation of the Spliceosomal C complexU4/U6Cleavage of mRNA at the 3’-endP3U2U1 snRNPexon 2AG65UGAlternative SplicingFormation of the Spliceosomal E complexSR-kinasesU2AFexon 2AAdditional FactorsmRNA splicing (major pathway)Lariat Formation and 5’-Splice Site CleavageRegulatorsSR-proteinsmRNA splice site selectionU4 snRNP5Rnmt (methyltransferase)PRPF8DICER1DHX9zgc:109706hnrpkzgc:77093SFRS14pcbp2narhnrpa1SNRPBzgc:100974SSFA1hnrpuSFRS16zgc:103688HNRPA2B1zgc:77804BRUNOL4c20orf14zgc:77560zgc:55429zgc:110732ncbp2RNMTcpsf5supt5hFNBP3snrp70HRMT1L1nsep1CLK2cd2bp2zgc:56682DDX20ppm1gFUSIP1hnrpabSFRS4zgc:85681HNRPH2snrpflzgc:55623SF3B2CLK4SFPQRBMXprpf4zgc:55876snrpd1sfrs10rbm17SF3A3RNU2HNRPMSF4spoprngttsf3a2sfrs1zgc:55440EFTUD2zgc:56184hrmt1l2zgc:85960phf5aDHX8NCBP1srp54RBM5wdr57zgc:86860PRPF8FUSIP1HNRPRdhx16CLK3SNRPB2prpf18prpf4zgc:77155HNRPDCSTF2SFRS5DHX15Rnu6zgc:101832srpk1nonou2af1U4 snRNAzgc:56390U5 snRNAzgc:77449DNAJC8zgc:86860CSTF2Tsf3b4smx5cstf3DHX38SFRS6DDX1CLK1sf3b5U1 snRNALSM7srrm1SSFA1HEABSF3B1HNRPCNXF1xrn2cpsf3zgc:110689snrpaPRPF3SNRPNsfrs3PSKH1zgc:92484SRPK2smx5SNRPNzgc:85979SSFA1SNRPD3zgc:103632cugbp2POLR2AHNRPA3rnpc2RNPS1sf3a1SMC1L1PTBP2cugbp1CPSF1


Description

This process describes the conversion of precursor messenger RNA into mature messenger RNA (mRNA). The pre-mRNA molecule undergoes three main modifications. These modifications are 5' capping, 3' polyadenylation, and RNA splicing, which occur in the cell nucleus before the RNA is translated.

5' Capping: Capping of the pre-mRNA involves the addition of 7-methylguanosine (m7G) to the 5' end. The cap protects the 5' end of the primary RNA transcript from attack by ribonucleases that have specificity to the 3'5' phosphodiester bonds.

3' Processing: The pre-mRNA processing at the 3' end of the RNA molecule involves cleavage of its 3' end and then the addition of about 200 adenine residues to form a poly(A) tail. As the poly(A) tails is synthesised, it binds multiple copies of poly(A) binding protein, which protects the 3'end from ribonuclease digestion.

Splicing: RNA splicing is the process by which introns, regions of RNA that do not code for protein, are removed from the pre-mRNA and the remaining exons connected to re-form a single continuous molecule.

Description adapted from Wikipedia: http://en.wikipedia.org/wiki/Post-transcriptional_modification

Comments

GenMAPP notes 
Gene lists from obtained from InterPro 9-23-2003: Mm_RNA-binding region RNP-1 (RNA recognition motif)
GenMAPP remarks 
Adapted from http://www.reactome.org.

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History

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CompareRevisionActionTimeUserComment
122797view02:12, 18 May 2022AlexanderPicocleaning up broken comments
91976view14:37, 10 April 2017LWackersUpdated human annotations to zebrafish orthologues.
91952view13:04, 6 April 2017LWackersUpdated annotations and added missing ones.
71979view00:30, 24 October 2013MaintBotremoved data source from nodes without identifier
69959view20:55, 11 July 2013MaintBotupdated to 2013 schema
67499view11:09, 26 June 2013DdiglesOntology Term : 'spliceosome pathway' added !
40828view22:18, 1 March 2011MaintBotRemoved redundant pathway information and comments
35245view19:53, 11 February 2010KhanspersModified description
34214view21:32, 9 December 2009MaintBotAutomatic update of empty xrefs
21662view11:32, 14 November 2008MaintBot[[Pathway:Danio rerio:mRNA processing Reactome]] moved to [[Pathway:WP467]]: Moved to stable identifier
12032view08:44, 15 May 2008MaintBotAdded to category $category
12030view08:44, 15 May 2008NsalomonisUploaded new pathway

