1.Genetic analysis of a child with gastrointestinal hemorrhage and Cerebroretinal microangiopathy with calcifications and cysts and a literature review.
Tao JIANG ; Shuangjie LI ; Yanfang TAN ; Wenxian OUYANG
Chinese Journal of Medical Genetics 2025;42(4):486-494
OBJECTIVE:
To explore the clinical characteristics and genetic cause of a child with gastrointestinal hemorrhage and Cerebroretinal microangiopathy with calcifications and cysts (CRMCC) and to review the literature.
METHODS:
Clinical data of a child with gastrointestinal hemorrhage with CRMCC admitted to the Hepatology Department of Hunan Children's Hospital in September 2019 were collected, and peripheral blood DNA of the child and his parents were analyzed by whole exome sequencing. Candidate variants were validated by Sanger sequencing, followed by bioinformatics analysis, American College of Medical Genetics and Genomics (ACMG) Standards and Guidelines for the Interpretation of Sequence Variants pathogenicity classification, and protein structure prediction. A literature search with "Coats Plus syndrome" or "Cerebroretinal microangiopathy with calcifications and cysts" as keywords was conducted at PubMed, China National Knowledge Infrastructure and Wanfang databases to include recently published studies (up to December 2023). This study has been approved by the Ethics Committee of Hunan Children's Hospital (Ethics No. KY2020-07). Informed consent for clinical research was obtained from the guardian of the child.
RESULTS:
The proband was a 10-year-10-month-old boy. The clinical manifestations were intrauterine and postnatal growth retardation, gastrointestinal hemorrhage, liver fibrosis, panhemopenia, bilateral exudative retinopathy, intracranial lesions and facial pigmentation. WES and Sanger sequencing revealed two novel heterozygous variants in the CTC1 gene: c.787G>A (p.Val263Met) in exon 5 and c.2930C>G (p.Ser977Cys) in exon 17, which were inherited from his mother and father, respectively. According to ACMG pathogenicity classification, both missense variants were classified as variants of uncertain significance (VUS). Protein structure prediction showed the absence of LIG_SH3_3 motif and LIG_SH3_3 motif, and the p.Ser977Cys mutation may affect the binding between CST (CTC1-STN1-TEN) complex and DNA strand. The child had continued to experience recurrent gastrointestinal bleeding episodes despite propranolol treatment, but the condition was controlled after liver transplantation. According to the predefined literature search strategy of this study, a total of 10 relevant articles on pediatric CRMCC patients were retrieved, involving 11 children with gastrointestinal bleeding. Pharmacological and endoscopic therapies play a certain role in the management of CRMCC children complicated with gastrointestinal bleeding.
CONCLUSION
The CTC1 gene c.787G>A and c.2930C>G variants probably underlay CRMCC in this child. This study has broadened the variation spectrum of CTC1-related diseases and provided a basis for genetic counseling. Liver transplantation may be an important treatment for gastrointestinal hemorrhage in children who do not respond well to medication and endoscopic therapy.
Humans
;
Male
;
Gastrointestinal Hemorrhage/genetics*
;
Child
;
Calcinosis/genetics*
;
Cysts/genetics*
;
Central Nervous System Cysts/genetics*
;
Mutation
;
Exome Sequencing
;
Leukoencephalopathies
;
Retinal Diseases
;
Seizures
;
Muscle Spasticity
;
Brain Neoplasms
;
Ataxia
2.Research advance on the pathogenesis of autosomal recessive spastic ataxia of Charlevoix-Saguenay.
Rong FU ; Man DING ; Zuneng LU
Chinese Journal of Medical Genetics 2023;40(1):121-124
Autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS) is a rare and early-onset neurodegenerative disease caused by variants of the SACS gene which maps to chromosome 13q11 and encodes sacsin protein. Sacsin is highly expressed in large motor neurons, in particular cerebellar Purkinje cells. This article has provided a review for the structure and function of sacsin protein and the mechanisms underlying abnormalities of sacsin in ARSACS disease.
Humans
;
Spinocerebellar Ataxias/pathology*
;
Ataxia/genetics*
;
Muscle Spasticity/genetics*
3.Genetic analysis of a child with Charlevoix-Saguenay spastic ataxia due to variant of SACS gene.
