Affinage

CRLS1

Cardiolipin synthase (CMP-forming) · UniProt Q9UJA2

Length
301 aa
Mass
32.6 kDa
Annotated
2026-06-09
11 papers in source corpus 6 papers cited in narrative 6 extracted findings
Cross-family judge vs UniProt: Affinage preferred faithfulness: 5/5 claims corpus-supported (100%)

Mechanistic narrative

Synthesis pass · prose summary of the discoveries below

CRLS1 is the cardiolipin synthase that catalyzes the terminal, committed step of mitochondrial cardiolipin biosynthesis, condensing phosphatidylglycerol with CDP-diacylglycerol at the mitochondrial inner membrane; this activity was established for the yeast ortholog CLS1, whose disruption abolished cardiolipin synthase activity, eliminated detectable cardiolipin, and elevated phosphatidylglycerol ~5-fold (PMID:9614098). The human enzyme is bifunctional, carrying an additional acyl-CoA-dependent lysophosphatidylglycerol acyltransferase activity that remodels phosphatidylglycerol with defined acyl-chain selectivity (C18:1 > C18:2 > C18:0 > C16:0), coupling PG remodeling to cardiolipin production (PMID:20025994). Loss of CRLS1 function depletes cardiolipin, shifts cardiolipin acyl-chain composition, and accumulates the PG substrate, in turn disrupting mitochondrial cristae structure, OXPHOS complex stability and mitochondrial biogenesis, and triggering ER and mitochondrial stress responses (PMID:35147173, PMID:38556544). Biallelic loss-of-function variants in CRLS1 cause a human cardiolipin deficiency disorder, demonstrated in patient-derived fibroblasts with reduced cardiolipin and impaired mitochondrial morphology (PMID:35147173). Functionally, CRLS1-dependent mitochondrial quality control is required for skeletal muscle myogenesis and regeneration (PMID:38556544), and CRLS1 activity is positioned within mitochondrial phospholipid homeostasis such that cardiolipin synthesis contributes to lipid-overload-driven apoptosis when phospholipid efflux is blocked [PMID:bio_10.1101_2025.09.30.679455].

Mechanistic history

Synthesis pass · year-by-year structured walk · 6 steps
  1. 1998 High

    Established the core catalytic identity of the gene: that CLS1/CRLS1 performs the final condensation step of cardiolipin synthesis at the mitochondrial inner membrane, resolving where cardiolipin is made and by what reaction.

    Evidence Gene disruption and heterologous overexpression in yeast and baculovirus-infected insect cells with enzymatic activity and lipid analysis

    PMID:9614098

    Open questions at the time
    • Characterized in yeast ortholog; human enzyme kinetics and structure not addressed
    • No structural model of the active site or membrane topology
  2. 2009 High

    Revealed that the human enzyme is bifunctional, adding an acyl-CoA-dependent LPG acyltransferase activity, which connected PG remodeling to cardiolipin production rather than treating CRLS1 as a single-reaction synthase.

    Evidence Purified recombinant hCLS1 in vitro acyltransferase assays with acyl selectivity profiling and overexpression lipid profiling in COS-7 cells

    PMID:20025994

    Open questions at the time
    • Physiological contribution of the LPG acyltransferase activity in vivo not established
    • No structural basis for dual catalysis
  3. 2022 High

    Tied CRLS1 directly to human disease, showing biallelic loss-of-function causes cardiolipin deficiency with accumulated PG substrate and mitochondrial dysfunction, converting the enzymatic role into a defined Mendelian disorder.

    Evidence Patient-derived fibroblast lipidomics and proteomics, mouse Crls1 knockout cell lines, and mitochondrial morphology imaging

    PMID:35147173

    Open questions at the time
    • Tissue-specific disease mechanisms not dissected
    • Link between ER/mitochondrial stress response and clinical phenotype unresolved
  4. 2024 High

    Demonstrated a physiological requirement for CRLS1 in skeletal muscle, showing its activity maintains mitochondrial quality and is needed for myogenic regeneration in vivo.

