Prader-Willi syndrome patient with atypical phenotypes caused by mosaic deletion in the paternal 15q11-q13 region: a case report. 2022

Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
Tianjin Pediatric Research Institute, Tianjin Children's Hospital (Children's Hospital of Tianjin University), Tianjin, 300134, China.

BACKGROUND Prader-Willi syndrome (PWS) is a multisystemic complex genetic disorder caused by the loss of paternally expressed genes in the human chromosome region 15q11.2-q13. It is characterized by severe hypotonia and feeding difficulties in early infancy, followed in later infancy or early childhood by excessive eating and gradual development of morbid obesity. Motor milestones and language development are delayed and most patients have intellectual disability. METHODS Here we describe a rare PWS case caused by mosaic imprinting defect in the region 15q11.2-q13 of paternal origin. The proband was a male child with a clinical presentation of global developmental delay and hypotonia with specific facial features. Karyotype of the child was noted as mosaic: 45XY,der(15)?t(15;21),-21[26]/46,XY[24]. Whole-exome sequencing (WES) identified a deletion of 22.7 Mb in size at chr15q11.2q21.1 region and a deletion of 2.1 Mb in size at chr21q22.3 region. The Methylation-specific multiplex ligation-dependent probe amplification(MS-MLPA) of the 15q11.2-q13 region showed that the loading ratio of methylated alleles was 70% and that of unmethylated alleles was 30%(50% normal), which confirmed that the loss of mosaic imprinted defects in the paternal allele led to the diagnosis of PWS. CONCLUSIONS We propose that complete clinical criteria for PWS should not be considered sensitive in diagnosing partial atypical PWS due to mosaic imprinting defects. In contrast, clinical suspicion based on less restrictive criteria followed by multiple techniques is a more powerful approach.

UI MeSH Term Description Entries
D008297 Male Males
D009123 Muscle Hypotonia A diminution of the skeletal muscle tone marked by a diminished resistance to passive stretching. Flaccid Muscle Tone,Hypotonia,Decreased Muscle Tone,Floppy Muscles,Hypomyotonia,Hypotony, Muscle,Muscle Flaccidity,Muscle Tone Atonic,Muscle Tone Poor,Muscular Flaccidity,Muscular Hypotonia,Neonatal Hypotonia,Unilateral Hypotonia,Flaccidity, Muscle,Flaccidity, Muscular,Floppy Muscle,Hypotonia, Muscle,Hypotonia, Muscular,Hypotonia, Neonatal,Hypotonia, Unilateral,Hypotonias, Neonatal,Hypotonias, Unilateral,Muscle Hypotony,Muscle Tone Atonics,Muscle Tone, Decreased,Muscle Tone, Flaccid,Muscle, Floppy,Muscles, Floppy,Muscular Flaccidities,Neonatal Hypotonias,Tone Atonic, Muscle,Tone Poor, Muscle
D010641 Phenotype The outward appearance of the individual. It is the product of interactions between genes, and between the GENOTYPE and the environment. Phenotypes
D011218 Prader-Willi Syndrome An autosomal dominant disorder caused by deletion of the proximal long arm of the paternal chromosome 15 (15q11-q13) or by inheritance of both of the pair of chromosomes 15 from the mother (UNIPARENTAL DISOMY) which are imprinted (GENETIC IMPRINTING) and hence silenced. Clinical manifestations include MENTAL RETARDATION; MUSCULAR HYPOTONIA; HYPERPHAGIA; OBESITY; short stature; HYPOGONADISM; STRABISMUS; and HYPERSOMNOLENCE. (Menkes, Textbook of Child Neurology, 5th ed, p229) Labhart-Willi Syndrome,Royer Syndrome,Labhart-Willi-Prader-Fanconi Syndrome,Prader Labhart Willi Syndrome,Prader-Labhart-Willi Syndrome,Royer's Syndrome,Willi-Prader Syndrome,Labhart Willi Prader Fanconi Syndrome,Labhart Willi Syndrome,Prader Willi Syndrome,Royers Syndrome,Syndrome, Labhart-Willi,Syndrome, Labhart-Willi-Prader-Fanconi,Syndrome, Prader-Labhart-Willi,Syndrome, Prader-Willi,Syndrome, Royer,Syndrome, Royer's,Syndrome, Willi-Prader,Willi Prader Syndrome
D002675 Child, Preschool A child between the ages of 2 and 5. Children, Preschool,Preschool Child,Preschool Children
D005190 Family A social group consisting of parents or parent substitutes and children. Family Life Cycles,Family Members,Family Life Cycle,Family Research,Filiation,Kinship Networks,Relatives,Families,Family Member,Kinship Network,Life Cycle, Family,Life Cycles, Family,Network, Kinship,Networks, Kinship,Research, Family
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D019175 DNA Methylation Addition of methyl groups to DNA. DNA methyltransferases (DNA methylases) perform this reaction using S-ADENOSYLMETHIONINE as the methyl group donor. DNA Methylations,Methylation, DNA,Methylations, DNA

Related Publications

Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
March 2002, Journal of medical genetics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
December 2010, Brain research,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
January 1992, Human genetics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
November 2016, European journal of medical genetics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
April 2014, International journal of gynaecology and obstetrics: the official organ of the International Federation of Gynaecology and Obstetrics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
December 2002, American journal of medical genetics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
May 2010, Molecular human reproduction,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
January 1999, Genetic counseling (Geneva, Switzerland),
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
April 1993, Genomics,
Jinying Wu, and Meifang Lei, and Xuetao Wang, and Nan Liu, and Xiaowei Xu, and Chunyu Gu, and Yuping Yu, and Wei Liu
October 2019, Clinical dysmorphology,
Copied contents to your clipboard!