lprK Family assigned · medium auto-curated

H37Rv Rv0173 · MTBC0 mtbc0_000186 · 390 aa · 204413–205585 MTBC0 (+) · RefSeq NP_214687.1

Genomic neighbourhood (genome browser)

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Annotation: from legacy to revised

Legacy (H37Rv / Mycobrowser)Mce family lipoprotein LprK
MTBC0 PGAP re-annotationvirulence factor Mce family protein
Revised (this work)Virulence factor Mce family protein. Pfam: MlaD (PF02470.26), Mce4_CUP1 (PF11887.14).
Functional category (TubercuList)cell wall and cell processes

Auto-curated: this verdict and function were generated by rules from PGAP + Pfam + Foldseek and have not been hand-reviewed.

In the literature (TB corpus sweep) never studied

No publication mentions this gene in its title or abstract — not under its H37Rv locus tag, not under its gene name, and not under any ortholog identifier. Its annotation rests on sequence/structure evidence, with no primary study behind it.

This layer CITES the literature and adds context; it does not change the verdict or the function stated elsewhere in this fiche. This distinguishes a gene that is dark because nobody has looked from one that is dark despite having been studied. Source: PubMed (whole): H37Rv locus tag + GENE NAME + ortholog identifiers (Mb…, MMAR_…, MSMEG_…, ML…, MAB_…), under a mycobacterial context filter; hits verified against the abstract text. Species-context counts distinguish M. tuberculosis literature from literature on other mycobacteria. phase76/phase77, 2026-07-13.

Genomic-neighbour overlap (structural caveat) co-directional · 1 % of gene

Neighbourmce1F (Rv0174, + strand)
Overlap7 bp, 1 % of this gene's length

co-directional overlap: ordinary (e.g. shared stop/start codons in an operon), not the Rv2438A-type artefact P20.1, derived from GFF3 gene coordinates, 2026-08-03.

Conditional expression context (iModulons)

Member of 1 independently-modulated gene set(s): Mce1R (mce1R).

iModulon membership (independently-modulated gene sets from a 647-sample RNA-seq compendium): the conditional co-expression context. Co-expression is a regulatory context, NOT a molecular function. Source: iModulonDB / modulome_mtb (Yoo 2022).

CRISPRi vulnerability

Vulnerability index 0.70 (95% CI -1.25 to 3.83). A more negative index = more vulnerable to knockdown (better drug-target quality); indicative threshold VI ≤ -6 = highly vulnerable.

Quantitative CRISPRi knockdown, graded (finer than binary Tn-seq essentiality). Source: CRISPRi vulnerability index (Bosch 2021, pebble.rockefeller.edu).

Legacy record & comparison (Mycobrowser)

Mycobrowser functionUnknown, but thought to be involved in host cell invasion.

The legacy Mycobrowser record is shown for verification. Mycobrowser is no longer maintained; its EC numbers predate recent nomenclature revisions, so a class change usually reflects re-numbering, not a conflict.

Orthologues (reciprocal best hits across mycobacteria)

M. bovis Mb0179 · 100.0% identity
M. leprae ML2593 · 76.3% identity
M. marinum MMAR_0416 · 76.0% identity
M. orygis RJtmp_000187 · 99.7% identity

Reciprocal-best-hit orthologues (DIAMOND) against the Mycobrowser reference proteomes. A missing species is informative: e.g. a gene absent from M. leprae was likely lost in its reductive genome evolution. Locus tags link to Mycobrowser.

Curated reference (UniProt)

UniProt O07417 TrEMBL · unreviewed · Evidence at protein level
UniProt namePossible Mce-family lipoprotein LprK

Functional vocabulary (eggNOG-mapper, orthology transfer)

COG category Q Secondary metabolites biosynthesis, transport and catabolism
Preferred namelprK
eggNOG descriptionVirulence factor Mce family protein
Orthologous groupCOG1463
KEGG orthology K02067
KEGG pathways map02010
KEGG modules M00210, M00669, M00670

Orthology-based transfer (eggNOG 5.0.2, diamond). EC/KO/GO/CAZy are computed annotations, not manual curation; cross-check against the primary literature before treating a specific reaction as established.

