指蛋白335在大脑发育和免疫系统中的许多方面
Danyang Li1, Zhenzhen Quan1, Junjun Ni1
1Key Laboratory of Molecular Medicine and Biotherapy, Department of Biology, School of Life Science, Beijing Institute of Technology, Beijing 100081, China.
概括
指蛋白335 (ZNF335) 对于基因调节至关重要,影响大脑发育和T细胞成熟. 了解ZNF33535 的理解
科学领域:
- 分子生物学分子生物学
- 神经科学是一个神经科学.
- 免疫学 免疫学 免疫学
背景情况:
- 指蛋白335 (ZNF335) 通过甲基化调节基因表达.
- 全球范围内,ZNF335基因变异与小头症风险有关.
- ZNF335对T细胞发育至关重要.
研究的目的:
- 审查目前关于ZNF335在神经元和T细胞发育中的作用的知识.
- 为了确定研究ZNF335的病理生理学功能的局限性.
- 假设ZNF335在大脑疾病中的作用和治疗潜力.
主要方法:
- 临床前,死后,ex vivo,体内和临床研究的综述.
- 对ZNF335.5分子机制的分析.
- 对ZNF335.5进行现有研究的综合.
主要成果:
- ZNF335影响基因甲基化和基因表达.
- ZNF335与小头症和T细胞发育有关.
- 目前对ZNF335的详细功能的理解是有限的.
结论:
- ZNF335是大脑和T细胞发育中的关键调节剂.
- 需要进一步的研究才能充分阐明ZNF335的功能和治疗潜力.
- 准ZNF335可能是预防大脑疾病的策略.
相关概念视频
NF-κB-dependent Signaling Pathway
The transcription factor NF-κB was discovered in 1986 in the lab of Nobel laureate Professor David Baltimore, for its interaction with the immunoglobulin light chain enhancer in B-cells. After more than three decades of study, it is now evident that NF-κB regulates the expression of over 100 genes. Most of these genes play an essential role in the innate and adaptive immune responses as well as the inflammatory responses of animals.
NF-κB-dependent Signaling Mechanism
The heterodimer of NF-κB...
NF-κB-dependent Signaling Mechanism
The heterodimer of NF-κB...
NF-kB-dependent Signaling Pathway
The transcription factor NF-κB was discovered in 1986 in the lab of Nobel laureate Professor David Baltimore, for its interaction with the immunoglobulin light chain enhancer in B-cells. After more than three decades of study, it is now evident that NF-κB regulates the expression of over 100 genes. Most of these genes play an essential role in the innate and adaptive immune responses as well as the inflammatory responses of animals.
NF-κB-dependent Signaling Mechanism
The heterodimer of NF-κB...
NF-κB-dependent Signaling Mechanism
The heterodimer of NF-κB...


