1.Genetic analysis of 10 children with cerebral palsy.
Qingwen ZHU ; Yufei NI ; Jing WANG ; Honggang YIN ; Qin ZHANG ; Wenjun BIAN ; Lingli ZHANG ; Mengsi LIN ; Jiangyue LIU ; Jun ZHOU ; Chunxiu SHA ; Xiang ZHOU
Chinese Journal of Medical Genetics 2019;36(3):229-233
OBJECTIVE:
To explore the genetic basis of cerebral palsy (CP).
METHODS:
A pair of twins with cerebral palsy and different phenotypes were subjected to whole genome sequencing, and other 8 children with CP were subjected to whole exome sequencing. Genetic variations were screened by a self-designed filtration process in order to explore the CP-related biological pathways and genes.
RESULTS:
Three biological pathways related to CP were identified, which included axon guiding, transmission across chemical synapses and protein-protein interactions at synapses, and 25 susceptibility genes for CP were identified.
CONCLUSION
The molecular mechanism of CP has been explored, which may provide clues for development of new treatment for CP.
Cerebral Palsy
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genetics
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Child
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Genetic Testing
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Humans
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Phenotype
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Whole Exome Sequencing
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Whole Genome Sequencing
2.Structure and function of B-cell linker and its role in the development of B cell-related diseases.
Bin XIAO ; Jiaying LI ; Mengsi ZHOU ; Xiaoqing LI ; Xiaoyan HUANG ; Jianfeng HANG ; Zhaohui SUN ; Linhai LI
Journal of Southern Medical University 2019;39(2):253-256
B cell linker (BLNK) is a key linker protein of B cell receptor (BCR) signaling pathway. BLNK participates in the regulation of PLC-γactivity and the activation of Ras pathway through its typical structure and interaction network with other proteins, and is thus widely involved in the regulation of B cell proliferation, differentiation, apoptosis and signal transduction. Furthermore, it is closely related to anaphylactic diseases, multiple sclerosis, chromosomal aneuploidy, aneuglobulinemia, B lymphocytic leukemia and lymphoma. Herein we review the structure and biological function of BLNK and its role in B cell-related diseases. BLNK can cooperate with a series of effective proteins to activate BCR signaling pathway, thereby regulating the development, maturation and function of B cells. The functional mutation of BLNK can destroy the homeostasis of B cells and affect the development and maturation of B cells, which leads to the occurrence of B cell related diseases. A comprehensive understanding of the biological functions of BLNK not only provides insights into the pathogenesis of B cell-related diseases, but also inspires new ideas and helps to find breakthroughs for the treatment of these diseases with BLNK as the therapeutic target.
Adaptor Proteins, Signal Transducing
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chemistry
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genetics
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physiology
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Apoptosis
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B-Lymphocytes
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cytology
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physiology
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Cell Differentiation
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Cell Proliferation
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Humans
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Mutation
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Receptors, Antigen, B-Cell
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chemistry
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physiology
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Signal Transduction
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Structure-Activity Relationship