Protein

UniProt accession
A0A249Y3C9 [UniProt]
Protein name
Peptidoglycan transglycosylase gp16
PhaLP type
VAL

evidence: Protein name annotation

probability: 99 % (predicted by ML model)

Protein sequence
MSYDKSKPSDYDGIFQKAADSHGVSYDLLRKLSFNESSFNPKAVSKTGPKGIMQFTRNTARAMGLNVTDGDDDGRYNPELAIDAGAKLLASLVKKYNGDELKAALAYNQGEGPAGAPQLQAYDKGDFGSISEEGRNYMRKLLDVAKSPQSGALEAFGGITPKGKGIPAEDAFRGIAKTGKVGTELPESHGFDVEGVEQPAPNVPYAKDFWEKTGTTLDEYNSRSTFFGFGDAAEAQIQNSTLGVAFRAARADDGYDVFKDTMTPTRWNSYIPSKEDLQKLRDSGLPPSYYGVVTGGDGENWDALIKLAKDNFEADQRAAEAGTGAKLAAGIVGAGVDPLSYVPLVGVAGKGLKVVNKALRVGAQAGALNVASEGIRTSVAGGEAHYADAALGGLLFGAGMSALSDAVAAGIRKARGVESVNEFAGPALRMEARETAINTGGHDTSTLPPENFSFEQDHRGVPFADHPTEEGAVVLANGSILSDTNPLNPRTQRDFAEIDPERAAPGIKLGGFTEIGLKTLGSKDAGVRAIAQDLVRSPTGMQSGSSGKFGATASDIHERLHATDQRMYNQLYDAVDRAMKDPEFSVGEQKMSRRAIRQEVYKRAALAIERPELQADLTKGEREVMDLLKEHFDTKRELMEQPGIFGNANAVSIFPGSRHKGTYVPNVYDRGAKELMMQKLGGPEGLQQAIAQSWLTSYRVRPEVKARVDEYLMELNGYKSVDQVTPEVVQKHAMDKAYGISHTEDFTASSIIDENITGLVGIENNSFLEARNMFDSDLPVTLPDGSTFSVNDLRDFDMARIIPAYDRRVNGDISIMGGSGKTTKQLKDEIMALDKRAERKGQLKGEVEALKDTVKILTGRARRNNDTAFETAMRTLNDLAFFAKNFYMGPQNLTEIAGMLAKGNVKAMLHGIPTLRDLATRTSPVSGSELRELHGALFGKELDQLIRPGREDIVQRIREASDTSGAMASVIGTIKFGTQELSARSPWTKMLNGTANYILDTARQGVLGDVAGAALGGKGSKFGKENFLKAASISPEQWKGIKQLFVDHATRDANGQFTIKDKKAFSQDPRAMDLWRLADKVADETMLRPHKVSQQDSKAYGAGVKMAMQFKNFTIKSLNAKFIRSFYEGYKNNRAIDMALTHILSLGIAGTYFAMQAHVKAYGLQESQRKDYLKKALNPTMLGYAALTRSSHTGAPLSIVSMIAGAAGFQDANMLRSTILPKEEQFQKKGGASKGRAESSNLAGNLGSQVPALGYVGNVIATAKNAYGVATAPNKPTERDYMTGLMNSTKELVPNDPLTQQLIMKIYEANGVTIKQQPKPN
Physico‐chemical
properties
protein length:1321 AA
molecular weight:142783,00000 Da
isoelectric point:7,67346
aromaticity:0,07267
hydropathy:-0,43361

Domains

Domains [InterPro]
Protein sequence: A0A249Y3C9
1 1321
Legend: Pfam SMART CDD TIGRFAM HAMAP SUPFAM PRINTS Gene3D PANTHER Other

Taxonomy

  Name Taxonomy ID Lineage
Phage Klebsiella phage 2044-307w
[NCBI]
2024247 Autographiviridae > Przondovirus > Przondovirus 2044307w
Host No host information

Coding sequence (CDS)

