Rv1318c Family assigned · medium auto-curated

H37Rv Rv1318c · MTBC0 mtbc0_001413 · 541 aa · 1488227–1489852 MTBC0 (-) · RefSeq NP_215834.1

Genomic neighbourhood (genome browser)

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This gene (outlined) in its genomic context; arrows are neighbouring genes coloured by verdict. Click any gene to navigate. Pan and zoom in the full browser.

Annotation: from legacy to revised

Legacy (H37Rv / Mycobrowser)adenylate cyclase
MTBC0 PGAP re-annotationadenylate/guanylate cyclase domain-containing protein
Revised (this work)Adenylate/guanylate cyclase domain-containing protein. Pfam: HAMP (PF00672.31), Guanylate_cyc (PF00211.26).
Functional category (TubercuList)intermediary metabolism and respiration

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) 1 publication

1 TB publication mentions this gene. 1 publication(s) discuss this gene (1 in a M. tuberculosis context).

PublicationDate
The effect of HAMP domains on class IIIb adenylyl cyclases from Mycobacterium tuberculosis. doi:10.1111/j.1432-1033.2004.04172.x 2004

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.

CRISPRi vulnerability

Vulnerability index 1.41 (95% CI -0.09 to 4.12). 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 functionThought to play an essential role in regulation of cellular metabolism by catalysing the synthesis of a second messenger, camp [catalytic activity: ATP = 3',5'-cyclic AMP + pyrophosphate].

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 Mycobrowser is no longer maintained; its EC numbers predate recent nomenclature revisions, so a class change usually reflects re-numbering, not a conflict.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 Mb1352c · 100.0% identity
M. marinum MMAR_4078 · 76.0% identity
M. orygis RJtmp_001391 · 100.0% 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 P9WQ33 SwissProt · reviewed · Evidence at protein level
UniProt nameUncharacterized protein Rv1318c

UniProt still lists this protein as Uncharacterized protein Rv1318c; the revised annotation above is ahead of the current UniProt record.

Functional vocabulary (eggNOG-mapper, orthology transfer)

COG category T Signal transduction mechanisms
eggNOG descriptionThought to play a role in regulation of cellular metabolism by catalysing the synthesis of a second messenger, camp catalytic activity ATP 3',5'-cyclic AMP pyrophosphate
Orthologous groupCOG2114
EC number EC 4.6.1.1
KEGG orthology K01768
KEGG pathways map00230, map02025, map04113, map04213
KEGG modules M00695
Gene Ontology (63) GO:0003674, GO:0003824, GO:0004016, GO:0005575, GO:0005622, GO:0005623, GO:0005737, GO:0005829, GO:0006139, GO:0006163, GO:0006164, GO:0006171 +51 more

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 0.373 · purifying
Polymorphic sites (≥ 0.1% of strains) 5 synonymous, 5 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) Corynebacteriales

M. canettii dN/dS (deep-divergence selection) 0.093 · 10 consensus substitution(s)
under purifying selection vs M. canettii (deep divergence; dN/dS=0.093) — a real, constrained gene predating the MTBC clonal expansion
Genus-wide presence (~53 non-MTBC Mycobacterium) present in 53/53 (100%) · mean identity 73.8% · 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 7/13 non-Mycobacterium reference genomes (down to Corynebacteriales) · mean identity 45.5%
detected across the order Corynebacteriales (Corynebacterium/Nocardia/Rhodococcus/…) but not in more distant Actinomycetia — a Corynebacteriales-level 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) 20 in the ORF — 0 in the essential state, 0 growth-defect, 20 non-essential, 0 growth-advantage. Saturation 0.900, mean read count 164.444444444. 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.

Proteomics (mass spectrometry) detected

MS detectiondetected in 9 of 16 independent MS datasets
Integrated abundance10.3 ppm · rank 2668/3519 (24.2th 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)

Predictionpredicted membrane protein (6 TM helixes)
DeepTMHMM classTM
TM helices (DeepTMHMM)6

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)

Length541 aa
Molecular weight59.3 kDa
Theoretical pI10.66
GRAVY0.207 (hydrophobic)
Aliphatic index108.2
Aromaticity0.068
Instability index40.0 (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
HAMPPF00672.31 5.0e-09275–326 HAMP domain
Guanylate_cycPF00211.26 4.9e-14358–523 Adenylate and Guanylate cyclase catalytic domain

