Disease or phenotype MONDO
spermatogenic failure
MONDO_0004983 in Open Targets Platform 26.06, filed under genetic, familial or congenital disease, reproductive system or breast disease. The targets below are ranked by the Platform's association score, which the Platform says is not a confidence score; the ClinGen card is a separate question, whether variation in a gene causes a monogenic disease.
Which targets
Indirect is the Platform's own default when listing a disease's targets: the evidence of the term's ontology descendants counts. Direct counts the evidence between the two terms alone. The page says which it shows.
01The term
About this term, from the Platform
What this tells you
The name, the therapeutic areas, the parents and the children in the strip are read from the disease dataset of Open Targets Platform 26.06, built into this site on 2026-09-09; the description, the synonyms and the ranked targets are read live from the Platform's API, which names the same release on every answer, and every figure on this page is the Platform's own.
What the entity is, in the Platform's words: A disease or phenotype in the Platform is understood as any disease, phenotype, biological process or measurement that might have any type of causality relationship with a human target. The EMBL-EBI Experimental Factor Ontology (EFO) is used as scaffold for the disease or phenotype entity.
[R16] So a measurement or a biological process has a page here like a disease, and the therapeutic areas in the strip say which kind of term it is. What a target is: A target in the Platform is understood as any naturally-occurring molecule that can be targeted by a medicinal product. EMBL-EBI's Ensembl database is used as source for human targets in the Platform, with the Ensembl gene ID as the primary identifier.
[R18]
The ranking is by the Platform's overall association score: The overall association score aims to summarise all the aggregated evidence for a given target-disease association. The score is derived by calculating the harmonic sum of the association score by data source weighted by the data source weights, regardless of their data type categorisation.
[R15] And what the score is not: While scores are useful to rank lists of targets or diseases, they should not be interpreted as a confidence score for the target-disease association.
[R15] For example, under-studied diseases are unlikely to produce high-scoring targets due to the lack of available evidence. In such diseases, a relatively low-scoring target might still be the top-ranked target and potentially a very interesting lead from a therapeutic standpoint.
[R15]
Two views, in the Platform's words. Direct: The Platform refers to associations described by aggregated evidence between two specific terms in our data sources as direct associations.
[R15] Indirect, the Platform's own default when listing the targets of a disease: An association page for targets associated with a disease (e.g. Inflammatory Bowel Disease associations page) includes both direct and indirect evidence.
[R15] One data type is never propagated: RNA expression data type evidence is not propagated in the ontology. We made this decision to prevent parent terms from having long lists of associated targets with weak RNA expression association scores.
[R15]
The data are public domain, Open Targets Platform is marked with CC0 1.0. This dedicates the data to the public domain, allowing downstream users to consume the data without restriction.
[R14] and the Platform asks that its latest publication be cited [R17], which is [R03].
A target high on this list is a gene the Platform's sources associate with this term by the Platform's arithmetic over their evidence; choosing a knockdown target from it means reading the evidence behind the row on the Platform's own page, which each row links to, and the order of two rows that share a score can differ between requests, which the page says when it happens.
- [R03] Buniello A, Suveges D, Cruz-Castillo C, Llinares MB, Cornu H, Lopez I, et al. (2025). Open Targets Platform: facilitating therapeutic hypotheses building in drug discovery. Nucleic Acids Research 53:D1467-D1475. PMID 39657122, doi 10.1093/nar/gkae1128.
- [R14] Open Targets Platform Documentation. Licence. https://platform-docs.opentargets.org/licence, read 2026-09-09.
- [R15] Open Targets Platform Documentation. Target-disease associations. https://platform-docs.opentargets.org/associations, read 2026-09-09.
- [R16] Open Targets Platform Documentation. Disease or Phenotype. https://platform-docs.opentargets.org/disease-or-phenotype, read 2026-09-09.
- [R17] Open Targets Platform Documentation. Citation. https://platform-docs.opentargets.org/citation, read 2026-09-09.
- [R18] Open Targets Platform Documentation. Target. https://platform-docs.opentargets.org/target, read 2026-09-09.
02Ranked targets
Targets the Platform ranks for this term, indirect view
03ClinGen
Gene-disease validity curations for this MONDO term
What this tells you
The curations are read from ClinGen's gene-disease validity download, keyed on the MONDO term Open Targets writes for this entity after an exact character translation and never after a search; a term of another ontology has no counterpart in that file, and the card says so. Each row shows which of ClinGen's classifications it carries, with the procedure version and the date it was made under; nothing here ranks the classifications.