External references

DataNodes

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NameTypeDatabase referenceComment
BRUNOL4GeneProduct
CLK1GeneProductPMID: 15010457: Inhibitor John C. Bell, PhD

Professor, Depts. of Medicine and Biochemistry, Microbiology & Immunology University of Ottawa Career Scientist, Ottawa Regional Cancer Centre Associate Scientist, The Ottawa Hospital Research Institute Telephone: 613-737-7700 ext 6893 Fax: 613-247-3524 Email: [email protected] The control of pre-mRNA splicing by the Clk kinase family

We are studying a family of kinases which we believe provide an interface between intracellular signaling networks and the post-transcriptional mechanism of mRNA splicing. We are performing a structure:function analysis of the three Clk family members to identify domains in the three proteins which are involved in regulating splicing. Using homologous recombination we are generating null strains of mice which are lacking one, two or all three Clk genes. The Clk kinases all possess dual specificity kinase activity and yeast expression systems are being used to produce large amounts of the kinase to perform a detailed analysis of the sites of serine, threonine and tyrosine autophosphorylation within the kinase.
CLK2GeneProduct
CLK3GeneProduct
CLK4GeneProduct
CPSF1GeneProduct432372 (Entrez Gene)
CSTF2GeneProduct386806 (Entrez Gene)
CSTF2TGeneProduct
DDX1GeneProduct
DDX20GeneProduct556273 (Entrez Gene)
DHX15GeneProduct321931 (Entrez Gene)
DHX38GeneProduct393850 (Entrez Gene)
DHX8GeneProduct
DHX9GeneProduct
DICER1GeneProduct324724 (Entrez Gene)
DNAJC8GeneProduct321414 (Entrez Gene)
EFTUD2GeneProduct393480 (Entrez Gene)
FNBP3GeneProduct
FUSIP1GeneProductFUSI_MOUSE PMID: 11684676
HEABGeneProduct
HNRPA2B1GeneProduct
HNRPA3GeneProduct
HNRPCGeneProduct
HNRPDGeneProduct
HNRPH2GeneProduct
HNRPMGeneProduct
HNRPRGeneProduct406735 (Entrez Gene)
HRMT1L1GeneProduct
LSM7GeneProduct573047 (Entrez Gene)
NCBP1GeneProduct
NXF1GeneProduct323865 (Entrez Gene)
POLR2AGeneProduct553347 (Entrez Gene)
PRPF3GeneProduct403072 (Entrez Gene)
PRPF8GeneProduct393951 (Entrez Gene)
PSKH1GeneProduct554840 (Entrez Gene) PMID: 12466556
PTBP2GeneProduct
RBM5GeneProduct324302 (Entrez Gene)
RBMXGeneProduct321860 (Entrez Gene)
RNMTGeneProduct
RNPS1GeneProduct327020 (Entrez Gene) PMID: 14729963
RNU2GeneProductGenBank sequence: K00027
Rnu6GeneProductGenBank sequence: M10329
SF3A3GeneProduct446168 (Entrez Gene)
SF3B1GeneProduct446117 (Entrez Gene)
SF3B2GeneProduct
SF4GeneProductinferred from: SURP 2, G patch protein, UniProt:O60378
SFPQGeneProduct406564 (Entrez Gene)
SFRS14GeneProduct
SFRS16GeneProduct
SFRS4GeneProduct321872 (Entrez Gene)
SFRS5GeneProduct
SFRS6GeneProduct
SMC1L1GeneProduct
SNRPB2GeneProduct402896 (Entrez Gene)
SNRPBGeneProduct402966 (Entrez Gene)
SNRPD3GeneProduct415171 (Entrez Gene)
SNRPNGeneProduct
SRPK2GeneProductPMID: 12773558
SSFA1GeneProduct
U1 snRNAGeneProductGenBank sequence: J00645
U4 snRNAGeneProductGenBank sequence: M10328, M18004
U5 snRNAGeneProductGenBank sequence: AB021173
c20orf14GeneProduct323855 (Entrez Gene)
cd2bp2GeneProduct393936 (Entrez Gene)
cpsf3GeneProduct324554 (Entrez Gene)
cpsf5GeneProduct394092 (Entrez Gene)
cstf3GeneProduct406326 (Entrez Gene)
cugbp1GeneProduct58137 (Entrez Gene)
cugbp2GeneProduct373117 (Entrez Gene)
dhx16GeneProduct336645 (Entrez Gene)
hnrpa1GeneProduct378453 (Entrez Gene)
hnrpabGeneProduct321466 (Entrez Gene)
hnrpkGeneProduct406267 (Entrez Gene)
hnrpuGeneProduct334490 (Entrez Gene)
hrmt1l2GeneProduct321974 (Entrez Gene)
narGeneProduct30203 (Entrez Gene)
