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Published on: February 7, 2019
XK-Associated McLeod Syndrome: Nonhematological Manifestations and Relation to VPS13A Disease
Kevin Peikert1, Andreas Hermann1,2,3, Adrian Danek4
1Translational Neurodegeneration Section "Albrecht Kossel", Department of Neurology, University Medical Center Rostock, University of Rostock, Rostock, Germany.
Background:
McLeod syndrome (MLS) is an X-linked multisystemic progressive disorder caused by loss of function mutations in the XK gene. The rare blood group phenotype of MLS patients with absent Kx antigen requires the support of specialized transfusion institutions because of the risk of transfusion complications. Acanthocytosis of red blood cells occurs in almost all patients. Nonhematological manifestations of MLS are very similar to those of VPS13A disease (chorea-acanthocytosis), an autosomal-recessive condition. Their shared phenotype apart from acanthocytosis includes movement disorders such as chorea and dystonia, epilepsy, peripheral neuropathy, and muscle involvement, typically with creatine kinase (CK) elevation, cardiomyopathy included.
Summary:
In this review, we describe the nonhematological manifestations of MLS in comparison with those of VPS13A disease. While there are many similarities, differences such as mode of inheritance, sex distribution, age at manifestation, severity of heart involvement, frequency of feeding dystonia or of involuntary head drops may help to distinguish these disorders in the clinic. Immunohematological demonstration of the McLeod-Kell phenotype or detection of pathogenic mutations of XK (or VPS13A, respectively) is the gold standard for distinction. "Neuroacanthocytosis" was often used as an overarching term, but is potentially misleading, as the term does not refer to a defined disease entity. Its use, if continued, must not prevent clinicians to seek a final diagnosis on the basis of molecular findings. The clinical similarity of MLS and VPS13A disease has long suggested some shared pathophysiology. Evidence for molecular interaction between XK, the McLeod protein, and chorein, the VPS13A gene product, has recently been put forward: XK forms a complex with chorein/VPS13A, a bulk lipid transporter located at various membrane contact sites. The exact role of XK in this complex needs to be further elucidated. Impairment of bulk lipid transport appears as the common denominator of both MLS and VPS13A disease. A variety of further conditions may in time be added to the "bulk lipid transport diseases," such as the recently recognized disorders caused by mutations in the VPS13B, VPS13C, and VPS13D genes.
Key Messages:
(1) Patients diagnosed with the rare red cell McLeod phenotype (McLeod syndrome, MLS) require interdisciplinary collaboration of transfusion medicine specialists, neurologists, and cardiologists for both their hematological and nonhematological disease manifestations. (2) The phenotypical similarity of MLS and VPS13A disease, often leading to either confusion or insufficient diagnostic depth (under the label of "neuroacanthocytosis"), is based on interaction of the respective proteins, XK and chorein, within the cellular machinery for bulk lipid transport. (3) Overall, the term "bulk lipid transport diseases" seems useful for further research on a group of conditions that may not only share pathophysiology, but may also share treatment approaches.
Insights
McLeod syndrome (MLS) and chorea-acanthocytosis (VPS13A disease) share symptoms due to impaired bulk lipid transport. Distinguishing these neuroacanthocytosis disorders relies on genetic testing and understanding their distinct inheritance patterns and clinical features.
Area of Science:
- Genetics
- Neurology
- Hematology
Background:
- McLeod syndrome (MLS) is an X-linked disorder caused by mutations in the XK gene, characterized by absent Kx antigen and acanthocytosis.
- Nonhematological MLS manifestations overlap significantly with VPS13A disease (chorea-acanthocytosis), including movement disorders, epilepsy, and cardiomyopathy.
- Both conditions present with acanthocytosis and share clinical similarities, necessitating careful differential diagnosis.
Purpose of the Study:
- To compare the nonhematological manifestations of McLeod syndrome (MLS) with VPS13A disease (chorea-acanthocytosis).
- To elucidate the shared pathophysiology underlying these phenotypically similar disorders.
- To highlight diagnostic challenges and the importance of molecular findings in differentiating MLS and VPS13A disease.
Main Methods:
- Review of clinical and genetic data for MLS and VPS13A disease.
- Comparative analysis of nonhematological and hematological features.
- Discussion of molecular interactions between XK protein and chorein (VPS13A gene product).
Main Results:
- MLS and VPS13A disease share numerous clinical features, including movement disorders, epilepsy, and neuropathy.
- Key differences include mode of inheritance, sex distribution, and severity of cardiac involvement.
- Molecular evidence suggests XK and chorein interact within a cellular bulk lipid transport pathway, indicating shared pathophysiology.
Conclusions:
- The term "neuroacanthocytosis" can be misleading; molecular diagnosis is crucial for distinguishing MLS and VPS13A disease.
- Impaired bulk lipid transport is a common denominator for MLS and VPS13A disease, suggesting a new category of "bulk lipid transport diseases."
- Interdisciplinary collaboration and further research into bulk lipid transport disorders are essential for improved diagnosis and treatment.
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