Conservation & selection (intra-MTBC, 145 209 strains)

pN/pS 0.951 · relaxed/neutral
Polymorphic sites (≥ 0.1% of strains) 4 synonymous, 11 missense, 0 nonsense, 0 frameshift

pN/pS from segregating SNPs (singletons removed) normalised by possible sites. Low pN/pS = purifying selection (a strong signal that a "hypothetical" is a real, constrained gene). A high pN/pS is ambiguous: relaxed constraint or positive selection (drug resistance, antigenic variation) inflate it; e.g. rpoB/katG/pncA score high here for resistance, not loss of function. A clonal disruption (one allele over a clade) suggests lineage pseudogenisation; a convergent one (many independent alleles) is typical of resistance loss-of-function.

Outgroup conservation (beyond the MTBC) Actinomycetia

M. canettii dN/dS (deep-divergence selection) 0.069 · 14 consensus substitution(s)
under purifying selection vs M. canettii (deep divergence; dN/dS=0.069) — a real, constrained gene predating the MTBC clonal expansion
Genus-wide presence (~53 non-MTBC Mycobacterium) present in 53/53 (100%) · mean identity 76.8% · 4/4 closest MTBAP relatives
conserved across the genus (present in 53/53 non-MTBC Mycobacterium genomes, incl. distant relatives) — an ancient core gene predating the genus radiation
Phylostratum (deepest detected homolog) MTBC-specific Mycobacterium Mycobacteriaceae Corynebacteriales Actinomycetia Bacteria
detected in 5/13 non-Mycobacterium reference genomes (down to Actinomycetia) · mean identity 36.5%
detected across the class Actinomycetia (beyond Corynebacteriales) but not outside the phylum — an Actinobacteria-level ancient gene

Two orthogonal outgroup signals. M. canettii (the immediate outgroup) gives a deep-divergence dN/dS (a low value confirms a constrained, real gene; shown as confident only at ≥8 substitutions, else flagged low-power). Genus-wide presence/absence (tblastn vs assembled non-MTBC genomes) places the gene on the ancient-core ↔ MTBC-specific axis: a gene absent even from the closest MTBAP relatives is a candidate MTBC-specific innovation (possible host-adaptation factor, to confirm by synteny). The phylostratum extends that axis outside the genus (tblastn vs 13 reference genomes spanning Mycobacteriaceae → Corynebacteriales → Actinomycetia → outside the phylum): it is the deepest clade in which a homolog is still detected, i.e. a proxy for gene age. Read it with the null model in mind: a shallow (young) stratum can also reflect homology-detection failure for short or fast-evolving ORFs, so it is a descriptive axis, not a proof of novelty.

Essentiality (transposon mutagenesis)

DeJesus 2017 callNE · non-essential
What the call meansnon-essential
TA sites (Himar1) 16 in the ORF — 0 in the essential state, 0 growth-defect, 16 non-essential, 0 growth-advantage. Saturation 0.938, mean read count 170.533333333. A region of the protein devoid of TA sites is invisible to this assay: nothing can be inferred about it, in either direction.

Genome-wide Himar1 transposon essentiality in H37Rv (DeJesus 2017). An essential call (ES/ESD/GD) is strong, independent evidence that a "hypothetical" locus encodes a functional, selectively required gene — orthogonal to intra-species conservation.

Conditional fitness (RB-TnSeq, 95 conditions) carbon source

ConditionGroupDirectionlog2 fitnesst
Stearic acid carbon source mutant depleted (gene required) -1.683 -6.493
heptadecanoic acid carbon source mutant depleted (gene required) -1.578 -5.499

Randomly-barcoded transposon screen across 95 carbon/nitrogen sources, pH, stressors and antibiotics (2 condition-specific phenotype(s) for this gene). A conditional fitness phenotype is a context lead, not a proven function, and never changes the verdict here. Note the blind spot: RB-TnSeq cannot measure essential genes. Source: RB-TnSeq 95-condition barcoded transposon screen, Mtb (PLoS Biol 2026, doi:10.1371/journal.pbio.3003529).

Mutant phenotypes (conditional Tn-seq, MtbTnDB) in-vivo phenotype

Conditionlog2FCqEffect
fitness in mouse infection (in vivo) -3.660.011 required
fitness in mouse infection (in vivo) -3.040.017 required
fitness in mouse infection (in vivo) -2.170.049 required
fitness in mouse infection (in vivo) +1.020.05 disruption advantageous

Conditional fitness of transposon-disruption mutants across 4 significant condition(s) (|log2FC|≥1, q≤0.05), from the standardized MtbTnDB compendium. A negative log2FC means the mutant is depleted — the gene contributes to fitness in that condition. An in-vivo defect for a "hypothetical" is strong evidence it matters for infection, even without a known molecular function. Disruption (Tn insertion), not a clean deletion; genetic-interaction screens excluded.