What a classification is about, in ClinGen's words: The ClinGen Gene-Disease Clinical Validity curation process involves evaluating the strength of evidence supporting or refuting a claim that variation in a particular gene causes a particular monogenic disease.
[R20] And what the process is not: This curation process is not intended to be a systematic review of all available literature for a given gene or condition, but instead an overview of the most pertinent evidence required to assign the appropriate classification for a gene-disease relationship at a given time.
[R21]
The classification vocabulary is the 8 values ClinGen's own results table lists in its Classification filter control, in the control's own alphabetical order [R23]: Animal Model Only, Definitive, Disputed, Limited, Moderate, No Known Disease Relationship, Refuted, Strong. The order is the control's and carries no strength: nothing here ranks the values, and a value outside that set is shown as the file writes it and marked as unlisted, never mapped to a neighbour. The definitions of the values are in the standard operating procedure, which ClinGen publishes as a document [R22]; this site has not read that document, so no definition is stated here, and the framework paper the procedure rests on is [R06]. Each row carries the procedure version it was made under, as the table does, because rows made under different versions sit side by side.
ClinGen's curated content is public domain: All curated content published by ClinGen is available free of restriction under the CC0 1.0 Universal (CC0 1.0) Public Domain Dedication. However, ClinGen requests that you give attribution to ClinGen and provide the date accessed whenever possible and appropriate.
[R19] The attribution in the card's provenance line follows ClinGen's own example statement, and no logo is shown: The ClinGen logo cannot be used without prior approval of the ClinGen Steering Committee.
[R19] ClinGen asks that its marker paper [R04] and its 2024 consortium paper [R05] be cited.
A ClinGen classification is a statement about whether variation in a gene causes a monogenic disease. It is not a statement about whether the gene is a knockdown target, and it is not a rank beside the Platform's score above it.
- [R04] Rehm HL, Berg JS, Brooks LD, Bustamante CD, Evans JP, Landrum MJ, et al. (2015). ClinGen--the Clinical Genome Resource. N Engl J Med 372:2235-2242. PMID 26014595, doi 10.1056/NEJMsr1406261.
- [R05] ClinGen Consortium (2025). The Clinical Genome Resource (ClinGen): Advancing genomic knowledge through global curation. Genet Med 27:101228. PMID 39404758, doi 10.1016/j.gim.2024.101228.
- [R06] Strande NT, Riggs ER, Buchanan AH, Ceyhan-Birsoy O, DiStefano M, Dwight SS, et al. (2017). Evaluating the Clinical Validity of Gene-Disease Associations: An Evidence-Based Framework Developed by the Clinical Genome Resource. Am J Hum Genet 100:895-906. PMID 28552198, doi 10.1016/j.ajhg.2017.04.015.
- [R19] ClinGen, Clinical Genome Resource. Citing ClinGen & Terms of Use. https://clinicalgenome.org/docs/terms-of-use/, read 2026-09-09.
- [R20] ClinGen, Clinical Genome Resource. Gene-Disease Validity. https://clinicalgenome.org/curation-activities/gene-disease-validity/, read 2026-09-09.
- [R21] ClinGen, Clinical Genome Resource. Gene-Disease Validity Standard Operating Procedure. https://clinicalgenome.org/docs/gene-disease-validity-standard-operating-procedure/, read 2026-09-09.
- [R22] ClinGen, Clinical Genome Resource. Gene-Disease Validity Standard Operating Procedures, Version 12. https://clinicalgenome.org/docs/gene-disease-validity-standard-operating-procedures-version-12/, read 2026-09-09.
- [R23] ClinGen, Clinical Genome Resource. ClinGen Gene-Disease Validity Curations. https://search.clinicalgenome.org/kb/gene-validity, read 2026-09-09.