Structural search (AlphaFold DB model, Foldseek vs PDB — genome-wide) pLDDT 86.1

PDB hitprobTM-scoreE-valueDescription
1wc1-assembly2_B 1.00 0.79 7.1e-12 sig 1wc1-assembly2_B Soluble adenylyl cyclase CyaC from S. platensis in complex with Rp- ATPalphaS
2bw7-assembly1_B 1.00 0.81 3.8e-11 sig 2bw7-assembly1_B A novel mechanism for adenylyl cyclase inhibition from the crystal structure of its complex with catechol estrogen
1wc5-assembly1_A 1.00 0.82 4.5e-11 sig 1wc5-assembly1_A Soluble adenylyl cyclase CyaC from S. platensis in complex with alpha, beta-methylene-ATP in presence of bicarbonate
1wc5-assembly1_D 1.00 0.81 1.9e-10 sig 1wc5-assembly1_D Soluble adenylyl cyclase CyaC from S. platensis in complex with alpha, beta-methylene-ATP in presence of bicarbonate
2w01-assembly1_B 1.00 0.81 1.3e-10 sig 2w01-assembly1_B Crystal structure of the guanylyl cyclase Cya2

Foldseek search of the AlphaFold DB model (mean pLDDT 86.1, 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)

Upstream (5' on genome)alkA (- strand, 80 bp gap)
Downstream (3' on genome)Rv1319c (- strand, 69 bp gap)

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).

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: ogt (methylated-DNA--protein-cysteine methyltransferase), high confidence from genomic context alone (score 786 excluding text-mining).

PartnerProductScoreNo text-miningChannels (≥400)
Rv2445c ndkA exp nucleoside diphosphate kinase 905 902 database:900
Rv1617 pykA exp pyruvate kinase 905 902 database:900
Rv0805 cpdA exp 3',5'-cyclic adenosine monophosphate phosphodiesterase CpdA 925 900 database:900
Rv2583c relA exp bifunctional (p)ppGpp synthase/hydrolase RelA 900 900 database:900
Rv0869c moaA2 exp molybdenum cofactor biosynthesis protein MoaA 806 807 database:800
Rv3109 moaA1 exp cyclic pyranopterin monophosphate synthase 806 807 database:800
Rv1940 ribA1 exp riboflavin biosynthesis protein RibA 802 803 database:800
Rv1415 ribA2 exp bifunctional riboflavin biosynthesis GTP cyclohydrolase II/3,4-dihydroxy-2-butanone 4-phosphate synthase 802 803 database:800
Rv3609c folE exp GTP cyclohydrolase I 800 800 database:800
Rv1316c ogt methylated-DNA--protein-cysteine methyltransferase 785 786 ctx neighborhood:786
Rv1317c alkA bifunctional regulatory protein/DNA repair enzyme AlkA 785 786 ctx neighborhood:786
Rv1321 nucS endonuclease NucS 723 724 ctx neighborhood:724
Rv1322 hyp hypothetical protein 708 709 ctx neighborhood:709
Rv1647 adenylate cyclase 699 663 ctx cooccurence:663
Rv1319c adenylate cyclase 657 655 ctx neighborhood:650

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: adenylate cyclase
  • MTBC0 PGAP product: adenylate/guanylate cyclase domain-containing protein
  • Pfam (hmmscan --cut_ga): HAMP PF00672.31 (E=5e-09), Guanylate_cyc PF00211.26 (E=5e-14)
  • (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_215834.1)
  • Domains: Pfam-A via hmmscan --cut_ga — HAMP (PF00672.31), Guanylate_cyc (PF00211.26)
  • 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 COG2114
  • Curated reference: UniProt P9WQ33 (SwissProt, reviewed; 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 86.1)
  • Interaction network: STRING v12.0 (Szklarczyk et al. 2023, doi:10.1093/nar/gkac1000), taxon 83332, CC-BY 4.0 — 36 functional partner(s); context anchor ogt
  • 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)
  • 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
  • Primary literature: none located yet; annotation rests on the domain/homology sources above.

Ancestral MTBC0 protein sequence

>mtbc0_001413|Rv1318c|
MSAKKSTAQRLGRVLETVTRQSGRLPETPAYGSWLLGRVSESQRRRRVRIQVMLTALVVTANLLGIGVALLLVTIAIPEPSIVRDTPRWLTFGVVPGYVLLALALGSYALTRQTVQALRWAIEGRKPTREEERRTFLAPWRVAVGHLMFWGVGTALLTTLYGLINNAFIPRFLFAVSFCGVLVATATYLHTEFALRPFAAQALEAGPPPRRLAPGILGRTMVVWLLGSGVPVVGIALMAMFEMVLLNLTRMQFATGVLIISMVTLVFGFILMWILAWLTATPVRVVRAALRRVERGELRTNLVVFDGTELGELQRGFNAMVAGLRERERVRDLFGRHVGREVAAAAERERSKLGGEERHVAVVFIDIVGSTQLVTSRPPADVVKLLNKFFAIVVDEVDRHHGLVNKFEGDASLTIFGAPNRLPCPEDKALAAARAIADRLVNEMPECQAGIGVAAGQVIAGNVGARERFEYTVIGEPVNEAARLCELAKSRPGKLLASAQAVDAASEEERARWSLGRHVKLRGHDQPVRLAKPVGLTKPRR