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Description

Geleophysic dysplasia is an inherited condition that is characterized by short stature, thickened skin, joint abnormalities, distinctive facial features, and heart (cardiac) problems. The features and the severity of geleophysic dysplasia can vary among affected individuals.

People with geleophysic dysplasia have short stature with especially small hands and feet. A thickening of the skin combined with joint deformities (contractures) can limit movement in the joints, especially in the fingers and wrists. Contractures in the legs and hips may cause people with geleophysic dysplasia to walk on their toes. The joint abnormalities seen in affected individuals typically worsen over time.

Geleophysic dysplasia gets its name from the Greek words for happy ("gelios") and nature ("physis") and is derived from the good-natured facial appearance seen in many affected individuals. The distinctive facial features that are associated with this condition include a round face with full cheeks, a small nose with upturned nostrils, a broad nasal bridge, a thin upper lip, upturned corners of the mouth, and a flattened area between the upper lip and the nose (philtrum).

People with geleophysic dysplasia often have cardiac problems. Abnormalities of the valves that control the flow of blood through the heart (cardiac valves) are especially common. In affected individuals, the cardiac valves may thicken, which can block blood flow and increase pressure in the heart. These cardiac valve problems can worsen over time. In some cases, people with geleophysic dysplasia have a narrowing of the artery from the heart to the lungs (pulmonary stenosis) or a hole between the two upper chambers of the heart (atrial septal defect).

Approximately one third of individuals with geleophysic dysplasia have an abnormality of the windpipe (trachea) or voice box (larynx) that can cause serious breathing problems. These airway problems can also worsen over time. Some affected individuals have recurrent respiratory infections. About one third of people with geleophysic dysplasia do not survive past early childhood due to serious cardiac or respiratory problems.

Other features of geleophysic dysplasia can include an enlarged liver (hepatomegaly) and recurrent ear infections, which can lead to hearing loss in some affected individuals.

Frequency

Geleophysic dysplasia is a rare disorder. Although the exact number of people with this condition is unknown, more than 100 affected individuals have been reported in the medical literature.

Causes

Variants (also called mutations) in multiple genes can cause geleophysic dysplasia. Variants in the ADAMTSL2 and FBN1 genes are the most common causes of this condition.

The ADAMTSL2 and FBN1 genes provide instructions for making proteins that are found in the extracellular matrix, which is the intricate lattice of proteins and other molecules that forms in the spaces between cells. Within the extracellular matrix, the ADAMTSL2 and FBN1 proteins appear to be involved with the microfibrillar network, which is an organized arrangement of thread-like filaments (microfibrils) that allows tissues to be strong and flexible.

Although the exact function of the ADAMTSL2 protein is unclear, studies suggest that it may help the FBN1 protein maintain the microfibrillar network. These proteins also appear to regulate the availability of certain growth factor proteins within the microfibrillar network. These growth factors play a key role in cell growth and division (proliferation), the process by which cells mature to carry out specific functions (differentiation), and cell survival.

Variants in the ADAMTSL2 and FBN1 genes cause cells to produce proteins that do not function properly. Through a poorly understood process, these altered proteins disrupt the organization of the microfibrillar network in various tissues, which impairs normal cell functioning. The altered proteins also impair the activity of certain growth factors. Researchers are working to learn exactly how variants in these two genes lead to the specific signs and symptoms seen in people with geleophysic dysplasia.

Inheritance

Geleophysic dysplasia is inherited in different ways depending on the particular gene involved.

When geleophysic dysplasia is caused by variants in the FBN1 gene, it is inherited in an autosomal dominant pattern, which means one copy of the altered gene in each cell is sufficient to cause the disorder. Some cases of geleophysic dysplasia result from new (de novo) variants in the gene that occur during the formation of reproductive cells (eggs or sperm) in an affected individual's parent or during early embryonic development.

Neither parent has the mutated gene. A spontaneous mutation occurs during the formation of an egg or sperm cell during embryonic development, leading to an affected child.

Autosomal dominant inheritance with a new (de novo) mutation. Credit: U.S. National Library of Medicine.

When geleophysic dysplasia is caused by variants in the ADAMTSL2 gene, it is inherited in an autosomal recessive pattern, which means both copies of the gene in each cell must have a variant to cause the disorder. 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.

Both parents carry one copy of a mutated gene. In the next generation, one child is affected with the condition, two children are carriers, and one is unaffected and not a carrier.

Autosomal recessive inheritance. Credit: U.S. National Library of Medicine.

Other Names for This Condition

  • Geleophysic dwarfism

Where this page came from

This page was imported from MedlinePlus Genetics, National Library of Medicine. Courtesy of MedlinePlus from the National Library of Medicine; its genetics summaries and the illustrations credited to the library are in the public domain. Pictures credited to others are not copied.

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Licencia: CC0 1.0 (dominio público) · Adaptado de medlineplus.gov

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