04The ontology
Where the release places this term
Children
- spermatogenic failure 6MONDO_0007060
- spermatogenic failure 2MONDO_0007161
- spermatogenic failure 5MONDO_0009461
- spermatogenic failure 1MONDO_0009776
- spermatogenic failure, X-linked, 2MONDO_0010647
- spermatogenic failure 3MONDO_0011720
- spermatogenic failure 7MONDO_0013070
- spermatogenic failure 8MONDO_0013504
- spermatogenic failure 10MONDO_0013901
- spermatogenic failure 11MONDO_0014037
- spermatogenic failure 12MONDO_0014172
- spermatogenic failure 13MONDO_0014365
- spermatogenic failure 14MONDO_0014366
- spermatogenic failure 15MONDO_0014847
- spermatogenic failure 16MONDO_0014961
- spermatogenic failure 31MONDO_0020852
- spermatogenic failure 54MONDO_0023664
- spermatogenic failure, X-linked, 4MONDO_0024773
- spermatogenic failure, X-linked, 3MONDO_0025354
- spermatogenic failure 55MONDO_0030307
- spermatogenic failure 56MONDO_0030430
- spermatogenic failure 57MONDO_0030439
- spermatogenic failure 58MONDO_0030463
- spermatogenic failure 59MONDO_0030492
- spermatogenic failure 60MONDO_0030493
- spermatogenic failure 61MONDO_0030507
- spermatogenic failure 62MONDO_0030508
- spermatogenic failure 63MONDO_0030515
- spermatogenic failure 64MONDO_0030522
- spermatogenic failure 65MONDO_0030531
- spermatogenic failure 66MONDO_0030716
- spermatogenic failure 67MONDO_0030718
- spermatogenic failure 68MONDO_0030721
- spermatogenic failure 69MONDO_0030732
- spermatogenic failure 70MONDO_0030733
- spermatogenic failure 71MONDO_0030787
- spermatogenic failure 72MONDO_0030809
- spermatogenic failure 73MONDO_0030818
- spermatogenic failure 47MONDO_0030844
- spermatogenic failure 48MONDO_0030846
- spermatogenic failure 49MONDO_0030868
- spermatogenic failure 50MONDO_0030869
- spermatogenic failure 51MONDO_0030926
- spermatogenic failure 52MONDO_0030938
- spermatogenic failure 74MONDO_0030972
- spermatogenic failure 75MONDO_0030984
- spermatogenic failure 53MONDO_0030989
- spermatogenic failure 76MONDO_0031077
- spermatogenic failure 77MONDO_0031083
- spermatogenic failure 39MONDO_0032845
- spermatogenic failure 40MONDO_0032859
- spermatogenic failure 41MONDO_0032863
- spermatogenic failure 42MONDO_0032896
- spermatogenic failure 43MONDO_0032898
- spermatogenic failure 44MONDO_0033622
- spermatogenic failure 45MONDO_0033671
- spermatogenic failure 46MONDO_0033673
- spermatogenic failure 18MONDO_0054615
- spermatogenic failure 19MONDO_0054723
- spermatogenic failure 20MONDO_0054724
- spermatogenic failure 21MONDO_0054725
- spermatogenic failure 22MONDO_0054726
- spermatogenic failure 23MONDO_0054727
- spermatogenic failure 24MONDO_0054728
- spermatogenic failure 25MONDO_0054729
- spermatogenic failure 26MONDO_0054730
- spermatogenic failure 27MONDO_0054731
- spermatogenic failure 28MONDO_0054732
- spermatogenic failure 29MONDO_0054733
- spermatogenic failure 98MONDO_0700290
- spermatogenic failure 78MONDO_0859338
- spermatogenic failure 79MONDO_0859352
- spermatogenic failure 80MONDO_0859364
- spermatogenic failure, X-linked, 5MONDO_0859477
- spermatogenic failure, X-linked, 6MONDO_0859478
- spermatogenic failure 81MONDO_0859522
- spermatogenic failure, X-linked, 7MONDO_0957202
- spermatogenic failure 82MONDO_0957249
- spermatogenic failure 83MONDO_0957250
- spermatogenic failure 84MONDO_0957301
- spermatogenic failure 85MONDO_0957584
- spermatogenic failure 86MONDO_0957593
- spermatogenic failure 87MONDO_0957594
- spermatogenic failure 88MONDO_0957821
- spermatogenic failure 89MONDO_0958206
- spermatogenic failure 90MONDO_0958242
- spermatogenic failure, X-linked, 8MONDO_0970943
- spermatogenic failure 91MONDO_0970952
- spermatogenic failure 92MONDO_0970999
- spermatogenic failure 93MONDO_0971000
- spermatogenic failure 94MONDO_0971002
- spermatogenic failure 96MONDO_0975842
- spermatogenic failure 97MONDO_0975958
- spermatogenic failure, X-linked, 9MONDO_0976123
- spermatogenic failure 99MONDO_0978297
- spermatogenic failure 100MONDO_0978302
- spermatogenic failure 101MONDO_0979572
Therapeutic areas
The same term as ClinGen's file writes it: MONDO:0004983 (the Monarch Initiative's page), by an exact character translation of the Platform's id.
- Open Targets Platform, the disease dataset · Open Targets Platform 26.06 · read · Open Targets PlatformOpen Targets Platform is marked with CC0 1.0. Citation requested: Buniello A et al., Nucleic Acids Research (2025), doi 10.1093/nar/gkae1128.