ncbp2GeneProduct192325 (Entrez Gene)
nonoGeneProduct321994 (Entrez Gene)
nsep1GeneProduct58144 (Entrez Gene)
pcbp2GeneProduct321844 (Entrez Gene)
phf5aGeneProduct286774 (Entrez Gene)
ppm1gGeneProduct368275 (Entrez Gene) PMID: 12773558
prpf18GeneProduct431751 (Entrez Gene)
prpf4GeneProduct326944 (Entrez Gene)
rbm17GeneProduct393889 (Entrez Gene)
rngttGeneProduct405803 (Entrez Gene)
rnpc2GeneProduct406251 (Entrez Gene)
sf3a1GeneProduct368732 (Entrez Gene)
sf3a2GeneProduct394018 (Entrez Gene)
sf3b4GeneProduct192318 (Entrez Gene)
sf3b5GeneProduct436751 (Entrez Gene)
sfrs10GeneProduct394172 (Entrez Gene)
sfrs1GeneProduct393565 (Entrez Gene) Antagonist splicing factor
sfrs3GeneProduct368925 (Entrez Gene)
smx5GeneProduct57924 (Entrez Gene)
snrp70GeneProduct445398 (Entrez Gene)
snrpaGeneProduct324121 (Entrez Gene)
snrpd1GeneProduct192331 (Entrez Gene)
snrpflGeneProduct445404 (Entrez Gene)
spopGeneProduct394105 (Entrez Gene)
srp54GeneProduct393963 (Entrez Gene) PMID: 14729963
srpk1GeneProduct323679 (Entrez Gene) PMID: 12773558
srrm1GeneProduct406751 (Entrez Gene)
supt5hGeneProduct64275 (Entrez Gene)
u2af1GeneProduct192328 (Entrez Gene)
wdr57GeneProduct393292 (Entrez Gene)
xrn2GeneProduct321940 (Entrez Gene)
zgc:100974GeneProduct445219 (Entrez Gene) PMID: 14559993. SRrp86 is a unique member of the SR protein superfamily containing one RNA recognition motif and two serine-arginine (SR)-rich domains separated by an unusual glutamic acid-lysine (EK)-rich region. Previously, we showed that SRrp86 could regulate alternative splicing by both positively and negatively modulating the activity of other SR proteins and that the unique EK domain could inhibit both constitutive and alternative splicing. These functions were most consistent with the model in which SRrp86 functions by interacting with and thereby modulating the activity of target proteins. To identify the specific proteins that interact with SRrp86, we used a yeast two-hybrid library screen and immunoprecipitation coupled to mass spectrometry. We show that SRrp86 interacts with all of the core SR proteins, as well as a subset of other splicing regulatory proteins, including SAF-B, hnRNP G, YB-1, and p72. In contrast to previous results that showed activation of SRp20 by SRrp86, we now show that SAF-B, hnRNP G, and 9G8 all antagonize the activity of SRrp86. Overall, we conclude that not only does SRrp86 regulate SR protein activity but that it is, in turn, regulated by other splicing factors to control alternative splice site selection.
zgc:101832GeneProduct492511 (Entrez Gene)
zgc:103632GeneProduct449780 (Entrez Gene)
zgc:103688GeneProduct447922 (Entrez Gene)
zgc:109706GeneProduct404041 (Entrez Gene)
zgc:110689GeneProduct323490 (Entrez Gene)
zgc:110732GeneProduct550244 (Entrez Gene)
zgc:55429GeneProduct394074 (Entrez Gene)
zgc:55440GeneProduct406824 (Entrez Gene)
zgc:55623GeneProduct406758 (Entrez Gene)
zgc:55876GeneProduct323700 (Entrez Gene)
zgc:56184GeneProduct394143 (Entrez Gene)
zgc:56390GeneProduct394058 (Entrez Gene)
zgc:56682GeneProduct393979 (Entrez Gene)
zgc:77093GeneProduct337552 (Entrez Gene)
zgc:77155GeneProduct402972 (Entrez Gene)
zgc:77449GeneProduct405835 (Entrez Gene) PMID: 12738786, PMID: 12024014 (associated with hnRNP A1 splicing)
zgc:77560GeneProduct324238 (Entrez Gene)
zgc:77804GeneProduct402989 (Entrez Gene)
zgc:85681GeneProduct326716 (Entrez Gene)
zgc:85960GeneProduct321556 (Entrez Gene)
zgc:85979GeneProduct406543 (Entrez Gene)
zgc:86860GeneProduct494534 (Entrez Gene)
zgc:92484GeneProduct436657 (Entrez Gene)

Annotated Interactions

No annotated interactions