The network for 'endonucleolytic cleavage to generate mature 5 end of ssu rrna from ssu rrna 5 8s rrna lsu rrna ' in your query organism is displayed on the left, if relationships are supported by the integrated data. Moving any of the genes in that network will simultaneously update the homologs in the networks displayed to the right (if they exist). Additionally, hovering over any nodes will highlight the identified functionally similar homologs in the other networks. Last, the bar above the networks allows you to remove/add additional organisms. Simily drag and drop the organism names in the desired order.

Multiple Organisms

endonucleolytic cleavage to generate mature 5 end of ssu rrna from ssu rrna 5 8s rrna lsu rrna

Endonucleolytic cleavage between the 5'-External Transcribed Spacer (5'-ETS) and the 5' end of the SSU-rRNA of a tricistronic rRNA transcript that contains the Small Subunit (SSU) rRNA, the 5.8S rRNA, and the Large Subunit (LSU) rRNA in that order from 5' to 3' along the primary transcript, to produce the mature end of the SSU-rRNA.

Name Description Probability Func Analog Organism
FAF1 Faf1p 0.999
BUD21 Bud21p 0.997
NOP14 Nop14p 0.996
MPP10 Mpp10p 0.996
BFR2 Bfr2p 0.994
DIP2 Dip2p 0.992
UTP9 Utp9p 0.991
KRR1 Krr1p 0.990
RRP9 Rrp9p 0.990
UTP4 Utp4p 0.989
PWP2 Pwp2p 0.989
UTP8 Utp8p 0.989
UTP7 Utp7p 0.988
UTP6 Utp6p 0.988
BMS1 Bms1p 0.986
ENP1 Enp1p 0.984
MRD1 Mrd1p 0.981
SOF1 Sof1p 0.980
UTP18 Utp18p 0.977
UTP22 Utp22p 0.968
NAN1 Nan1p 0.961
ENP2 Enp2p 0.950
IMP3 Imp3p 0.943
ECM16 Ecm16p 0.942
UTP10 Utp10p 0.939
UTP11 Utp11p 0.923
UTP20 Utp20p 0.882
ESF1 Esf1p 0.854
UTP25 Utp25p 0.822
NOP6 Nop6p 0.717
DIM1 Dim1p 0.692
ESF2 Esf2p 0.688
UTP21 Utp21p 0.662
NOC4 Noc4p 0.656
LCP5 Lcp5p 0.639
UTP13 Utp13p 0.580
FCF2 Fcf2p 0.537
KRE33 Kre33p 0.528
RRP7 Rrp7p 0.510
UTP15 Utp15p 0.486
RRP36 Rrp36p 0.486
UTP30 Utp30p 0.472
EFG1 Efg1p 0.464
PXR1 Pxr1p 0.461
CMS1 Cms1p 0.440
ROK1 Rok1p 0.420
EMG1 Emg1p 0.409
RRP12 Rrp12p 0.404
NOP8 Nop8p 0.377
NOB1 Nob1p 0.373
UTP23 Utp23p 0.370
RCL1 Rcl1p 0.311
IMP4 Imp4p 0.258
RRP45 Rrp45p 0.241
RIO1 Rio1p 0.222
UTP14 Utp14p 0.189
NOP58 Nop58p 0.177
PNO1 Pno1p 0.173
SAS10 Sas10p 0.160
SLX9 Slx9p 0.159
FYV7 Fyv7p 0.146
UBP10 Ubp10p 0.139
DHR2 Dhr2p 0.133
NOP56 Nop56p 0.122
RIO2 Rio2p 0.115
RET1 Ret1p 0.114
PRS2 Prs2p 0.111
RRP5 Rrp5p 0.109
TMA16 Tma16p 0.103
RRN3 Rrn3p 0.080
MPP6 Mpp6p 0.079
NOP1 Nop1p 0.078
HCA4 Hca4p 0.074
PRP28 Prp28p 0.069
NOP9 Nop9p 0.068
TSR3 Tsr3p 0.067
MAK21 Mak21p 0.060
RRP17 Rrp17p 0.059
RRP14 Rrp14p 0.055
YLR264C-A hypothetical protein 0.054
SRD1 Srd1p 0.054
BCD1 Bcd1p 0.049
RRP3 Rrp3p 0.048
YGR251W hypothetical protein 0.047
TSR1 Tsr1p 0.047
TRM112 Trm112p 0.047
UTP5 Utp5p 0.046
BCP1 Bcp1p 0.046
GFD2 Gfd2p 0.045
KRI1 Kri1p 0.045
YLR162W hypothetical protein 0.042
LEU2 Leu2p 0.042
SQT1 Sqt1p 0.041
ARP10 Arp10p 0.041
MER1 Mer1p 0.041
SGD1 Sgd1p 0.040
URA3 Ura3p 0.037
YOL038C-A hypothetical protein 0.037
BSC1 Bsc1p 0.036
CNS1 Cns1p 0.035
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Caenorhabditis elegans
Name Description Probability Func Analog Organism
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Danio rerio
Name Description Probability Func Analog Organism
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Drosophila melanogaster
Name Description Probability Func Analog Organism
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Homo sapiens
Name Description Probability Func Analog Organism
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Mus musculus
Name Description Probability Func Analog Organism
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Rattus norvegicus
Name Description Probability Func Analog Organism