| Literature DB >> 24885232 |
Xiaonan Du, Yu An, Lifei Yu, Renchao Liu, Yanrong Qin, Xiaohong Guo, Daokan Sun, Shuizhen Zhou, Bailin Wu, Yong-Hui Jiang1, Yi Wang.
Abstract
BACKGROUND: Infantile spasms (IS) is a specific type of epileptic encephalopathy associated with severe developmental disabilities. Genetic factors are strongly implicated in IS, however, the exact genetic defects remain unknown in the majority of cases. Rare mutations in a single gene or in copy number variants (CNVs) have been implicated in IS of children in Western countries. The objective of this study was to dissect the role of copy number variations in Chinese children with infantile spasms.Entities:
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Year: 2014 PMID: 24885232 PMCID: PMC4061518 DOI: 10.1186/1471-2350-15-62
Source DB: PubMed Journal: BMC Med Genet ISSN: 1471-2350 Impact factor: 2.103
Rare and novel CNVs identified from Chinese infantile spasms children
| | | | | | | | | |
| S100 | M | 4 | + | chr17:2,405,454-2,520,464 | Del | 115 Kb | De novo | |
| S37 | M | 5 | + | chr1:244,961,797-247,074,490 | Del | 2.1 Mb | De novo | |
| S162 | F | 6 | - | chr2:147,953,313-152,061,251 | Del | 4.1 Mb | De novo | |
| S67 | F | 10 | + | chr1:145,764,453-147,824,207 | Dup | 2.0 Mb | De novo | |
| | | | | | | | | |
| S15 | F | 2 | + | chr10:84,222,075-85,293,140 | Dup | 1.0 Mb | Paternal | |
| S34 | M | 5 | + | chrX:102,262,951-102,659,333 | Dup | 396 kb | Maternal | |
| S134 | F | 4 | + | chr17:14,111,754-15,442,119 | Del | 1.3 Mb | Paternal | |
| S163 | F | 4 | + | chrX:6,451,691-8,115,193 | Dup | 1.6 Mb | Paternal | |
| S165 | M | 5 | + | chr11:101,857,720-102,256,635 | Del | 398 kb | De novo | |
| | | | | | | | | |
| S2 | M | 3 | + | chr2:216,898,976-217,160,487 | Dup | 261 kb | Not determined | |
| S34 | M | 5 | + | chr2:137,826,656-138,048,583 | Dup | 221 kb | Paternal | |
| S42 | M | 4 | + | chr4:48,983,002-49,063,489 | Dup | 80 kb | Paternal | |
| S75 | M | 6 | + | chr6:118,989,529-120,238,639 | Dup | 1.2 Mb | Not determined | |
| S133 | M | 13 | - | chr8:135,644,952-135,791,363 | Dup | 146 Kb | De novo |
Figure 1A patient (S100) with a 115-kb microdeletion at 17p13.3 that disrupts the () gene. A) A local view of the 17p13.3 deletion. The proximal breakpoint is within intron 2 of METTL16, a gene that encodes methyltransferase-like 16 protein whose exact function has not been characterized. The distal breakpoint is within intron 1 of PAFAH1B1 (LIS1), a known causative gene for lissencephaly. The black arrows are the direction of transcription. B) The clinical features of a patient with a prominent forehead and micrognathia. C) Structural MRI analysis showed grade III lissencephaly. D) Analyses by qPCR confirmed that the copy number loss in this patient was de novo using three different primers (P1-P3) within the PAFAH1B1 and analyses of both parents. *p < 0.01, proband vs parents and control.
Figure 2The proband of S37 with a 2.1-Mb microdeletion at 1q44 that disrupts the infantile spasms candidate gene reported by the WES study. A) A local view of the 1q44 deletion and genes in the deleted interval. The black arrows are the direction of transcription of genes. B) The clinical features of a proband with a dysmorphic face. C) Structural MRI analysis showed delayed myelination in the brain. D) qPCR confirmed the copy number loss in probands using three different primers (P1-P3) within HNRNPU. *p < 0.01, proband vs parents and control.
Figure 3A patient from S162 with a 4.1-Mb microdeletion at 2q23.1 that disrupts the known ASD causative gene . A) A local view of the 4.1 Mb 2q31.1 deletion and genes in the deleted interval. B) Analysis by qPCR confirmed the copy number loss and de novo event in the patient using 7 primers (MBD5E6-E13) from exons 5–13 of MBD5. C) The clinical features of a proband with a dysmorphic face, including a coarse face. D) Clinodactyly of the fifth finger, excessive fat pads of the second and middle fingers, and the absence of great toes. E) X-ray analyses showed the absence of the distal and proximal phalanges of the great toes. *p < 0.01, proband vs parents and control.
