SGID Silkworm Genome Informatics Database
Gene
KWMTBOMO01367  Validated by peptides from experiments
Pre Gene Modal
BGIBMGA008989
Annotation
PREDICTED:_protein_brunelleschi_isoform_X1_[Amyelois_transitella]
Full name
Protein brunelleschi      
Alternative Name
NIK- and IKBKB-binding protein
Location in the cell
Nuclear   Reliability : 3.501
 

Sequence

CDS
ATGCGCTCTTCAGTGAGCTATATATTGTCTCACGCCCCAGGAGAATCTGTGATGTCTCATCCAGACTATGGGCAGCACGCCCAACATCACGCATGCCTTCTAGTGCTCGTCAAGGGAATAGGCGGCATGTTGAAAAATTTCAATAAACTCTGGGAGCGAATACAGAGAATCAACACTATCAAAGTCACTGACTCCGCAGGGCAGGTGAGAGACATATGGGTACGCTATGTCAGAGACTACCCTGTTGAGAATAATGATTGGGGAGACTTTCAGACTCATCGGAGACTACTTGGCTTGATAACTCTAAGCAAATTCACTAATCAAGTCGAATTGAATGAAGTGTGTAGAGTACATGAAAGTTTAAAAGTAAAATACTCCAATACTCTGTATGACTCCAGAGCATTTATGTTTGGACCTATTAGCAACATGAAAAAACCCGAACAAGAACCTGAAACATACAGTATCTTTGAAGGCGAGAAAACCATCAAACAAGAATGTAACATATCTGAAAAAGCATCAATTCCAAGTGAACACATGGACAGCCTGTCATCATCGGAAAGCTTCCCACGATCCACTTCATCAACTACATCATATACCCAAGAAGAAAACTTCACCACACCTTCAAATTTCAAAACTCATGCAATGTTTTATGGTGAAAACGATCCTGTTCCAGACTTAGAGCAGAATGTGGCAGATCTTATCAATTCACTTTTCTGGGTGGTGGAGTCTAAGCGTTTGGAAAGATCTAGAGAGAAATTAGAAAAGGTTTCTCTCCTACTAGCCCCCTTTGAAAAAAAGGATTTTGTAGGCTTAGATATGGAATCGCGGAACAACAAAAAACGTTGTATGGGCCGGGTGACAACAAATTTGGCAGATTTGACTCTCCAAGCTGGGTTAGTTGCTGATAGCTTGAATTTGTATCACTCTGCTGCAGAAATACTGAAATCGGTCAATGATTGGTTGTGGTTAGCCGCTGCTAAAGAAGGATTATGTGCGTCGTCTGCTATACTACTGTATCCGAATTTACGTAACTCCACACCGCTACAGCGAAACGCGAGCCTTCAAGAAAGTTCGCCGAGCAAAAGCAAGCCTTTGTCTCTCTTCCAGCCAACTGATCCATTTAGAAAGTTCAAACTGAATTCGTCACCCTTACGTAATTCCAAAACGTCGAGTCCAATTAATCCACCGAGTGAACTAACTCCGACTTCCTCAGAGAGCATTGACACGTCCTCAAGACAATCGGAGACCGACAACGGTGACACGGAATCCTTAGCTTCGTCCAGCGATATTGAATACCAAAGCCCCAAATCCTATTTAAGCACAGAACTACCGTCGATACCGCGCCAACCGCCATCGCAGATCACTAACCAATATTTGTTGAATGGAGAAGAAATCGCGGAAAAGTATCGCAAGGCGATAATCCACTACAGCAAGTACCAGAACGCCGGTATCATTGAAACCGAGGCTTGCTTTAAGGCAGCCCGGATAGCGGTTGAGCAGAATAATAGTTTACACGCGTCCAGCTTTCTGCAGAACGTGATATTCATTAACTTGACGCTGAGCGAACAGGAGAAGATACAACGATTTGACACGTTAGCCGAACTTTATAAAGATATTGGTTTCCTCCGTAAAGCAGCATTTTGCCAACGATTGGCGGCGACGAGACAGGTTAGTCCGAATAACCCGAATCCAGATTGGCAACGGTGCTACTATCTCATGCTGCACAGCTTCCCAGGACACAAACTTAGCTTAGATCCCAATTACGTTGTACAACACCAAGTTGGCTGGCCAGCGCTTCAGATTCAGTTACTACAAGAACTAGTTGTGGCCGCCCGTAGGATGGGTCACCCGGCTCTTGCGACAAGGCACATGACGTTTTTACTTCAAACGATGTGGCCTCATCTGACCAAGCAGGAACACCGAGATCTGGCCATACAATTGCAGGCTTTATCAGCGCAATGCGAAGGGGGTCCGGTTCCTCTCGTGCTGGAAACAGGCGAGGTAATTCCACCAGCGAACCTCAGTCACGTACCGAACTGTTCTTGGTTCACACCCAGGCCGTTACCTCCGGCGAGGGCTCCGCATCTTGTTAAATCGAAGGCCCACCACGGACCTTTCATATTTACACCGATACACTTCGGCAGCTTGGAGAGGAACGCTAAGAAACAAGAAGGGAAAATGGAATACCTATGGGTCGAAGGTGATATCTGCGAGGTGCAAATGAAGCTGACCAACCCGCTACCGTTCGAGTTGAAAGTTTCGAACATGCGTCTGCTAACGTCGGGCGTTGTGTTCGAATCTATACCGGAAACAATAATACTACCGCCCGACTCGCCGACAACGGTGAACTTACACGGCACCCCGAAAGAAATAGGGGAATTGCAAATACTAGGCTACTCGACACACACGCTCGGTGTCAAATCGAACTGTCGTCTCAAGAATATGCCGATGCCGAACAAATTCCCGGCGTCGTTTACCGTTGAAGTAATACCGAGTCTCCCCACGATCGCTATAGAGACGACCGTAACGCCATCTGGGAATGGGGGGCTGTCAACTGAAACTGTGGGCAGCACTACAAATGTCACTTTGTATAACGGAGAGAGCACAGACTGTACAATTAAAATCACGAACACTAATTCTGTACCTATCGAATACCTTGACTTGGCTATACAGTCAAACATCGATACGGCACTTCAATCTAAAATATTCCAATTCTCAAACGAGGATATACAGTCGCAGTTGCCCATCGCTCCAGACCAAACCGCTACGATAACGATAAAGTTATACGGCGAGGCAGATTTCCTAGATCTAGGCGGCGTGGGCGGGGAGAACCTATTTCCTAACAGCCTCACTTCTAATTATCCGTCAAGGGTAGGATCGCCAGTACCCAATGCTCAGACCTCCCTGCCCACGCAGAGTTCCAATCCTCAAAATTCATTGAGCAGTGGACTTATGCCGCACAGAACTTCGGGCAGTTTCAGGTCGACTAATTCTTACGCGACCAGCTGGTCCGCGCCTATATCAGTTATGCCCCCCTCCAGAGGTCGTCAAATCGAGTCTCAGCTTATTTTAAGATATTCTGGTGGCGAAGGAAAAGATGTTCATTGTCGTCAATCTACCTTACAAATCAATTTAGAATTGTTACCTAGTGTCTCTATAACGCATTGGGATGTGCTGCCAGCGGAAATTGCATCACAACTGTATTTAGTGTTAGACGTAACAAATCTTACGTCTGAGGAGATGGACTTTCATTATGCGCCAAACAAACATATTCTGATCGAGAGCAAGGAATCCTGTAGAGTTCCCGTACCGTTAGACAGATGTCCTTTTAGCAATACGAATGTAAAAAGCGATGATGGTAAGTATCCTTAA
Protein
MRSSVSYILSHAPGESVMSHPDYGQHAQHHACLLVLVKGIGGMLKNFNKLWERIQRINTIKVTDSAGQVRDIWVRYVRDYPVENNDWGDFQTHRRLLGLITLSKFTNQVELNEVCRVHESLKVKYSNTLYDSRAFMFGPISNMKKPEQEPETYSIFEGEKTIKQECNISEKASIPSEHMDSLSSSESFPRSTSSTTSYTQEENFTTPSNFKTHAMFYGENDPVPDLEQNVADLINSLFWVVESKRLERSREKLEKVSLLLAPFEKKDFVGLDMESRNNKKRCMGRVTTNLADLTLQAGLVADSLNLYHSAAEILKSVNDWLWLAAAKEGLCASSAILLYPNLRNSTPLQRNASLQESSPSKSKPLSLFQPTDPFRKFKLNSSPLRNSKTSSPINPPSELTPTSSESIDTSSRQSETDNGDTESLASSSDIEYQSPKSYLSTELPSIPRQPPSQITNQYLLNGEEIAEKYRKAIIHYSKYQNAGIIETEACFKAARIAVEQNNSLHASSFLQNVIFINLTLSEQEKIQRFDTLAELYKDIGFLRKAAFCQRLAATRQVSPNNPNPDWQRCYYLMLHSFPGHKLSLDPNYVVQHQVGWPALQIQLLQELVVAARRMGHPALATRHMTFLLQTMWPHLTKQEHRDLAIQLQALSAQCEGGPVPLVLETGEVIPPANLSHVPNCSWFTPRPLPPARAPHLVKSKAHHGPFIFTPIHFGSLERNAKKQEGKMEYLWVEGDICEVQMKLTNPLPFELKVSNMRLLTSGVVFESIPETIILPPDSPTTVNLHGTPKEIGELQILGYSTHTLGVKSNCRLKNMPMPNKFPASFTVEVIPSLPTIAIETTVTPSGNGGLSTETVGSTTNVTLYNGESTDCTIKITNTNSVPIEYLDLAIQSNIDTALQSKIFQFSNEDIQSQLPIAPDQTATITIKLYGEADFLDLGGVGGENLFPNSLTSNYPSRVGSPVPNAQTSLPTQSSNPQNSLSSGLMPHRTSGSFRSTNSYATSWSAPISVMPPSRGRQIESQLILRYSGGEGKDVHCRQSTLQINLELLPSVSITHWDVLPAEIASQLYLVLDVTNLTSEEMDFHYAPNKHILIESKESCRVPVPLDRCPFSNTNVKSDDGKYP

Summary

Description
Cooperates with Rab11 and fwd/PI4K to mediate the flow of membrane through the Golgi, which is required to support cleavage furrow ingression, therefore promoting cytokinesis in male meiotic cells.
Subunit
May be part of the multisubunit TRAPP (transport protein particle) complex.
Similarity
Belongs to the NIBP family.
Keywords
Complete proteome   Cytoplasm   Golgi apparatus   Phosphoprotein   Reference proteome  
Feature
chain  Protein brunelleschi
Pfam
PF08626   TRAPPC9-Trs120
Interpro
IPR013935   TRAPP_II_complex_Trs120       

Ontologies

Topology

Subcellular location
Cytoplasm  
Golgi apparatus  
Length:
1123
Number of predicted TMHs:
0
Exp number of AAs in TMHs:
0.00658999999999999
Exp number, first 60 AAs:
0.00425
Total prob of N-in:
0.00029
outside
1  -  1123
 
 

Population Genetic Test Statistics

Pi
313.584157
Theta
208.660691
Tajima's D
2.001783
CLR
0.054227
CSRT
0.881705914704265
Interpretation
Uncertain
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