Proteomics (mass spectrometry) detected

MS detectiondetected in 12 of 16 independent MS datasets
Integrated abundance241.0 ppm · rank 755/3519 (78.6th percentile)

Detection by mass spectrometry is direct, experimental evidence that the protein product exists — orthogonal to sequence conservation and to Tn-seq essentiality, and especially decisive for a "hypothetical" locus. Reproducible detection across several independent datasets (PaxDb) makes the existence claim robust; the integrated abundance places the protein in the proteome's dynamic range.

Predicted localisation (DeepTMHMM + lipobox) lipoprotein

Predictionpredicted lipoprotein (lipobox + signal peptide)
DeepTMHMM classSP
Lipoboxsignal-peptidase-II lipobox; lipidated Cys near position 31

Transmembrane topology and signal peptide from DeepTMHMM (deep-learning reference predictor); lipoproteins from a (myco)bacterial lipobox motif. A sequence-based prediction of subcellular context.

Physico-chemical properties (computed, ProtParam)

Length390 aa
Molecular weight42.2 kDa
Theoretical pI8.36
GRAVY-0.069 (hydrophilic)
Aliphatic index103.6
Aromaticity0.051
Instability index30.2 (stable)

Computed from the ancestral MTBC0 sequence with the ExPASy ProtParam method (Biopython). Descriptive biophysical context: a positive GRAVY flags a hydrophobic (often membrane) protein, a high instability index (>40) predicts a short in-vitro half-life, an extreme pI hints at compartment or binding partner.

Domains (Pfam, hmmscan --cut_ga)

PfamAccessioni-EvalueResiduesDescription
MlaDPF02470.26 5.5e-1551–124 MlaD protein
Mce4_CUP1PF11887.14 2.8e-09131–298 Cholesterol uptake porter CUP1 of Mce4, putative

Structural search (AlphaFold DB model, Foldseek vs PDB — genome-wide) pLDDT 84.4

PDB hitprobTM-scoreE-valueDescription
8fef-assembly1_E 1.00 0.38 3.0e-43 sig 8fef-assembly1_E Structure of Mce1 transporter from Mycobacterium smegmatis (Map0)
8fef-assembly1_D 1.00 0.37 2.6e-13 sig 8fef-assembly1_D Structure of Mce1 transporter from Mycobacterium smegmatis (Map0)
8fef-assembly1_C 1.00 0.35 6.1e-14 sig 8fef-assembly1_C Structure of Mce1 transporter from Mycobacterium smegmatis (Map0)
8fee-assembly1_D 1.00 0.36 2.7e-13 sig 8fee-assembly1_D Structure of Mce1 transporter from Mycobacterium smegmatis in the absence of LucB (Map2)
8fee-assembly1_C 1.00 0.38 1.4e-12 sig 8fee-assembly1_C Structure of Mce1 transporter from Mycobacterium smegmatis in the absence of LucB (Map2)

Foldseek search of the AlphaFold DB model (mean pLDDT 84.4, gated at 70) against the PDB — a genome-wide extension of the ESMFold dark-gene search that also covers proteins beyond the single-sequence length limit. Confident structural neighbours (E < 0.01) shown.

Genomic context (neighbours & predicted operon) operon of 12

Upstream (5' on genome)mce1D (+ strand, -4 bp gap)
Downstream (3' on genome)mce1F (+ strand, -7 bp gap)
Predicted operon yrbE1A · yrbE1B · mce1A · mce1B · mce1C · mce1D · lprK · mce1F · Rv0175 · Rv0176 · Rv0177 · Rv0178

Neighbours from the H37Rv annotation (+ strand). The operon is predicted by co-directional intergenic distance (same strand, gaps ≤50 bp) — a transcription-unit hypothesis, not a mapped TSS. For a "hypothetical", co-transcription with a characterised operon is a concrete functional lead (complements the STRING neighborhood channel below).

