Rutgers University, The State University of New Jersey, New Brunswick, NJ, USA.
The Jackson Laboratory, Bar Harbor, Maine, USA.
Sci Rep. 2020 Jul 14;10(1):11536. doi: 10.1038/s41598-020-67834-5.
Adenosine-to-inosine RNA editing, a fundamental RNA modification, is regulated by adenosine deaminase (AD) domain containing proteins. Within the testis, RNA editing is catalyzed by ADARB1 and is regulated in a cell-type dependent manner. This study examined the role of two testis-specific AD domain proteins, ADAD1 and ADAD2, on testis RNA editing and male germ cell differentiation. ADAD1, previously shown to localize to round spermatids, and ADAD2 had distinct localization patterns with ADAD2 expressed predominantly in mid- to late-pachytene spermatocytes suggesting a role for both in meiotic and post-meiotic germ cell RNA editing. AD domain analysis showed the AD domain of both ADADs was likely catalytically inactive, similar to known negative regulators of RNA editing. To assess the impact of Adad mutation on male germ cell RNA editing, CRISPR-induced alleles of each were generated in mouse. Mutation of either Adad resulted in complete male sterility with Adad1 mutants displaying severe teratospermia and Adad2 mutant germ cells unable to progress beyond round spermatid. However, mutation of neither Adad1 nor Adad2 impacted RNA editing efficiency or site selection. Taken together, these results demonstrate ADAD1 and ADAD2 are essential regulators of male germ cell differentiation with molecular functions unrelated to A-to-I RNA editing.
腺嘌呤核苷到肌苷核苷 RNA 编辑是一种基本的 RNA 修饰,受腺苷脱氨酶 (AD) 结构域蛋白的调节。在睾丸中,RNA 编辑由 ADARB1 催化,并以细胞类型依赖的方式进行调节。本研究探讨了两种睾丸特异性 AD 结构域蛋白 ADAD1 和 ADAD2 对睾丸 RNA 编辑和雄性生殖细胞分化的作用。ADAD1 先前被证明定位于圆形精子细胞,而 ADAD2 具有不同的定位模式,ADAD2 主要在中晚期粗线期精母细胞中表达,表明两者在减数分裂和减数分裂后生殖细胞的 RNA 编辑中都有作用。AD 结构域分析表明,ADAD1 和 ADAD2 的 AD 结构域可能没有催化活性,类似于已知的 RNA 编辑负调节剂。为了评估 Adad 突变对雄性生殖细胞 RNA 编辑的影响,在小鼠中生成了每个基因的 CRISPR 诱导等位基因。Adad 的突变导致完全雄性不育,Adad1 突变体表现出严重的畸形精子症,而 Adad2 突变体的生殖细胞无法进一步发育到圆形精子细胞。然而,Adad1 或 Adad2 的突变都不影响 RNA 编辑效率或位点选择。总之,这些结果表明 ADAD1 和 ADAD2 是雄性生殖细胞分化的必需调节因子,其分子功能与 A-to-I RNA 编辑无关。