| Type |
Details |
Score |
| Gene |
| Type: |
gene |
| Organism: |
human |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
frog, western clawed |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
dog, domestic |
|
•
•
•
•
•
|
| Gene |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
chimpanzee |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
cattle |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
chicken |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
zebrafish |
|
•
•
•
•
•
|
| Gene |
| Type: |
gene |
| Organism: |
macaque, rhesus |
|
•
•
•
•
•
|
| Protein Domain |
| Type: |
Family |
| Description: |
GCN5L1 (general control of amino acid synthesis 5-like 1), also known as BLOC1S1 (biogenesis of lysosome-related organelles complex 1 subunit 1). It is a component of the BLOC-1 complex, a complex required for normal biogenesis of lysosome-related organelles []. GCN5L1 has been identified as a critical component of the mitochondrial protein acetylation programme []. It acts as a nutrient-sensing regulator that controls mitochondrial content through coordinated regulation of mitochondrial biogenesis and autophagy []. |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Scott I |
| Year: |
2012 |
| Journal: |
Biochem J |
| Title: |
Identification of a molecular component of the mitochondrial acetyltransferase programme: a novel role for GCN5L1. |
| Volume: |
443 |
| Issue: |
3 |
| Pages: |
655-61 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Scott I |
| Year: |
2014 |
| Journal: |
J Biol Chem |
| Title: |
GCN5-like protein 1 (GCN5L1) controls mitochondrial content through coordinated regulation of mitochondrial biogenesis and mitophagy. |
| Volume: |
289 |
| Issue: |
5 |
| Pages: |
2864-72 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Wu K |
| Year: |
2023 |
| Journal: |
Biochem Biophys Res Commun |
| Title: |
The endo-lysosomal regulatory protein BLOC1S1 modulates hepatic lysosomal content and lysosomal lipolysis. |
| Volume: |
642 |
|
| Pages: |
1-10 |
|
•
•
•
•
•
|
| Protein |
| Organism: |
Mus musculus/domesticus |
| Length: |
125
 |
| Fragment?: |
false |
|
•
•
•
•
•
|
| Protein |
| Organism: |
Mus musculus/domesticus |
| Length: |
94
 |
| Fragment?: |
false |
|
•
•
•
•
•
|
| Protein |
| Organism: |
Mus musculus/domesticus |
| Length: |
121
 |
| Fragment?: |
false |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Setty SR |
| Year: |
2007 |
| Journal: |
Mol Biol Cell |
| Title: |
BLOC-1 is required for cargo-specific sorting from vacuolar early endosomes toward lysosome-related organelles. |
| Volume: |
18 |
| Issue: |
3 |
| Pages: |
768-80 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Wu K |
| Year: |
2021 |
| Journal: |
Autophagy |
| Title: |
BLOC1S1/GCN5L1/BORCS1 is a critical mediator for the initiation of autolysosomal tubulation. |
| Volume: |
17 |
| Issue: |
11 |
| Pages: |
3707-3724 |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
Mus caroli |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
mouse, laboratory |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
Mus pahari |
|
•
•
•
•
•
|
| Protein Coding Gene |
| Type: |
protein_coding_gene |
| Organism: |
Mus spretus |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Thapa D |
| Year: |
2018 |
| Journal: |
J Biol Chem |
| Title: |
The protein acetylase GCN5L1 modulates hepatic fatty acid oxidation activity via acetylation of the mitochondrial β-oxidation enzyme HADHA. |
| Volume: |
293 |
| Issue: |
46 |
| Pages: |
17676-17684 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Thapa D |
| Year: |
2022 |
| Journal: |
Physiol Rep |
| Title: |
GCN5L1 impairs diastolic function in mice exposed to a high fat diet by restricting cardiac pyruvate oxidation. |
| Volume: |
10 |
| Issue: |
15 |
| Pages: |
e15415 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Wu K |
| Year: |
2018 |
| Journal: |
J Cell Sci |
| Title: |
GCN5L1 interacts with αTAT1 and RanBP2 to regulate hepatic α-tubulin acetylation and lysosome trafficking. |
| Volume: |
131 |
| Issue: |
22 |
|
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7367602 |
| Assay Type: |
Western blot |
| Annotation Date: |
2022-10-31 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1689417 |
|