Coding sequence (CDS)
Genbank protein accession
ASZ78306.1 [NCBI]
Genbank nucleotide accession
MF285615 [NCBI]
CDS location
range 29766 -> 33731
strand +
CDS
ATGAGCTACGATAAGTCCAAACCTAGCGATTACGATGGCATCTTCCAGAAGGCAGCAGACTCTCATGGGGTCTCCTACGACCTCCTGCGTAAGTTATCGTTTAACGAATCATCCTTCAACCCTAAGGCCGTCTCTAAGACTGGACCTAAGGGCATCATGCAGTTCACACGAAACACGGCCCGAGCGATGGGCCTTAACGTGACCGATGGTGACGACGATGGGCGATACAACCCTGAGTTAGCCATTGACGCTGGCGCTAAGCTGCTTGCGAGCCTCGTTAAGAAGTACAATGGGGATGAGCTGAAAGCCGCCCTAGCGTACAACCAAGGGGAAGGCCCAGCGGGCGCGCCCCAGCTTCAGGCTTACGATAAGGGCGACTTCGGGTCTATCTCCGAGGAAGGCCGGAACTACATGCGCAAGCTGCTGGACGTCGCTAAGAGTCCCCAGTCAGGTGCTCTGGAAGCGTTCGGCGGTATCACCCCAAAGGGTAAAGGGATTCCAGCAGAGGATGCCTTCAGGGGCATCGCTAAGACTGGTAAGGTAGGCACCGAGCTGCCGGAGTCCCATGGGTTCGATGTAGAGGGTGTGGAGCAACCTGCACCCAACGTACCGTACGCTAAGGACTTCTGGGAGAAGACCGGGACTACTCTCGACGAGTATAACTCTCGGTCAACCTTCTTCGGGTTCGGGGACGCTGCTGAGGCTCAGATTCAGAACTCAACCTTGGGTGTGGCCTTCCGTGCTGCGCGTGCTGATGATGGGTACGATGTGTTCAAGGACACGATGACCCCGACTCGCTGGAACTCATACATTCCCTCCAAGGAAGACTTGCAGAAGCTGCGTGACTCCGGGTTACCTCCGAGTTACTACGGTGTGGTGACTGGTGGTGACGGCGAGAACTGGGATGCGCTCATCAAGCTGGCTAAGGATAACTTCGAGGCTGACCAACGGGCCGCTGAGGCTGGTACTGGTGCGAAACTCGCTGCTGGTATCGTTGGTGCTGGTGTAGACCCGCTCAGTTATGTTCCTCTGGTCGGTGTGGCTGGGAAGGGACTCAAGGTGGTCAATAAGGCCCTGCGAGTGGGTGCACAGGCTGGGGCACTCAATGTTGCCTCTGAGGGAATCCGTACGTCAGTAGCTGGTGGTGAAGCTCACTATGCCGATGCAGCACTTGGTGGTTTACTGTTCGGTGCCGGAATGTCTGCACTCAGTGACGCTGTGGCCGCTGGCATCCGTAAGGCTCGTGGAGTAGAGTCTGTGAATGAGTTCGCTGGTCCAGCACTCCGTATGGAAGCGCGAGAGACTGCCATCAACACTGGTGGTCATGACACCTCGACACTACCTCCAGAGAACTTCTCGTTCGAGCAGGACCACAGAGGTGTTCCGTTTGCCGACCACCCGACCGAAGAGGGCGCAGTGGTTCTGGCCAATGGCTCCATCCTTAGTGATACCAACCCGCTTAACCCAAGGACTCAACGTGACTTCGCAGAGATTGACCCAGAGCGTGCAGCTCCCGGTATCAAGCTCGGTGGGTTCACTGAGATTGGCCTGAAGACCTTAGGGTCCAAGGATGCTGGTGTTCGTGCAATCGCTCAGGACCTCGTTCGCTCTCCCACAGGGATGCAATCAGGGTCTAGTGGTAAGTTCGGTGCGACCGCTTCGGACATCCATGAGCGGCTCCATGCGACTGACCAGCGGATGTATAACCAGCTGTATGACGCTGTTGACCGTGCCATGAAGGACCCGGAGTTCTCCGTAGGTGAACAGAAGATGTCACGCAGAGCCATACGTCAGGAAGTCTACAAGCGTGCTGCCTTGGCGATTGAGCGTCCAGAGTTACAGGCTGATTTGACCAAAGGTGAACGTGAGGTGATGGACCTGCTGAAAGAGCACTTCGACACCAAGCGTGAACTGATGGAACAGCCGGGTATCTTCGGCAACGCCAACGCAGTGAGCATCTTCCCCGGTAGTCGACACAAGGGTACATACGTGCCTAACGTGTACGACAGGGGTGCTAAGGAACTGATGATGCAGAAGCTGGGTGGACCTGAAGGACTCCAACAGGCAATCGCTCAGAGCTGGCTCACCAGTTACCGAGTGCGGCCTGAGGTCAAGGCACGTGTCGACGAGTACCTAATGGAACTCAACGGCTACAAGTCGGTAGACCAAGTGACACCTGAGGTGGTCCAGAAGCACGCCATGGATAAGGCGTACGGTATCAGCCACACTGAGGACTTCACAGCGTCCAGCATCATTGATGAGAACATCACTGGTCTTGTCGGTATTGAGAACAACTCGTTCCTAGAAGCCCGCAACATGTTCGACAGCGACCTCCCGGTTACCTTACCGGATGGGTCAACATTTAGCGTCAACGACCTGAGGGACTTCGACATGGCACGGATTATCCCAGCGTACGACCGTCGAGTGAACGGTGATATCTCCATCATGGGTGGCAGTGGGAAGACCACGAAGCAGCTCAAGGACGAAATCATGGCGTTAGACAAGCGGGCTGAACGTAAGGGACAACTGAAGGGTGAAGTGGAAGCGCTGAAGGACACCGTTAAGATTCTCACTGGGCGTGCTCGTCGTAACAACGATACGGCCTTTGAGACCGCTATGCGTACCCTGAACGACCTAGCGTTCTTCGCTAAGAACTTCTACATGGGTCCGCAGAACCTCACCGAGATTGCTGGGATGTTGGCCAAGGGTAACGTTAAGGCGATGCTACACGGTATCCCAACGTTGCGTGACCTAGCCACCAGAACCTCTCCAGTGTCCGGGAGTGAACTCCGTGAACTCCATGGGGCGCTGTTCGGTAAGGAACTCGACCAGTTAATCCGTCCGGGGCGTGAGGACATCGTACAGCGAATCCGTGAGGCTTCCGATACCAGTGGAGCCATGGCGTCAGTCATTGGTACCATTAAGTTCGGCACTCAGGAGCTGTCGGCCCGTTCTCCTTGGACCAAGATGCTGAACGGTACAGCCAACTACATTCTGGACACTGCCCGTCAGGGTGTGCTAGGTGATGTGGCTGGTGCGGCCCTAGGTGGTAAGGGTTCCAAGTTCGGCAAAGAGAACTTCCTCAAAGCTGCCTCTATCAGTCCTGAGCAGTGGAAGGGCATCAAGCAACTCTTTGTCGACCACGCGACTCGTGACGCTAACGGCCAGTTCACCATCAAGGACAAGAAGGCTTTCAGTCAGGACCCGAGAGCGATGGACCTGTGGCGTCTTGCTGATAAGGTCGCCGACGAGACCATGCTTCGGCCCCACAAGGTGTCCCAGCAGGATTCCAAGGCGTACGGTGCTGGTGTCAAGATGGCTATGCAGTTCAAGAACTTCACCATCAAGTCGCTCAACGCCAAGTTCATTCGGTCCTTCTATGAGGGCTACAAGAACAACCGCGCTATCGACATGGCGTTGACCCACATCCTGTCACTTGGTATCGCCGGGACTTACTTTGCGATGCAGGCCCACGTGAAGGCTTACGGTCTCCAAGAGTCTCAACGTAAGGACTACCTGAAGAAAGCCCTGAACCCGACCATGCTGGGCTATGCAGCGTTGACTCGAAGTTCCCACACTGGTGCCCCGCTGTCCATCGTGTCGATGATTGCAGGTGCCGCTGGGTTCCAAGACGCAAATATGCTGCGCTCCACCATCTTGCCTAAGGAGGAACAGTTCCAGAAGAAAGGCGGGGCGTCCAAAGGTCGAGCCGAGTCGAGCAACCTTGCGGGTAACTTGGGTTCTCAGGTCCCGGCGTTGGGTTACGTAGGGAACGTCATTGCGACCGCTAAGAACGCCTACGGTGTTGCTACAGCACCTAATAAGCCGACTGAGCGTGACTACATGACTGGCCTGATGAACTCCACTAAGGAGCTTGTGCCGAACGACCCACTGACTCAACAGCTCATCATGAAAATCTATGAGGCTAACGGAGTAACCATCAAACAGCAGCCTAAACCCAACTAA

