Gene Rv0151c
in Mycobacterium tuberculosis H37Rv
General annotation
Type | CDS |
Function | Function unknown |
Product | PE family protein PE1 |
Comments | Rv0151c, (MTCI5.25c), len: 588 aa. PE1, Member of the Mycobacterium tuberculosis PE family (see citation below), with N-terminal region similar to others e.g. MTV032_2 PE_PGRS family from Mycobacterium tuberculosis (468 aa), FASTA scores: opt: 1125, E(): 0, (46.3% identity in 456 aa overlap); MTCY493_24 from Mycobacterium tuberculosis FASTA score: (42.5% identity in 558 aa overlap). Also similar to upstream ORF MTCI5.26c FASTA score: (54.7% identity in 464 aa overlap). Also shows similarity to C-terminal part of some PPE family proteins e.g. MTV049_21 from Mycobacterium tuberculosis FASTA score: (41.5% identity in 591 aa overlap). |
Functional category | Pe/ppe |
Proteomics | Identified by mass spectrometry in M. tuberculosis H37Rv-infected guinea pig lungs at 30 days but not 90 days (See Kruh et al., 2010). |
Mutant | Non-essential gene for in vitro growth of H37Rv in a MtbYM rich medium, by Himar1 transposon mutagenesis (see Minato et al. 2019). Disruption of this gene provides a growth advantage for in vitro growth of H37Rv, by analysis of saturated Himar1 transposon libraries (see DeJesus et al. 2017). Non essential gene by Himar1 transposon mutagenesis in H37Rv and CDC1551 strains (see Sassetti et al., 2003 and Lamichhane et al., 2003). Non-essential gene for in vitro growth of H37Rv, by Himar1 transposon mutagenesis (See Griffin et al., 2011). Check for mutants available at TARGET website |
Coordinates
Type | Start | End | Orientation |
---|---|---|---|
CDS | 177543 | 179309 | - |
Genomic sequence
Feature type
Upstream flanking region (bp)
Downstream flanking region (bp)
Update
Protein sequence
>Mycobacterium tuberculosis H37Rv|Rv0151c|PE1 MAPFGFTPKARHNRGVALRSTYRLDGWVMGPVDKEGWGLSYVFAQPSVLAAAATDLAGIGSAINQATAAVAAPTTGLAAAAADEVSTALATLFGAYGQQFQAISAQVAAFHNEFTQRLAAAANAFVNAEATNTSALVQEATAGLFKPTSPPVLPPMFNQNTAIIMGGTGSPIPTPSYVNAITTLFIDPVVSNPVVKALVTPEELYPITGVKSLPFQTSVQLGLQILDGAIWEQINAGNHVTVFGYSQSAVIASLEMQHLISLGPNAPSPSQLNFILIGNEMNPNGGILARIPGLNVTTLGLPFYGATPDNPYPTTTYTLEYDGFADFPRYPLNVLSDINAVFGILTVHTTYADLTPAQIASATQLPTQGTTSNTYYIIETEHLPLLAPLRAIPVIGPPLAALVEPNLEVIVNLGYGDPRFGYSTSPANVPTPFGLFPDVPASVVADALVAGTQQGVNDFMVELPAALNTLPQTPMPAFPPYVPTLLPPPPPPQPATLINIADTFASVVSTGYSILLPTADLGLAFVTILPAYDLTLFVNQLAAGNLRAAIELPLAATIGLAALGGMIEFIAIVVTLADITQQLQSFSI
Bibliography
- Brennan MJ et al. [2002]. The PE multigene family: a 'molecular mantra' for mycobacteria. Review
- Lamichhane G et al. [2003]. A postgenomic method for predicting essential genes at subsaturation levels of mutagenesis: application to Mycobacterium tuberculosis. Mutant
- Sassetti CM et al. [2003]. Genes required for mycobacterial growth defined by high density mutagenesis. Mutant
- Kruh NA et al. [2010]. Portrait of a pathogen: the Mycobacterium tuberculosis proteome in vivo. Proteomics
- Griffin JE et al. [2011]. High-resolution phenotypic profiling defines genes essential for mycobacterial growth and cholesterol catabolism. Mutant
- DeJesus MA et al. [2017]. Comprehensive Essentiality Analysis of the Mycobacterium tuberculosis Genome via Saturating Transposon Mutagenesis. Mutant
- Minato Y et al. [2019]. Genomewide Assessment of Mycobacterium tuberculosis Conditionally Essential Metabolic Pathways. Mutant