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白蚁蚁王和蚁后的长寿伴随着端粒酶在体细胞器官中的核外定位及其同工型的种特异性表达。

Extended longevity of termite kings and queens is accompanied by extranuclear localization of telomerase in somatic organs and caste-specific expression of its isoforms.

作者信息

Pangrácová Marie, Křivánek Jan, Vrchotová Markéta, Sehadová Hana, Hadravová Romana, Hanus Robert, Lukšan Ondřej

机构信息

Institute of Organic Chemistry and Biochemistry of the Czech Academy of Sciences, Prague, Czech Republic.

Faculty of Science, Charles University, Prague, Czech Republic.

出版信息

Insect Sci. 2025 Apr;32(2):364-384. doi: 10.1111/1744-7917.13418. Epub 2024 Jul 21.

Abstract

Kings and queens of termites are endowed with an extraordinary longevity coupled with lifelong fecundity. We recently reported that termite kings and queens display a dramatically increased enzymatic activity and abundance of telomerase in their somatic organs when compared to short-lived workers and soldiers. We hypothesized that this telomerase activation may represent a noncanonical pro-longevity function, independent of its canonical role in telomere maintenance. Here, we explore this avenue and investigate whether the presumed noncanonical role of telomerase may be due to alternative splicing of the catalytic telomerase subunit TERT and whether the subcellular localization of TERT isoforms differs among organs and castes in the termite Prorhinotermes simplex. We empirically confirm the expression of four in silico predicted splice variants (psTERT1-A, psTERT1-B, psTERT2-A, psTERT2-B), defined by N-terminal splicing implicating differential localizations, and C-terminal splicing giving rise to full-length and truncated isoforms. We show that the transcript proportions of the psTERT are caste- and tissue-specific and that the extranuclear full-length isoform TERT1-A is relatively enriched in the soma of neotenic kings and queens compared to their gonads and to the soma of workers. We also show that extranuclear TERT protein quantities are significantly higher in the soma of kings and queens compared to workers, namely due to the cytosolic TERT. Independently, we confirm by microscopy the extranuclear TERT localization in somatic organs. We conclude that the presumed pleiotropic action of telomerase combining the canonical nuclear role in telomere maintenance with extranuclear functions is driven by complex TERT splicing.

摘要

白蚁的蚁王和蚁后拥有超长的寿命以及终生的繁殖力。我们最近报道,与寿命较短的工蚁和兵蚁相比,白蚁的蚁王和蚁后其体细胞器官中的酶活性显著增加,端粒酶含量也更为丰富。我们推测,这种端粒酶激活可能代表一种非经典的长寿功能,独立于其在端粒维持中的经典作用。在此,我们探索这一途径,并研究端粒酶假定的非经典作用是否可能归因于催化性端粒酶亚基TERT的可变剪接,以及在简单原鼻白蚁中,TERT异构体的亚细胞定位在不同器官和品级之间是否存在差异。我们通过实验证实了四种计算机预测的剪接变体(psTERT1-A、psTERT1-B、psTERT2-A、psTERT2-B)的表达,这些变体由涉及不同定位的N端剪接以及产生全长和截短异构体的C端剪接所定义。我们表明,psTERT的转录本比例具有品级和组织特异性,并且与性腺以及工蚁的体细胞相比,核外全长异构体TERT1-A在幼态持续型蚁王和蚁后的体细胞中相对富集。我们还表明,与工蚁相比,蚁王和蚁后的体细胞中核外TERT蛋白量显著更高,这主要归因于胞质中的TERT。另外,我们通过显微镜检查证实了TERT在体细胞器官中的核外定位。我们得出结论,端粒酶假定的多效性作用,即将端粒维持中的经典核作用与核外功能相结合,是由复杂的TERT剪接所驱动的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/994c/11976694/c4067161c186/INS-32-364-g006.jpg

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