Huan LUO ; Xiaolu CHEN ; Xueyi RAO ; Yajun SHEN ; Jinfeng LIU ; Zuozhen YANG ; Jing GAN
Chinese Journal of Medical Genetics 2023;40(5):558-562
OBJECTIVE:
To explore the clinical feature and genetic variant of a child with autosomal recessive Charlevoix-Saguenay type spastic ataxia (ARSACS).
METHODS:
Clinical data of a child who was admitted to the West China Second Hospital of Sichuan University on April 30, 2021 was collected. Whole exome sequencing (WES) was carried out for the child and his parents. Candidate variants were verified by Sanger sequencing and bioinformatic analysis based on the guidelines from the American College of Medical Genetics and Genomics (ACMG).
RESULTS:
The child, a 3-year-and-3-month-old female, had a complain of "walking instability for over a year". Physical and laboratory examination revealed progressive and aggravated gait instability, increased muscle tone of the right limbs, peripheral neuropathy of the lower limbs, and thickening of retinal nerve fiber layer. The results of WES revealed that she has harbored a maternally derived heterozygous deletion of exons 1 to 10 of the SACS gene, in addition with a de novo heterozygous c.3328dupA variant in exon 10 of the SACS gene. Based on the ACMG guidelines, the exons 1-10 deletion was rated as likely pathogenic (PVS1+PM2_Supporting), and the c.3328dupA was rated as a pathogenic variant (PVS1_Strong+PS2+PM2_Supporting). Neither variant was recorded in the human population databases.
CONCLUSION
The c.3328dupA variant and the deletion of exons 1-10 of the SACS gene probably underlay the ARSACS in this patient.
Female
;
Humans
;
Heat-Shock Proteins/genetics*
;
Muscle Spasticity/genetics*
;
Mutation
;
Spinocerebellar Ataxias/pathology*
;
Child, Preschool
4.Analysis of SACS mutation in a family affected with autosomal recessive spastic ataxia of Charlevoix-Saguenay.
Qian ZHANG ; Huanzheng LI ; Chong CHEN ; Zhaotang LUAN ; Xueqin XU ; Shaohua TANG
Chinese Journal of Medical Genetics 2019;36(3):217-220
OBJECTIVE:
To carry out mutation analysis for a Chinese family affected with autosomal recessive spastic ataxia of Charlevoix-Saguenay (ARSACS).
METHODS:
Whole exome sequencing (WES) was used to screen potential mutations within genomic DNA extracted from the proband. Suspected mutation was validated by combining clinical data and results of Sanger sequencing.
RESULTS:
A homozygous deletional mutation c.3665_3675delGTGCTGTCTTA (p.S1222fs) was found in the proband, for which her parents were both heterozygous carriers.
CONCLUSION
WES is capable of detecting mutation underlying this disorder and facilitating genetic counseling and prenatal diagnosis for the affected family. A novel pathogenic mutation of the SACS gene was discovered.
Female
;
Genes, Recessive
;
Heat-Shock Proteins
;
genetics
;
Humans
;
Muscle Spasticity
;
Mutation
;
Spinocerebellar Ataxias
;
congenital
5.Hereditary Spastic Paraplegia.
Il Saing CHOI ; Hyo Kun CHO ; Ki Whan KIM
Yonsei Medical Journal 1983;24(1):83-86
Hereditary spastic paraplegia (HSP) is a rare hereditary disorder and becomes clinically apparent during adolescence or in childhood and progresses s1owly throughout the adult years with a variability in the severity of expression. We experienced 3 cases of hereditary spastic paraplegia. Cases 1 and 2, which were pure HSP, had only the signs and symptoms of corticospinal tract involvement with the positive family history, and case 3, which was a complicated case of HSP, had distal muscle wasting, dysarthria, signs and symptoms of the corticospinal tracts, and a positive family history. All are thought to be inherited in an autosomal dominant pattern.
Adult
;
Female
;
Human
;
Male
;
Middle Age
;
Muscle Spasticity/genetics
;
Paraplegia/genetics*

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