| Stage: |
TS17 |
| Assay Id: |
MGI:7377780 |
| Age: |
embryonic day 10.5 |
| Image: |
8 |
|
| Specimen Label: |
WT |
| Detected: |
true |
| Specimen Num: |
1 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7367602 |
| Assay Type: |
Western blot |
| Annotation Date: |
2022-10-31 |
| Strength: |
Absent |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:1689417 |
|
| Stage: |
TS17 |
| Assay Id: |
MGI:7377780 |
| Age: |
embryonic day 10.5 |
| Image: |
8 |
|
| Specimen Label: |
Bloc1s1-/- |
| Detected: |
false |
| Specimen Num: |
2 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7383018 |
| Assay Type: |
RT-PCR |
| Annotation Date: |
2022-11-14 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:3550728 |
|
| Stage: |
TS28 |
| Assay Id: |
MGI:7383038 |
| Age: |
postnatal week 2 |
|
|
| Specimen Label: |
PZ WT |
| Detected: |
true |
| Specimen Num: |
1 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7383018 |
| Assay Type: |
RT-PCR |
| Annotation Date: |
2022-11-14 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:3550728 |
|
| Stage: |
TS28 |
| Assay Id: |
MGI:7383038 |
| Age: |
postnatal week 2 |
|
|
| Specimen Label: |
PZ Xbp1CartEx2 |
| Detected: |
true |
| Specimen Num: |
2 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7383018 |
| Assay Type: |
RT-PCR |
| Annotation Date: |
2022-11-14 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:3550628 |
|
| Stage: |
TS28 |
| Assay Id: |
MGI:7383042 |
| Age: |
postnatal week 2 |
|
|
| Specimen Label: |
HZ WT |
| Detected: |
true |
| Specimen Num: |
1 |
|
•
•
•
•
•
|
| GXD Expression |
| Probe: |
MGI:7383018 |
| Assay Type: |
RT-PCR |
| Annotation Date: |
2022-11-14 |
| Strength: |
Present |
| Sex: |
Not Specified |
| Emaps: |
EMAPS:3550628 |
|
| Stage: |
TS28 |
| Assay Id: |
MGI:7383042 |
| Age: |
postnatal week 2 |
|
|
| Specimen Label: |
HZ Xbp1CartEx2 |
| Detected: |
true |
| Specimen Num: |
2 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Zhang C |
| Year: |
2020 |
| Journal: |
Elife |
| Title: |
BLOS1 mediates kinesin switch during endosomal recycling of LDL receptor. |
| Volume: |
9 |
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Thapa D |
| Year: |
2020 |
| Journal: |
Sci Rep |
| Title: |
Cardiomyocyte-specific deletion of GCN5L1 in mice restricts mitochondrial protein hyperacetylation in response to a high fat diet. |
| Volume: |
10 |
| Issue: |
1 |
| Pages: |
10665 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Manning JR |
| Year: |
2019 |
| Journal: |
J Mol Cell Cardiol |
| Title: |
Cardiac-specific deletion of GCN5L1 restricts recovery from ischemia-reperfusion injury. |
| Volume: |
129 |
|
| Pages: |
69-78 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Wang L |
| Year: |
2017 |
| Journal: |
Nat Commun |
| Title: |
GCN5L1 modulates cross-talk between mitochondria and cell signaling to regulate FoxO1 stability and gluconeogenesis. |
| Volume: |
8 |
| Issue: |
1 |
| Pages: |
523 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Bae D |
| Year: |
2019 |
| Journal: |
J Cell Biol |
| Title: |
Degradation of Blos1 mRNA by IRE1 repositions lysosomes and protects cells from stress. |
| Volume: |
218 |
| Issue: |
4 |
| Pages: |
1118-1127 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Lv T |
| Year: |
2021 |
| Journal: |
Oxid Med Cell Longev |
| Title: |
General Control of Amino Acid Synthesis 5-Like 1-Mediated Acetylation of Manganese Superoxide Dismutase Regulates Oxidative Stress in Diabetic Kidney Disease. |
| Volume: |
2021 |
|
| Pages: |
6691226 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Driessen CA |
| Year: |
1997 |
| Journal: |
Gene |
| Title: |
Cloning and structural analysis of the murine GCN5L1 gene. |
| Volume: |
203 |
| Issue: |
1 |
| Pages: |
27-31 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Donato V |
| Year: |
2017 |
| Journal: |
Nat Cell Biol |
| Title: |
The TDH-GCN5L1-Fbxo15-KBP axis limits mitochondrial biogenesis in mouse embryonic stem cells. |
| Volume: |
19 |
| Issue: |
4 |
| Pages: |
341-351 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Zhang A |
| Year: |
2014 |
| Journal: |
J Biol Chem |
| Title: |
