The Novo Nordisk Foundation Center for Biosustainability, Technical University of Denmark, 2800 Kgs. Lyngby, Denmark.
Research Center Flakkebjerg, Department of Agroecology, Aarhus University, 4200 Slagelse, Denmark.
Int J Mol Sci. 2021 May 26;22(11):5669. doi: 10.3390/ijms22115669.
Gene clusters are becoming promising tools for gene identification. The study reveals the purposive genomic distribution of genes toward higher inheritance rates of intact metabolic pathways/phenotypes and, thereby, higher fitness. The co-localization of co-expressed, co-interacting, and functionally related genes was found as genome-wide trends in humans, mouse, golden eagle, rice fish, , peanut, and . As anticipated, the analyses verified the co-segregation of co-localized events. A negative correlation was notable between the likelihood of co-localization events and the inter-loci distances. The evolution of genomic blocks was also found convergent and uniform along the chromosomal arms. Calling a genomic block responsible for adjacent metabolic reactions is therefore recommended for identification of candidate genes and interpretation of cellular functions. As a case story, a function in the metabolism of energy and secondary metabolites was proposed for 25A44, based on its genomic local information. 25A44 was further characterized as an essential housekeeping gene which has been under evolutionary purifying pressure and belongs to the phylogenetic ETC-clade of SLC25s. Pathway enrichment mapped the 25A44s to the energy metabolism. The expression of peanut and human 25A44s in oocytes and strains confirmed the transport of common precursors for secondary metabolites and ubiquinone. These results suggest that SLC25A44 is a mitochondrion-ER-nucleus zone transporter with biotechnological applications. Finally, a conserved three-amino acid signature on the cytosolic face of transport cavity was found important for rational engineering of SLC25s.
基因簇正成为鉴定基因的有前途的工具。该研究揭示了基因朝着更高的完整代谢途径/表型遗传率和更高的适应性的有目的的基因组分布。在人类、小鼠、金鹰、稻鱼、花生和中,发现了共表达、相互作用和功能相关基因的共定位是全基因组的趋势。正如预期的那样,分析验证了共定位事件的共分离。共定位事件的可能性与基因座之间的距离之间存在显著的负相关。还发现基因组块的进化沿着染色体臂是趋同和一致的。因此,建议将负责相邻代谢反应的基因组块称为候选基因鉴定和细胞功能解释的基础。作为一个案例故事,根据其基因组局部信息,提出了 25A44 在能量和次生代谢物代谢中的功能。进一步将 25A44 表征为必需的管家基因,该基因受到进化净化压力的影响,属于 SLC25s 的进化 ETC 分支。途径富集将 25A44s 映射到能量代谢。花生和人 25A44s 在卵母细胞和菌株中的表达证实了次生代谢物和泛醌的共同前体的运输。这些结果表明,SLC25A44 是一种具有生物技术应用的线粒体-ER-核区转运蛋白。最后,在运输腔的细胞质侧发现了一个保守的三氨基酸特征对于 SLC25s 的合理工程设计很重要。