    Evidence shRNA knockdown and AAV9-mediated knockdown/overexpression in mice, cristae electron microscopy, OXPHOS complex assays, and cardiotoxin-injury regeneration model

    PMID:38556544

    Open questions at the time
    • Mechanism linking cardiolipin to satellite-cell/myoblast function not resolved
    • Age-dependent decline mechanism not detailed
  5. 2025 Medium

    Placed CRLS1 within a broader mitochondrial phospholipid homeostasis network, showing its depletion blocks apoptosis driven by impaired phospholipid efflux, implicating cardiolipin synthesis in pathological lipid-overload death.

    Evidence Genetic epistasis with CRLS1 depletion in BLTP1-deficient cells, apoptosis readout, and lipid profiling (preprint)

    PMID:bio_10.1101_2025.09.30.679455

    Open questions at the time
    • Preprint, not peer-reviewed
    • Direct biochemical link between CRLS1-made cardiolipin and the apoptotic trigger not mechanistically dissected
  6. 2026 Medium

    Implicated CRLS1 upregulation as a protective node in ischemic neurons receiving mitochondrial EVs, linking its activity to membrane integrity, respiratory chain stability, and suppression of pyroptosis.

    Evidence hUCMSC mitochondrial EV transfer to neurons with CRLS1 expression, membrane potential, respiratory complex, ROS, and pyroptosis readouts

    PMID:41795421

    Open questions at the time
    • Causal role of CRLS1 not isolated by direct knockdown/rescue in this system
    • Mechanism of CRLS1 upregulation upon EV transfer unknown

Open questions

Synthesis pass · forward-looking unresolved questions
  • How CRLS1 coordinates its two enzymatic activities, what governs its acyl-chain selectivity in vivo, and how its loss is sensed to drive ER/mitochondrial stress and tissue-specific phenotypes remain unresolved.
  • No structural model of the catalytic mechanism or membrane topology
  • Regulation of CRLS1 expression/activity across tissues and aging not defined
  • Mechanistic coupling between cardiolipin loss and downstream stress/apoptosis pathways incomplete

Mechanism profile

Synthesis pass · controlled-vocabulary classification · explore literature graph →
Molecular activity
GO:0016740 transferase activity 2 GO:0016874 ligase activity 1
Pathway
R-HSA-1430728 Metabolism 3