Comparison of clinical features of 2q23.1 deletion in this study and other cohorts or specific mutation
| | | | | | |
| Development delay | 20/21 | 95% | 53/55 | 96% | + |
| Language impairment | 12/21 | 57% | 38/55 | 69% | + |
| Seizure | 11/21 | 52% | 32/55 | 58% | + |
| Infantile spasms | 0/21 | 0 | 0/55 | 0 | + |
| Infantile hypotonia | 4/21 | 19% | 23/55 | 41% | + |
| | | | | | |
| Short stature | 5/21 | 24% | 25/55 | 45% | - |
| Local hirsutism | 0/21 | 0 | 4/55 | 7% | - |
| | | | | | |
| Coarse face | 0/21 | 0 | 3/55 | 5% | + |
| Broad forehead | 3/21 | 14% | 4/55 | 7% | + |
| Microcephaly | 1/21 | 5% | 26/55 | 47% | +(<2SD) |
| Synophrys | 2/21 | 9% | 10/55 | 18% | +mild |
| Nasal abnormalities | 7/21 | 33% | 35/55 | 64% | + |
| Open mouth | 3/21 | 14% | 23/55 | 42% | + |
| Downturned corners of the mouth | 3/21 | 14% | 17/55 | 31% | + |
| Macroglossia or protruding tongue | 2/21 | 9% | 6/55 | 11% | - |
| Dental abnormalities | 4/21 | 19% | 13/55 | 24% | |
| | | | | + | |
| Small hands and feet | 1/21 | 5% | 23/55 | 42% | + |
| Clinodactyly, 5th finger | 2/21 | 9% | 22/55 | 40% | + |
| Brachydactyly | 0/21 | 0 | 13/55 | 24% | + |
| Short fifth digit of hands/feet | 1/21 | 5% | 14/55 | 25% | + |
| Absent hallux | 0/21 | 0 | 0/55 | 0 | + |
| | | | | - | |
| Autistic feature | 13/21 | 62% | 44/55 | 80% | + |
| Sleep disturbance | 5/21 | 24% | 17/55 | 31% | ND |
| Self-injurious behavior | 2/21 | 9% | 17/55 | 31% | + |
| | | | | - | |
| Cardiovascular abnormalities | 1/21 | 5% | 4/55 | 7% | - |
| Urogenital abnormalities | 1/21 | 45% | 1/55 | 2% | - |
ND, not documented.
Comparison between this study and published CNV and WES studies of infantile spasms
| | |||||
|---|---|---|---|---|---|
| 47 | 44 | 13 | N/A (clinical case series from diagnostic lab) | infantile spasms ( n = 149) Lennox–Gastaut syndrome (n = 115). | |
| 329 de novo mutation | |||||
| | |||||
| | 17p13 115 kb del | Xp22 290 kb del | 15q11 4.8 Mb dup | 2p16.1 4.0 Mb del | SCN1A; STXBP1; GABRB3; |
| | 1q44 2.1 Mb del | 16p11. 2.5 Mb dup | 16p11.2 595 kb dela | 3p26.3 1.6 Mb dup | CDKL5; SCN8A; SCN2A; |
| | 2q23.1 4.1 Mb del | 3q11 1.64 Mb dup | Xp22.11 dela,b | 7q11.23 1.4 Mb del | ALG13; DNM1; HDAC4 |
| | 1q21 2.1 Mb dup | | | 14q12 3.3 Mb dup | |
| | | | 14q32.3 317 kb dup | ||
| | | | 2q32.3 421 kb del | 15q11-q13 5.3 Mb dup | CACN1A; CHD2; FLNA; |
| | | | | 19q12 1.3 Mb del | GABRB1; GRIN1; GRIN2B; |
| | | | | 20p13 1.9 Mb del | HNRNPU; IQSEC2; MTOR; |
| | | | | 21q21 1.3 Mb dup | NEDD4L |
| | | | | 21q21 1.3 Mb dup | |
| | | | | Xp22.2 435 kb dup | |
| | | | | | |
| 2q24.3 21.5 Mb dup | |||||
aThe two CNV observed in one proband.
bSize is unknown.
del, deletion; dup, duplication.