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1.
Chinese Journal of Neurology ; (12): 66-74, 2023.
Artículo en Chino | WPRIM | ID: wpr-994800

RESUMEN

Objective:To summarize the clinical phenotype and CUX2 gene variation characteristics of developmental epileptic encephalopathy type 67 confirmed by whole exome sequencing. Methods:Clinical data of 1 case diagnosed as CUX2 gene mutations related developmental epileptic encephalopathy type 67 in the Children′s Hospital Affiliated to Zhengzhou University in January 2021 were collected, the patient′s clinical characteristics, genetic testing, head imaging, electroencephalogram results and treatment were summarized, and the patient was regularly followed-up every 3 months. At the same time, the domestic and foreign literatures on epileptic encephalopathy caused by CUX2 gene mutation were reviewed. Results:The proband was a 6 years and 4 months old girl. The main clinical manifestations included focal origin progression to bilateral tonic-clonic seizures, retardation of intellectual, language, and motor development, autistic behavior, hyperactivity disorder, and involuntary hand clapping. The video electroencephalogram showed extensive spiny slow wave and multi-spiny slow wave emission in waking and sleeping stages, and spiny slow wave and spiky slow wave emission in bilateral anterior head in sleeping stage. Brain magnetic resonance imaging (MRI) plain scan and T 2-fluid attenuated inversion recovery (T 2-FLAIR) thin layer scan showed that the signal of the left hippocampus was higher than that of the right, and the left hippocampus was slightly swollen. One month later, the brain MRI and T 2-FLAIR were reexamined. The left hippocampal signal was still slightly higher and decreased, and the hippocampal volume was slightly reduced. Whole exome sequencing showed the CUX2 gene with c.1768G>A(p.Glu590Lys) heterozygous missense variant, which was a reported de novo pathogenic variant and both of her parents were wild-type. A total of 10 cases of new heterozygous missense variants in CUX2 gene [c.1768G>A (p.Gelu590Lys)] were reported in 4 literatures. No relevant cases have been reported in China. Conclusions:Developmental epileptic encephalopathy type 67 is relatively rare. The main clinical features are seizures, global developmental delay, movement disorders, athetosis, autism and hyperactivity disorder. The heterozygous missense variant c.1768G>A (Glu590Lys) of CUX2 gene maybe the genetic cause of this case.

2.
Chinese Journal of Neurology ; (12): 164-168, 2022.
Artículo en Chino | WPRIM | ID: wpr-933775

RESUMEN

Clinical data and genetic mutation characteristics of a patient with Coffin-Siris syndrome by 6q25.3 deletion were summarized. The child was a 7-year and 6-month old girl who had feeding difficulties, repeated infection, language and motor retardation, low intelligence, laryngeal cartilage dysplasia, thick eyebrows, sparse teeth, hairy back, hyperactivity and aggressive behavior, seizures and ataxia. There was no abnormality in chromosomal karyotype analysis by proband; genomic copy number variant sequencing (CNV-seq) indicated approximately 4.27 Mb heterozygous deletion in chromosome 6q25.3 region, with 17 genes including ARID1B gene, father maternal CNV-seq showing no abnormalities. Trio-whole-exome sequencing showed the proband missed all exons 1-20 of the ARID1B gene, with wild-type parents. The proband had severe clinical symptoms and haplodose insufficiency which was the genetic etiology.

3.
Chinese Journal of Medical Genetics ; (6): 150-152, 2020.
Artículo en Chino | WPRIM | ID: wpr-781278

RESUMEN

OBJECTIVE@#To identify pathological mutation of D4Z4 in a child with facioscapulohumeral muscular dystrophy (FSHD) presented initially as mental retardation.@*METHODS@#Wechsler Intelligence Scale for Children Revised in China (WISC-IV) was used to assess the patient's IQ. Other clinical data was also collected. With genomic DNA extracted from peripheral blood samples, the child and his parents were subjected to medical exome sequencing and copy number variation analysis by next generation sequencing (NGS). The D4Z4 repeats and their origin source were determined by molecular combing.@*RESULTS@#By the WISC-IV test, the child was found to have a total IQ of 41, with a speech comprehension IQ of 45, and perceptual inference index IQ of 52. No pathological mutation was detected by NGS. By molecular combing method, the child was found to carry a D4Z4 spanning 5.2 kb with a copy number of 2. Analysis of his parents indicate that the mutation was de novo.@*CONCLUSION@#The D4Z4 copy number variation may account for the FSHD and mental retardation in the child. The molecular combing method can be used to identify the number of repeat units and facilitate the diagnosis of FSHD.

4.
Journal of Southern Medical University ; (12): 772-777, 2012.
Artículo en Chino | WPRIM | ID: wpr-269000

RESUMEN

<p><b>OBJECTIVE</b>To develop a hydroponic Nicotiana cultivation system for rapid and high-yield transient expression of recombinant proteins under laboratory conditions.</p><p><b>METHODS</b>To establish the hydroponic cultivation system, several parameters were examined to define the optimal conditions for the expression of recombinant proteins in plants. We used the green fluorescent protein (GFP) and the geminiviral plant transient expression vector as the model protein/expression vector. We examined the impact of Nicotiana species, the density and time of Agrobacterium infiltration, and the post-infiltration growth period on the accumulation of GFP. The expression levels of GFP in Nicotiana leaves were then examined by Western blotting and ELISA.</p><p><b>RESULTS</b>Our data indicated that a hydroponic Nicotiana cultivation system with a light intensity of 9000 LX/layer, a light cycle of 16 h day/8 h night, a temperature regime of 28 degrees celsius; day/21 degrees celsius; night, and a relative humidity of 80% could support the optimal plant growth and protein expression. After agroinfiltration with pBYGFPDsRed.R/LBA4404, high levels of GFP expression were observed in both N. benthamiana and N. tobaccum (cv. Yuyan No.5) plants cultured with this hydroponic cultivation system. An optimal GFP expression was achieved in both Nicotiana species leaves 4 days after infiltration by Agrobacterium with an OD(600) of 0.8. At a given time point, the average biomass of N. tobaccum (cv. Yuyan No.5) was significantly higher than that of N. benthamiana. The leaves from 6-week-old N. benthamiana plants and 5-week-old N. tobaccum (cv. Yuyan No.5) plants could be the optimal material for agroinfiltration.</p><p><b>CONCLUSION</b>We have established a hydroponic cultivation system that allows robust growth of N. benthamiana and N. tobaccum (cv. Yuyan No.5) plants and the optimal GFP expression in the artificial climate box.</p>


Asunto(s)
Regulación de la Expresión Génica de las Plantas , Vectores Genéticos , Proteínas Fluorescentes Verdes , Genética , Hidroponía , Métodos , Plantas Modificadas Genéticamente , Genética , Proteínas Recombinantes , Genética , Nicotiana , Genética
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