Transcriptional regulation (signed TRN: ChIP-seq + TFOE)

Regulated by (14 TF) Rv0023 (represses) · Rv0081 (represses) · Rv0135c (activates) · phoP (represses) · Rv1049 (represses) · sigI (activates) · Rv1719 (activates) · Rv1776c (represses) · Rv1816 (represses) · Rv1985c (activates) · Rv2011c (represses) · sigC (activates) · Rv3167c (activates) · whiB3 (represses)

Regulatory edges from the ISB signed transcriptional regulatory network (TF ChIP-seq binding, Minch 2015 + TF-overexpression response, Rustad 2014). An edge is regulatory evidence (binding and/or expression change), not necessarily direct. For a "hypothetical", membership in a known regulon (e.g. DosR dormancy, PhoP virulence) is a strong physiological-context lead.

Functional interaction network (STRING v12, guilt-by-association)

Explore full network →

Node colour = verdict, dashed = hypothetical; edge colour = evidence (green experimental, orange genomic-context, grey co-expression), width ∝ score. Click a partner to open its page; "Explore full network" to walk the graph.

Closest characterised functional partner: yrbE1A (membrane protein), high confidence from genomic context alone (score 994 excluding text-mining).

PartnerProductScoreNo text-miningChannels (≥400)
Rv0167 yrbE1A membrane protein 997 994 ctx neighborhood:786 cooccurence:759 coexpression:853 textmining:606
Rv0168 yrbE1B membrane protein 995 994 ctx neighborhood:785 cooccurence:769 coexpression:834
Rv0172 mce1D Mce family protein Mce1D 996 993 ctx neighborhood:782 cooccurence:774 coexpression:860 textmining:578
Rv0170 mce1B Mce family protein Mce1B 995 993 ctx neighborhood:795 cooccurence:773 coexpression:860
Rv0174 mce1F Mce family protein Mce1F 995 993 ctx neighborhood:799 cooccurence:774 coexpression:860
Rv0171 mce1C Mce family protein Mce1C 993 992 ctx neighborhood:786 cooccurence:774 coexpression:850
Rv0169 mce1A Mce family protein Mce1A 997 991 ctx neighborhood:783 cooccurence:774 coexpression:836 textmining:717
Rv0655 mkl exp ABC transporter ATP-binding protein 941 898 ctx cooccurence:758 experimental:431 textmining:454
Rv3500c yrbE4B integral membrane protein 902 874 ctx cooccurence:770
Rv1965 yrbE3B integral membrane protein 879 872 ctx cooccurence:767
Rv0588 yrbE2B hyp hypothetical protein 878 870 ctx cooccurence:769
Rv3501c yrbE4A integral membrane protein 890 869 ctx cooccurence:760
Rv1964 yrbE3A integral membrane protein 878 863 ctx cooccurence:750
Rv0587 yrbE2A hyp hypothetical protein 866 862 ctx cooccurence:753
Rv0166 fadD5 fatty-acid--CoA ligase FadD5 881 842 ctx neighborhood:442 coexpression:729

STRING combines evidence channels (neighborhood, fusion, cooccurrence, coexpression, experimental, database, text-mining) into a 0–1000 score. The ctx badge marks edges carried by the genomic-context channels (conserved neighborhood, fusion, phylogenetic co-occurrence), which are independent of orthology and structure and the strongest signal for an unknown gene. The exp badge marks an experimentally-supported partner (measured interaction, experimental/database channel ≥400) as opposed to a purely predicted one — but note that the M. tuberculosis experimental interactome is dominated by a noisy bacterial-two-hybrid screen, so a strong measured link that contradicts the operon/localisation context is likely a false positive. The no text-mining column recomputes the score from data alone, so a link that does not depend on the literature is visible. Association is a function hypothesis, not proof: corroborate with the operon context and the primary literature before assigning a function.

Evidence

  • Legacy H37Rv annotation: Mce family lipoprotein LprK
  • MTBC0 PGAP product: virulence factor Mce family protein
  • Pfam (hmmscan --cut_ga): MlaD PF02470.26 (E=6e-15), Mce4_CUP1 PF11887.14 (E=3e-09)
  • (auto-curated by rules from PGAP + Pfam + Foldseek; not hand-reviewed)

