Bilitou Aikaterini, Watson Julie, Gartner Anton, Ohnuma Shin-Ichi
Department of Oncology, Hutchison/MRC Research Centre, University of Cambridge, Hills Road, Cambridge CB20XZ, UK.
Mol Cell Biochem. 2009 Sep;329(1-2):17-33. doi: 10.1007/s11010-009-0121-6. Epub 2009 May 7.
The NM23 (non-metastatic 23) family is almost universally conserved across all three domains of life: eubacteria, archaea and eucaryotes. Unicellular organisms possess one NM23 ortholog, whilst vertebrates possess several. Gene multiplication through evolution has been accompanied by structural and functional diversification. Many NM23 orthologs are nucleoside diphosphate kinases (NDP kinases), but some more recently evolved members lack NDP kinase activity and/or display other functions, for instance, acting as protein kinases or transcription factors. These members display overlapping but distinct expression patterns during vertebrate development. In this review, we describe the functional differences and similarities among various NM23 family members. Moreover, we establish orthologous relationships through a phylogenetic analysis of NM23 members across vertebrate species, including Xenopus laevis and zebrafish, primitive chordates and several phyla of invertebrates. Finally, we summarize the involvement of NM23 proteins in development, in particular neural development. Carcinogenesis is a process of misregulated development, and NM23 was initially implicated as a metastasis suppressor. A more detailed understanding of the evolution of the family and its role in vertebrate development will facilitate elucidation of the mechanism of NM23 involvement in human cancer.
NM23(非转移性23)家族在生命的所有三个领域——真细菌、古细菌和真核生物中几乎普遍保守。单细胞生物拥有一个NM23直系同源基因,而脊椎动物则拥有多个。在进化过程中基因倍增伴随着结构和功能的多样化。许多NM23直系同源基因是核苷二磷酸激酶(NDP激酶),但一些最近进化的成员缺乏NDP激酶活性和/或表现出其他功能,例如,作为蛋白激酶或转录因子。这些成员在脊椎动物发育过程中表现出重叠但不同的表达模式。在这篇综述中,我们描述了各种NM23家族成员之间的功能差异和相似性。此外,我们通过对包括非洲爪蟾和斑马鱼在内的脊椎动物物种、原始脊索动物和几个无脊椎动物门的NM23成员进行系统发育分析,建立了直系同源关系。最后,我们总结了NM23蛋白在发育,特别是神经发育中的作用。致癌作用是一个发育失调的过程,NM23最初被认为是一种转移抑制因子。对该家族进化及其在脊椎动物发育中作用的更详细了解将有助于阐明NM23参与人类癌症的机制。