Frequency
Stickler syndrome affects an estimated 1 in 7,500 to 9,000 newborns. Type I is the most common form of the condition.
Causes
Variants (also known as mutations) in several genes cause the different types of Stickler syndrome. Between 80 and 90 percent of all cases are classified as type I and are caused by variants in the COL2A1 gene. Another 10 to 20 percent of cases are classified as type II and result from variants in the COL11A1 gene. Marshall syndrome, which may be a variant of Stickler syndrome, is also caused by COL11A1 gene variants. Stickler syndrome types III through VI result from variants in other, related genes.
All of the genes associated with Stickler syndrome provide instructions for making components of collagens, which are complex molecules that give structure and strength to the connective tissues
that support the body's joints and organs. Variants in any of these genes impair the production, processing, or assembly of collagen molecules. Defective collagen molecules or reduced amounts of collagen impair the development of connective tissues in many different parts of the body, leading to the varied features of Stickler syndrome.
Not all individuals with Stickler syndrome have variants in one of the known genes. Researchers believe that variants in other genes may also cause this condition, but those genes have not been identified.
Inheritance
Stickler syndrome types I, II, and III are inherited in an autosomal dominant pattern, which means one copy of the altered gene in each cell is sufficient to cause the disorder. In some cases, an affected person inherits a gene variant from one affected parent
. Other cases result from new variants
. These cases occur in people with no history of Stickler syndrome in their family.
Marshall syndrome also typically has an autosomal dominant pattern of inheritance.
Stickler syndrome types IV, V, and VI are inherited in an autosomal recessive pattern
. Autosomal recessive inheritance means both copies of the gene in each cell have variants. The parents of an individual with an autosomal recessive condition each carry one copy of the altered gene, but they typically do not show signs and symptoms of the condition.
Other Names for This Condition
- Hereditary arthro-ophthalmo-dystrophy
- Hereditary arthro-ophthalmopathy
- Stickler dysplasia
Additional Information & Resources
Genetic Testing Information
- Genetic Testing Registry: Otospondylomegaepiphyseal dysplasia, autosomal dominant

- Genetic Testing Registry: Marshall syndrome

- Genetic Testing Registry: Stickler syndrome

- Genetic Testing Registry: Stickler syndrome type 1

- Genetic Testing Registry: Stickler syndrome type 2

- Genetic Testing Registry: Stickler syndrome, type 4

- Genetic Testing Registry: Stickler syndrome, type 5

Genetic and Rare Diseases Information Center
Patient Support and Advocacy Resources
Clinical Trials
Catalog of Genes and Diseases from OMIM
Scientific Articles on PubMed
References
- Acke FR, Dhooge IJ, Malfait F, De Leenheer EM. Hearing impairment in Stickler syndrome: a systematic review. Orphanet J Rare Dis. 2012 Oct 30;7:84. doi: 10.1186/1750-1172-7-84. Citation on PubMed or Free article on PubMed Central
- Annunen S, Korkko J, Czarny M, Warman ML, Brunner HG, Kaariainen H, Mulliken JB, Tranebjaerg L, Brooks DG, Cox GF, Cruysberg JR, Curtis MA, Davenport SL, Friedrich CA, Kaitila I, Krawczynski MR, Latos-Bielenska A, Mukai S, Olsen BR, Shinno N, Somer M, Vikkula M, Zlotogora J, Prockop DJ, Ala-Kokko L. Splicing mutations of 54-bp exons in the COL11A1 gene cause Marshall syndrome, but other mutations cause overlapping Marshall/Stickler phenotypes. Am J Hum Genet. 1999 Oct;65(4):974-83. doi: 10.1086/302585. Citation on PubMed or Free article on PubMed Central
- Baker S, Booth C, Fillman C, Shapiro M, Blair MP, Hyland JC, Ala-Kokko L. A loss of function mutation in the COL9A2 gene causes autosomal recessive Stickler syndrome. Am J Med Genet A. 2011 Jul;155A(7):1668-72. doi: 10.1002/ajmg.a.34071. Epub 2011 Jun 10. Citation on PubMed
- Faletra F, D'Adamo AP, Bruno I, Athanasakis E, Biskup S, Esposito L, Gasparini P. Autosomal recessive Stickler syndrome due to a loss of function mutation in the COL9A3 gene. Am J Med Genet A. 2014 Jan;164A(1):42-7. doi: 10.1002/ajmg.a.36165. Epub 2013 Nov 22. Citation on PubMed
- Khalifa O, Imtiaz F, Ramzan K, Allam R, Hemidan AA, Faqeih E, Abuharb G, Balobaid A, Sakati N, Owain MA. Marshall syndrome: further evidence of a distinct phenotypic entity and report of new findings. Am J Med Genet A. 2014 Oct;164A(10):2601-6. doi: 10.1002/ajmg.a.36681. Epub 2014 Jul 29. Citation on PubMed
- Liberfarb RM, Levy HP, Rose PS, Wilkin DJ, Davis J, Balog JZ, Griffith AJ, Szymko-Bennett YM, Johnston JJ, Francomano CA, Tsilou E, Rubin BI. The Stickler syndrome: genotype/phenotype correlation in 10 families with Stickler syndrome resulting from seven mutations in the type II collagen gene locus COL2A1. Genet Med. 2003 Jan-Feb;5(1):21-7. doi: 10.1097/00125817-200301000-00004. Erratum In: Genet Med. 2003 Nov-Dec;5(6):478. Citation on PubMed
- Mortier G. Stickler Syndrome. 2000 Jun 9 [updated 2023 Sep 7]. In: Adam MP, Feldman J, Mirzaa GM, Pagon RA, Wallace SE, Bean LJH, Gripp KW, Amemiya A, editors. GeneReviews(R) [Internet]. Seattle (WA): University of Washington, Seattle; 1993-2024. Available from http://www.ncbi.nlm.nih.gov/books/NBK1302/ Citation on PubMed
- Van Camp G, Snoeckx RL, Hilgert N, van den Ende J, Fukuoka H, Wagatsuma M, Suzuki H, Smets RM, Vanhoenacker F, Declau F, Van de Heyning P, Usami S. A new autosomal recessive form of Stickler syndrome is caused by a mutation in the COL9A1 gene. Am J Hum Genet. 2006 Sep;79(3):449-57. doi: 10.1086/506478. Epub 2006 Jun 26. Citation on PubMed or Free article on PubMed Central
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