Sources

  • Ancestral sequence & coordinates: Harrison LB et al. (2024), An imputed ancestral reference genome for the MTBC, doi:10.1101/2023.09.07.556366
  • Product annotation: NCBI PGAP on MTBC0; legacy from H37Rv NC_000962.3 (RefSeq NP_214687.1)
  • Domains: Pfam-A via hmmscan --cut_ga — MlaD (PF02470.26), Mce4_CUP1 (PF11887.14)
  • Sequence-level signal: ESM Atlas (EvolutionaryScale × BioHub) — exploratory
  • Controlled vocabulary: eggNOG-mapper 2.1.12 (Cantalapiedra et al. 2021, doi:10.1093/molbev/msab293), eggNOG 5.0 DB (Huerta-Cepas et al. 2019) — OG COG1463
  • Curated reference: UniProt O07417 (TrEMBL, unreviewed; Evidence at protein level)
  • Intra-MTBC selection: pN/pS and disruption from SPDI variants of 145 209 MTBC strains (this work, local collection vs H37Rv NC_000962.3)
  • Genome-wide structure: AlphaFold DB model (Jumper et al. 2021, doi:10.1038/s41586-021-03819-2; Varadi et al. 2024, doi:10.1093/nar/gkad1011) searched vs PDB with Foldseek (mean pLDDT 84.4)
  • Interaction network: STRING v12.0 (Szklarczyk et al. 2023, doi:10.1093/nar/gkac1000), taxon 83332, CC-BY 4.0 — 51 functional partner(s); context anchor yrbE1A
  • Essentiality: genome-wide transposon mutagenesis in H37Rv — DeJesus et al. 2017 (mBio, doi:10.1128/mBio.02133-16, CC BY)
  • Proteomics: integrated mass-spectrometry abundance from PaxDb 5.0 (Huang et al. 2023, doi:10.1016/j.mcpro.2023.100640), taxon 83332 — weighted average of 16 datasets, incl. Schubert et al. 2013 (doi:10.1016/j.chom.2013.04.008) and Albrethsen et al. 2013 (doi:10.1074/mcp.M112.018846)
  • Functional category: TubercuList scheme (Cole et al. 1998, doi:10.1038/31159), via Mycobrowser (Kapopoulou et al. 2011, doi:10.1016/j.tube.2010.09.006)
  • Orthologues: reciprocal best hits (DIAMOND, Buchfink et al. 2021, doi:10.1038/s41592-021-01101-x) against Mycobrowser release 5 reference proteomes
  • Genomic context / operon: H37Rv annotation; operon predicted by co-directional intergenic distance (Salgado et al. 2000, doi:10.1073/pnas.030539397)
  • Transcriptional regulation: ISB signed TRN — TF ChIP-seq (Minch et al. 2015, doi:10.1038/ncomms6829) + TF overexpression (Rustad et al. 2014, doi:10.1186/gb-2014-15-11-502)
  • Mutant phenotypes: standardized Tn-seq compendium MtbTnDB (Jinich et al. 2025, doi:10.1111/mmi.15370), aggregating many primary Tn-seq studies across conditions
  • Physico-chemical properties: ExPASy ProtParam method via Biopython (Gasteiger et al. 2005), computed from the MTBC0 sequence
  • Predicted localisation: DeepTMHMM (Hallgren et al. 2022, doi:10.1101/2022.04.08.487609) for transmembrane topology and signal peptide; (myco)bacterial lipobox (Sutcliffe & Harrington 2004, doi:10.1099/mic.0.26804-0)
  • Primary literature: none located yet; annotation rests on the domain/homology sources above.

Ancestral MTBC0 protein sequence

>mtbc0_000186|Rv0173|lprK
MMSVLARMRVMRHRAWQGLVLLVLALLLSSCGWRGISNVAIPGGPGTGPGSYTIYVQMPDTLAINGNSRVMVADVWVGSIRAIKLKNWVATLTLSLKKDVTLPKNATAKIGQTSLLGSQHVELAAPPDPSPVPLKDGDTIPLKRSSAYPTTEQTLASIATLLRGGGLVNLEGIQQEINAIVTGRADQIRAFLGKLDTFTDELNQQRDDITRAIDSTNRLLAYVGGRSEVLNRVLTDLPPLIKHFADKQELLINASDAVGRLSQSADQYLSAARGDLHQDLQALQCPLKELRRAAPYLVGALKLILTQPFDVDTVPQLVRGDYMNLSLTLDLTYSAIDNAFLTGTGFSGALRALEQSFGRDPETMIPDIRYTPNPNDAPGGPLVERGNRQC