Unfortunately due to lack of commercial feasibility, the SkyBLAST service has been suspended from December 1st, 2025.
All subscriptions for paid accounts have been paused. For further information or enquiries, please email [email protected]
LOCUS WP_000592627 338 aa linear BCT 20-JUN-2019 ACCESSION WP_000592627 VERSION WP_000592627.1 KEYWORDS RefSeq. SOURCE Vibrio cholerae ORGANISM Vibrio cholerae Bacteria; Pseudomonadati; Pseudomonadota; Gammaproteobacteria; Vibrionales; Vibrionaceae; Vibrio. REFERENCE 1 (residues 1 to 338) AUTHORS Yunck,R., Cho,H. and Bernhardt,T.G. TITLE Identification of MltG as a potential terminase for peptidoglycan polymerization in bacteria JOURNAL Mol. Microbiol. 99 (4), 700-718 (2016) PUBMED 26507882 COMMENT REFSEQ: This record represents a single, non-redundant, protein sequence which may be annotated on many different RefSeq genomes from the same, or different, species. ##Evidence-For-Name-Assignment-START## Evidence Category :: HMM Evidence Accession :: TIGR00247.1 Evidence Source :: JCVI ##Evidence-For-Name-Assignment-END## COMPLETENESS: full length. FEATURES Location/Qualifiers source 1..338 /organism="Vibrio cholerae" /db_xref="taxon:666" gene 1..338 /gene="mltG" Protein 1..338 /product="endolytic transglycosylase MltG" /GO_function="GO:0008932 - lytic endotransglycosylase activity [Evidence IEA]" /GO_process="GO:0009252 - peptidoglycan biosynthetic process [Evidence IEA]" /GO_process="GO:0071555 - cell wall organization [Evidence IEA]" /calculated_mol_wt=38277 Region 1..337 /region_name="MltG" /note="Endolytic transglycosylase MltG, terminates peptidoglycan polymerization [Cell wall/membrane/envelope biogenesis]; COG1559" /db_xref="CDD:441167" ORIGIN 1 mikkrvlvlv aligivagsy fyvvkqmdqy laqplmiqea qlvtiasgtt lsrelaqlte 61 qawiqdsfva ewvrrfhpel skikagtykl qpdmsleqal allvsgkehq fsitfvegsr 121 fqewrdilas nenitqqltg lteidiakal gieheklegl flaetyhftk gtsdveilkr 181 anqklekflq vtwehrqegl piqtpyeali lasiiekets iaeereriaa vfinrlnkrm 241 rlqtdptviy gmgetydgni rkkdlrartp yntyvinglp ptpiampgea siyaalnpeq 301 sdylyfvasg egghnfsktl adhnravray lkklrtkq