Gene Ontology

Description Category Evidence (source)
GO:0000270 peptidoglycan metabolic process Biological process Inferred from Electronic Annotation (UniProt)
GO:0008933 peptidoglycan lytic transglycosylase activity Molecular function Inferred from Electronic Annotation (TreeGrafter)
GO:0016020 membrane Cellular component Inferred from Electronic Annotation (UniProt)
GO:0016787 hydrolase activity Molecular function Inferred from Electronic Annotation (InterPro)
GO:0020002 host cell plasma membrane Cellular component Inferred from Electronic Annotation (UniProt)
GO:0031640 killing of cells of another organism Biological process Inferred from Electronic Annotation (UniProt)
GO:0042742 defense response to bacterium Biological process Inferred from Electronic Annotation (UniProt)
GO:0044423 virion component Cellular component Inferred from Electronic Annotation (UniProt)
GO:0098932 symbiont entry into host cell via disruption of host cell wall peptidoglycan Biological process Inferred from Electronic Annotation (UniProt)
GO:0098994 symbiont entry into host cell via disruption of host cell envelope Biological process Inferred from Electronic Annotation (UniProt)
GO:0099002 symbiont genome ejection through host cell envelope, short tail mechanism Biological process Inferred from Electronic Annotation (UniProt)

Enzymatic activity

EC Number Entry Name Reaction Catalyzed Classification Evidence Source
4.2.2.n1 peptidoglycan lytic exotransglycosylase
aka exomuramidase; murein lyase F
in the MurNAc residue
Lyases
Carbon-oxygen lyases
Acting on polysaccharides
match to sequence model evidence used in automatic assertion
ECO:0000256
HAMAP-Rule:MF_04121

Tertiary structure

PDB ID: upi000bc0867b_model

Method: AlphaFold3 Non-commercial

Resolution:

Chain position: A