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果蝇蛋白激酶CK2:遗传学、调控复杂性及发育过程中的新作用

Drosophila Protein Kinase CK2: Genetics, Regulatory Complexity and Emerging Roles during Development.

作者信息

Bandyopadhyay Mohna, Arbet Scott, Bishop Clifton P, Bidwai Ashok P

机构信息

Department of Biology, West Virginia University, Morgantown, WV 26506, USA.

出版信息

Pharmaceuticals (Basel). 2016 Dec 29;10(1):4. doi: 10.3390/ph10010004.

Abstract

CK2 is a Ser/Thr protein kinase that is highly conserved amongst all eukaryotes. It is a well-known oncogenic kinase that regulates vital cell autonomous functions and animal development. Genetic studies in the fruit fly Drosophila are providing unique insights into the roles of CK2 in cell signaling, embryogenesis, organogenesis, neurogenesis, and the circadian clock, and are revealing hitherto unknown complexities in CK2 functions and regulation. Here, we review Drosophila CK2 with respect to its structure, subunit diversity, potential mechanisms of regulation, developmental abnormalities linked to mutations in the gene encoding CK2 subunits, and emerging roles in multiple aspects of eye development. We examine the Drosophila CK2 "interaction map" and the eye-specific "transcriptome" databases, which raise the prospect that this protein kinase has many additional targets in the developing eye. We discuss the possibility that CK2 functions during early retinal neurogenesis in Drosophila and mammals bear greater similarity than has been recognized, and that this conservation may extend to other developmental programs. Together, these studies underscore the immense power of the Drosophila model organism to provide new insights and avenues to further investigate developmentally relevant targets of this protein kinase.

摘要

CK2是一种丝氨酸/苏氨酸蛋白激酶,在所有真核生物中高度保守。它是一种著名的致癌激酶,可调节重要的细胞自主功能和动物发育。对果蝇的遗传学研究为CK2在细胞信号传导、胚胎发生、器官发生、神经发生和生物钟中的作用提供了独特的见解,并揭示了CK2功能和调控中迄今未知的复杂性。在这里,我们综述果蝇CK2的结构、亚基多样性、潜在调控机制、与CK2亚基编码基因突变相关的发育异常,以及在眼睛发育多个方面的新出现的作用。我们研究了果蝇CK2的“相互作用图谱”和眼睛特异性的“转录组”数据库,这增加了这种蛋白激酶在发育中的眼睛中有许多其他靶点的可能性。我们讨论了CK2在果蝇和哺乳动物早期视网膜神经发生过程中的功能比人们认识到的更相似的可能性,并且这种保守性可能延伸到其他发育程序。总之,这些研究强调了果蝇模式生物在为进一步研究这种蛋白激酶的发育相关靶点提供新见解和途径方面的巨大力量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d1c/5374408/f8bc6fd732ca/pharmaceuticals-10-00004-g001.jpg

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