Biogenesis of lysosome-related organelles complex-1 subunit 1 (BLOS1) interacts with sorting nexin 2 and the endosomal sorting complex required for transport-I (ESCRT-I) component TSG101 to mediate the sorting of epidermal growth factor receptor into endosomal compartments. |
| Volume: |
289 |
| Issue: |
42 |
| Pages: |
29180-94 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Manning JR |
| Year: |
2019 |
| Journal: |
Biochem J |
| Title: |
Loss of GCN5L1 in cardiac cells disrupts glucose metabolism and promotes cell death via reduced Akt/mTORC2 signaling. |
| Volume: |
476 |
| Issue: |
12 |
| Pages: |
1713-1724 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Yang Q |
| Year: |
2012 |
| Journal: |
Traffic |
| Title: |
The BLOS1-interacting protein KXD1 is involved in the biogenesis of lysosome-related organelles. |
| Volume: |
13 |
| Issue: |
8 |
| Pages: |
1160-9 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Di Pietro SM |
| Year: |
2006 |
| Journal: |
Mol Biol Cell |
| Title: |
BLOC-1 interacts with BLOC-2 and the AP-3 complex to facilitate protein trafficking on endosomes. |
| Volume: |
17 |
| Issue: |
9 |
| Pages: |
4027-38 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Starcevic M |
| Year: |
2004 |
| Journal: |
J Biol Chem |
| Title: |
Identification of snapin and three novel proteins (BLOS1, BLOS2, and BLOS3/reduced pigmentation) as subunits of biogenesis of lysosome-related organelles complex-1 (BLOC-1). |
| Volume: |
279 |
| Issue: |
27 |
| Pages: |
28393-401 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Gwynn B |
| Year: |
2004 |
| Journal: |
Blood |
| Title: |
Reduced pigmentation (rp), a mouse model of Hermansky-Pudlak syndrome, encodes a novel component of the BLOC-1 complex. |
| Volume: |
104 |
| Issue: |
10 |
| Pages: |
3181-9 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Pu J |
| Year: |
2015 |
| Journal: |
Dev Cell |
| Title: |
BORC, a multisubunit complex that regulates lysosome positioning. |
| Volume: |
33 |
| Issue: |
2 |
| Pages: |
176-88 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Yordanov TE |
| Year: |
2019 |
| Journal: |
Traffic |
| Title: |
Biogenesis of lysosome-related organelles complex-1 (BORC) regulates late endosomal/lysosomal size through PIKfyve-dependent phosphatidylinositol-3,5-bisphosphate. |
| Volume: |
20 |
| Issue: |
9 |
| Pages: |
674-696 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Salazar G |
| Year: |
2006 |
| Journal: |
Mol Biol Cell |
| Title: |
BLOC-1 complex deficiency alters the targeting of adaptor protein complex-3 cargoes. |
| Volume: |
17 |
| Issue: |
9 |
| Pages: |
4014-26 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Ghiani CA |
| Year: |
2010 |
| Journal: |
Mol Psychiatry |
| Title: |
The dysbindin-containing complex (BLOC-1) in brain: developmental regulation, interaction with SNARE proteins and role in neurite outgrowth. |
| Volume: |
15 |
| Issue: |
2 |
| Pages: |
115, 204-15 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Larimore J |
| Year: |
2011 |
| Journal: |
Mol Biol Cell |
| Title: |
The schizophrenia susceptibility factor dysbindin and its associated complex sort cargoes from cell bodies to the synapse. |
| Volume: |
22 |
| Issue: |
24 |
| Pages: |
4854-67 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Zhou W |
| Year: |
2016 |
| Journal: |
Elife |
| Title: |
BLOS2 negatively regulates Notch signaling during neural and hematopoietic stem and progenitor cell development. |
| Volume: |
5 |
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Cameron TL |
| Year: |
2015 |
| Journal: |
Osteoarthritis Cartilage |
| Title: |
Cartilage-specific ablation of XBP1 signaling in mouse results in a chondrodysplasia characterized by reduced chondrocyte proliferation and delayed cartilage maturation and mineralization. |
| Volume: |
23 |
| Issue: |
4 |
| Pages: |
661-70 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Mouse Genome Informatics and the Europhenome Mouse Phenotyping Resource |
| Year: |
2010 |
| Journal: |
Database Release |
| Title: |
Obtaining and Loading Phenotype Annotations from Europhenome |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Pagliarini DJ |
| Year: |
2008 |
| Journal: |
Cell |
| Title: |
A mitochondrial protein compendium elucidates complex I disease biology. |
| Volume: |
134 |
| Issue: |
1 |
| Pages: |
