Jacoszek Agnieszka, Pollak Agnieszka, Płoski Rafał, Ołdak Monika
Department of Medical Genetics, Warsaw Medical University, Warsaw, Poland.
Postgraduate School of Molecular Medicine, Warsaw, Poland.
Eur Arch Otorhinolaryngol. 2017 Apr;274(4):1791-1795. doi: 10.1007/s00405-016-4330-9. Epub 2016 Oct 22.
Hearing plays a crucial role in human development. Receiving and processing sounds are essential for the advancement of the speech ability during the early childhood and for a proper functioning in the society. Hearing loss is one of the most frequent disabilities that affect human senses. It can be caused by genetic or environmental factors or both of them. Calcium- and integrin-binding protein 2 (CIB2) is one of the recently identified genes, involved in HI pathogenesis. CIB2 is widely expressed in various human and animal tissues, mainly in skeletal muscle, nervous tissue, inner ear, and retina. The CIB2 protein is responsible for maintaining Ca homeostasis in cells and interacting with integrins-transmembrane receptors essential for cell adhesion, migration, and activation of signaling pathways. Calcium signaling pathway is crucial for signal transduction in the inner ear, and integrins regulate hair cell differentiation and maturation of the stereocilia. To date, mutations detected in CIB2 are causative for nonsyndromic hearing loss (DFNB48) or Usher syndrome type 1 J. Patients harboring biallelic CIB2 mutations suffer from bilateral, early onset, moderate to profound HI. In the paper, we summarize the current status of the research on CIB2.
听力在人类发育过程中起着至关重要的作用。接收和处理声音对于幼儿期言语能力的发展以及在社会中的正常功能至关重要。听力损失是影响人类感官的最常见残疾之一。它可能由遗传因素或环境因素或两者共同引起。钙和整合素结合蛋白2(CIB2)是最近发现的与遗传性听力损失(HI)发病机制有关的基因之一。CIB2在各种人类和动物组织中广泛表达,主要存在于骨骼肌、神经组织、内耳和视网膜中。CIB2蛋白负责维持细胞内的钙稳态,并与整合素——细胞黏附、迁移和信号通路激活所必需的跨膜受体相互作用。钙信号通路在内耳信号转导中至关重要,整合素调节毛细胞分化和静纤毛的成熟。迄今为止,在CIB2中检测到的突变是导致非综合征性听力损失(DFNB48)或1J型Usher综合征的原因。携带双等位基因CIB2突变的患者患有双侧、早发性、中度至重度HI。在本文中,我们总结了CIB2的研究现状。