Literature DB >> 33390831

βII spectrin (SPTBN1): biological function and clinical potential in cancer and other diseases.

Panyu Yang1, Yanyan Yang2, Pin Sun1, Yu Tian1, Fang Gao3, Chen Wang3, Tingyu Zong1, Min Li4, Ying Zhang1, Tao Yu1,4, Zhirong Jiang1.   

Abstract

βII spectrin, the most common isoform of non-erythrocyte spectrin, is a cytoskeleton protein present in all nucleated cells. Interestingly, βII spectrin is essential for the development of various organs such as nerve, epithelium, inner ear, liver and heart. The functions of βII spectrin include not only establishing and maintaining the cell structure but also regulating a variety of cellular functions, such as cell apoptosis, cell adhesion, cell spreading and cell cycle regulation. Notably, βII spectrin dysfunction is associated with embryonic lethality and the DNA damage response. More recently, the detection of altered βII spectrin expression in tumors indicated that βII spectrin might be involved in the development and progression of cancer. Its mutations and disorders could result in developmental disabilities and various diseases. The versatile roles of βII spectrin in disease have been examined in an increasing number of studies; nonetheless, the exact mechanisms of βII spectrin are still poorly understood. Thus, we summarize the structural features and biological roles of βII spectrin and discuss its molecular mechanisms and functions in development, homeostasis, regeneration and differentiation. This review highlight the potential effects of βII spectrin dysfunction in cancer and other diseases, outstanding questions for the future investigation of therapeutic targets. The investigation of the regulatory mechanism of βII spectrin signal inactivation and recovery may bring hope for future therapy of related diseases. © The author(s).

Entities:  

Keywords:  TGF-β; cancers; development; heart; proliferation; βII Spectrin

Mesh:

Substances:

Year:  2021        PMID: 33390831      PMCID: PMC7757025          DOI: 10.7150/ijbs.52375

Source DB:  PubMed          Journal:  Int J Biol Sci        ISSN: 1449-2288            Impact factor:   6.580


  149 in total

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10.  β2 spectrin-mediated differentiation repressed the properties of liver cancer stem cells through β-catenin.

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Journal:  Cell Death Dis       Date:  2018-04-01       Impact factor: 8.469

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5.  miR-153-3p Targets βII Spectrin to Regulate Formaldehyde-Induced Cardiomyocyte Apoptosis.

Authors:  Panyu Yang; Yanyan Yang; Xiangqin He; Pin Sun; Ying Zhang; Xiaoxia Song; Yu Tian; Tingyu Zong; Jianmin Ma; Xiaofei Chen; Qifeng Lv; Tao Yu; Zhirong Jiang
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