1.Clinical features of infantile neuroaxonal dystrophy and PLA2G6 gene testing.
Yao LU ; Chun-Hua LIU ; Yang WANG
Chinese Journal of Contemporary Pediatrics 2019;21(9):851-855
Infantile neuroaxonal dystrophy (INAD) is a rare neurodegenerative disease. Two boys aged 3 years and 4 years and 2 months respectively, were admitted to the hospital due to delayed mental and motor development. There were no abnormalities at birth, and both children had low muscle strength and tension on admission. One child was not able to stand alone and had impaired vision. Electromyography showed neurogenic damage, and head MRI revealed cerebellar atrophy. High-throughput sequencing revealed compound heterozygous mutations in the PLA2G6 gene in the two children. The mutations (IVS11-1G>T and c.1984C>G) in one child were new mutations, and immunohistochemistry showed a reduction in the protein expression of PLAG6 in the muscular tissue of this child. INAD has the main clinical manifestations of psychomotor developmental regression and cerebellar atrophy. High-throughput sequencing can help with clinical diagnosis.
Child, Preschool
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Group VI Phospholipases A2
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genetics
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Humans
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Magnetic Resonance Imaging
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Male
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Mutation
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Neuroaxonal Dystrophies
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genetics
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Neurodegenerative Diseases
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genetics
2.A novel homozygous mutation in PLA2G6 gene causes infantile neuroaxonal dystrophy in a case.
Jinling WANG ; Wei WU ; Xuefeng CHEN ; Li ZHANG ; Xiumin WANG ; Guanping DONG
Chinese Journal of Medical Genetics 2016;33(1):64-67
OBJECTIVETo investigate the clinical symptoms and potential mutations in the PLA2G6 gene for a child with infantile neuroaxonal dystrophy.
METHODSClinical data of the patient was collected. The coding regions of PLA2G6 gene was subjected to Sanger sequencing using blood DNA from the patient and her parents.
RESULTSThe patient has presented with psychomotor regression and hypotonia, followed by development of tetraparesis. A novel homozygous mutation G68A in the PLA2G6 gene was found by DNA sequencing, while her parents were both heterozygous carriers.
CONCLUSIONThe psychomotor regression and tetraparesis of the patient was caused by infantile neuroaxonal dystrophy due to a novel homozygous mutation in the PLA2G6 gene, which was inherited from her parents.
Adult ; Base Sequence ; Brain ; diagnostic imaging ; Child, Preschool ; DNA Mutational Analysis ; Female ; Group VI Phospholipases A2 ; genetics ; Homozygote ; Humans ; Magnetic Resonance Imaging ; Male ; Molecular Sequence Data ; Mutation ; Neuroaxonal Dystrophies ; diagnostic imaging ; genetics ; Radiography