BdTTLL3B-mediated polyglycylation is involved in the spermatogenesis in Bactrocera dorsalis

东方果蝇 生物 精子发生 基因 交配 昆虫 鞭毛 遗传学 细胞生物学 铁杉科 植物 有害生物分析 内分泌学
作者
Shunjiao Wu,Li-Lin Ran,Tongfang Zhang,Ying Li,Yan Xu,Yaying Li,Huai Liu,Jia Wang
出处
期刊:International Journal of Biological Macromolecules [Elsevier]
卷期号:267: 131508-131508
标识
DOI:10.1016/j.ijbiomac.2024.131508
摘要

Polyglycylation is a post-translational modification that generates glycine side chains in the C-terminal domains of both α- and β-tubulins. To date, the patterns and significance of polyglycylation across insect species remain largely unknown. The TTLL3B was thought to be a polyglycylase and be essential for polyglycylation in dipteran insects. In this study, the TTLL3B of Bactrocera dorsalis (BdTTLL3B) was identified and characterized. The BdTTLL3B expressed remarkably higher in adult males, especially in testes. The spatio-temporal patterns of polyglycylation were consistent with that of BdTTLL3B. Along with spermatogenesis, the intensity of polyglycylation was enhanced steadily and concentrated in elongated flagella. The expression of recombinant BdTTLL3B in Hela cells, which are genetically deficient in polyglycylation, catalyzed intracellular polyglycylation, validating the identity of BdTTLL3B as a polyglycylase. Knockout of BdTTLL3B significantly suppressed polyglycylation in testes and impaired male fertility, probably due to abnormal morphology of mitochondrial derivatives and over-accumulation of paracrystalline. Taken together, these findings indicated that the BdTTLL3B-mediated polyglycylation is involved in the spermatogenesis and play an important role in fertility of adult B. dorsalis. Therefore, the BdTTLL3B can be considered as a candidate target gene for the management of B. dorsalis, such as developing gene silencing/knockout-based sterile insect technology (SIT).
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