112-23 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Birgit Meldal and Sandra Orchard (1). (1) European Bioinformatics Institute (EBI), Hinxton, Cambridgeshire, United Kingdom |
| Year: |
2023 |
|
| Title: |
Manual transfer of experimentally-verified manual GO annotation data to homologous complexes by curator judgment of sequence, composition and function similarity |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Yokoyama S |
| Year: |
2009 |
| Journal: |
Dev Cell |
| Title: |
A systems approach reveals that the myogenesis genome network is regulated by the transcriptional repressor RP58. |
| Volume: |
17 |
| Issue: |
6 |
| Pages: |
836-48 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Mouse Genome Informatics Scientific Curators |
| Year: |
2003 |
|
| Title: |
Data Curation Using Mouse Genome Assembly |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
The Gene Ontology Consortium |
| Year: |
2016 |
|
| Title: |
Automatic assignment of GO terms using logical inference, based on on inter-ontology links |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Stryke D |
| Year: |
2003 |
| Journal: |
Nucleic Acids Res |
| Title: |
BayGenomics: a resource of insertional mutations in mouse embryonic stem cells. |
| Volume: |
31 |
| Issue: |
1 |
| Pages: |
278-81 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Helmholtz Zentrum Muenchen GmbH |
| Year: |
2010 |
| Journal: |
MGI Direct Data Submission |
| Title: |
Alleles produced for the EUCOMM and EUCOMMTools projects by the Helmholtz Zentrum Muenchen GmbH (Hmgu) |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Kawai J |
| Year: |
2001 |
| Journal: |
Nature |
| Title: |
Functional annotation of a full-length mouse cDNA collection. |
| Volume: |
409 |
| Issue: |
6821 |
| Pages: |
685-90 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
Adams DJ |
| Year: |
2024 |
| Journal: |
Nature |
| Title: |
Genetic determinants of micronucleus formation in vivo. |
| Volume: |
627 |
| Issue: |
8002 |
| Pages: |
130-136 |
|
•
•
•
•
•
|
| Publication |
| First Author: |
MGD Nomenclature Committee |
| Year: |
1995 |
|
| Title: |
Nomenclature Committee Use |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Mouse Genome Informatics (MGI) and National Center for Biotechnology Information (NCBI) |
| Year: |
2008 |
| Journal: |
Database Download |
| Title: |
Mouse Gene Trap Data Load from dbGSS |
|
|
|
|
•
•
•
•
•
|
| Publication |
| First Author: |
Cyagen Biosciences Inc. |
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Manual transfer of experimentally-verified manual GO annotation data to orthologs by curator judgment of sequence similarity |
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The Jackson Laboratory Mouse Radiation Hybrid Database |
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2010 |
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Automated transfer of experimentally-verified manual GO annotation data to mouse-human orthologs |
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Mouse Genome Informatics Scientific Curators |
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Mouse Genome Informatics Computational Sequence to Gene Associations |
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2010 |
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Mouse Genome Informatics (MGI) and The National Center for Biotechnology Information (NCBI) |
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Mouse Genome Informatics Scientific Curators |
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2005 |
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2005 |
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Mouse Genome Informatics Scientific Curators |
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2009 |
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Mouse Microarray Data Integration in Mouse Genome Informatics, the Affymetrix GeneChip Mouse Genome 430 2.0 Array Platform |
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Elife |
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Brucella activates the host RIDD pathway to subvert BLOS1-directed immune defense. |
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11 |
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