Evidence

Reading pass · 6 per-paper findings extracted from the source corpus
Year Finding Method Journal Conf PMIDs
1998 CLS1 (yeast ortholog of CRLS1) encodes cardiolipin synthase, which catalyzes the final step in cardiolipin synthesis from phosphatidylglycerol and CDP-diacylglycerol, localized predominantly to the mitochondrial inner membrane. Disruption of CLS1 abolished cardiolipin synthase activity, eliminated detectable cardiolipin, and elevated phosphatidylglycerol levels ~5-fold. Gene disruption/knockout, overexpression in yeast and baculovirus-infected insect cells with enzymatic activity assays, lipid analysis, and mitochondrial dye staining The Journal of biological chemistry High 9614098
2009 Human CRLS1 (hCLS1) possesses a second enzymatic activity: an acyl-CoA-dependent lysophosphatidylglycerol (LPG) acyltransferase that remodels PG by acylating LPG to PG, in addition to its cardiolipin synthase activity. Purified recombinant hCLS1 displayed acyl selectivity (C18:1 > C18:2 > C18:0 > C16:0) for both activities. No significant acyltransferase activity was detected toward lysocardiolipin. Overexpression in COS-7 cells increased both PG biosynthesis and cardiolipin levels without affecting other phospholipids. Recombinant protein expression in COS-7 and Sf-9 insect cells, purified protein in vitro acyltransferase assays, lipid mass spectrometry/radiolabeling, overexpression with lipid profiling Biochimica et biophysica acta High 20025994
2022 Biallelic loss-of-function variants in human CRLS1 cause cardiolipin deficiency: patient-derived fibroblasts showed reduced cardiolipin levels, altered acyl-chain composition, and significantly elevated phosphatidylglycerol (the CRLS1 substrate), alongside impaired mitochondrial morphology and biogenesis. Mouse Crls1 knockout cell lines revealed endoplasmic reticular and mitochondrial stress responses upon cardiolipin insufficiency. Patient-derived fibroblast lipid profiling (lipidomics), proteomic profiling, mouse Crls1 knockout cell lines, mitochondrial morphology assays (microscopy) Human molecular genetics High 35147173
2024 Crls1 knockdown in myoblasts reduced mitochondrial mass, oxidative phosphorylation complex IV expression, and disrupted mitochondrial cristae structure. In vivo, AAV9-shCrls1-mediated Crls1 knockdown impaired muscle regeneration after cardiotoxin injury in mice, whereas AAV9-mCrls1 overexpression improved regeneration, establishing that Crls1 is required for maintaining mitochondrial quality in skeletal muscle myogenesis. shRNA knockdown and AAV9-mediated overexpression/knockdown in mouse model, mitochondrial activity assays, electron microscopy of cristae, in vivo muscle regeneration model Experimental & molecular medicine High 38556544
2025 CRLS1 functions downstream in the cardiolipin synthesis pathway at mitochondria; depletion of CRLS1 (along with PTPMT1 or PRELID1) prevents apoptosis caused by BLTP1 deficiency, indicating that CRLS1-mediated cardiolipin synthesis contributes to pathological lipid overload-driven apoptosis when mitochondrial phospholipid efflux is blocked. Genetic epistasis: CRLS1 depletion in BLTP1-deficient cells with apoptosis readout; lipid profiling showing PG and CL accumulation bioRxivpreprint Medium bio_10.1101_2025.09.30.679455
2026 Mitochondrial EV-mediated transfer upregulates CRLS1 in recipient neurons following ischemia, which preserves inner mitochondrial membrane integrity and stabilizes respiratory chain complexes, reduces ROS production, and suppresses pyroptosis. hUCMSC mitochondrial EV transfer to neurons, CRLS1 protein expression measurement, mitochondrial membrane potential assay, respiratory chain complex assessment, ROS and pyroptosis readouts Redox biology Medium 41795421

Source papers

Stage 0 corpus · 11 papers · ranked by NIH iCite citations
Year Title Journal Citations PMID
1998 Isolation and characterization of the gene (CLS1) encoding cardiolipin synthase in Saccharomyces cerevisiae. The Journal of biological chemistry 170 9614098
2022 Deleterious variants in CRLS1 lead to cardiolipin deficiency and cause an autosomal recessive multi-system mitochondrial disease. Human molecular genetics 36 35147173
2012 Alternative cardiolipin synthase Cls1 compensates for stalled Cls2 function in Staphylococcus aureus under conditions of acute acid stress. FEMS microbiology letters 26 23106435
2009 A novel function of the human CLS1 in phosphatidylglycerol synthesis and remodeling. Biochimica et biophysica acta 20 20025994
2017 Expression and potential mechanism of metabolism-related genes and CRLS1 in non-small cell lung cancer. Oncology letters 16 29434989
2021 LINC01272 Suppressed Cell Multiplication and Induced Apoptosis Via Regulating MiR-7-5p/CRLS1 Axis in Lung Cancer. Journal of microbiology and biotechnology 13 34099597
2024 Age-dependent loss of Crls1 causes myopathy and skeletal muscle regeneration failure. Experimental & molecular medicine 8 38556544
2024 Cytokine Signaling in Pediatric Kidney Tumor Cell Lines WT-CLS1, WT-3ab and G-401. International journal of molecular sciences 2 38396958
2018 [Effect of LINE1-ORF1p overexpression on the proliferation of nephroblastoma WT_CLS1 cells]. Zhongguo dang dai er ke za zhi = Chinese journal of contemporary pediatrics 1 29972127
2026 hUCMSC mitochondrial EVs confer neuroprotection after ischemia by Tom1l2-mediated mitochondrial fusion and Crls1-cardiolipin axis reprogramming. Redox biology 0 41795421
2025 CRLS1 influences liver metastasis in colon cancer by regulating lipid metabolism pathways. Functional & integrative genomics 0 41116087

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