Animal germline development and fertility rely on paralogs of general transcription factors that recruit RNA polymerase II to ensure cell type-specific gene expression. It remains unclear whether gene expression processes downstream from such paralog-based transcription is distinct from that of canonical RNA polymerase II genes. In Drosophila, the testis-specific TBP-associated factors (tTAFs) activate over a thousand spermatocyte-specific gene promoters to enable meiosis and germ cell differentiation. Here, we show that efficient termination of tTAF-activated transcription relies on testis-specific paralogs of canonical polymerase-associated factor 1 complex (PAF1C) proteins, which form a testis-specific PAF1C (tPAF). Consequently, tPAF mutants show aberrant expression of hundreds of downstream genes due to read-in transcription. Furthermore, tPAF facilitates expression of Y-linked male fertility factor genes and thus serves to maintain spermatocyte-specific gene expression. Consistently, tPAF is required for the segregation of meiotic chromosomes and male fertility. Supported by comparative in vivo protein interaction assays, we provide a mechanistic model for the functional divergence of tPAF and the PAF1C and identify transcription termination as a developmentally regulated process required for germline-specific gene expression.
A germline PAF1 paralog complex ensures cell type-specific gene expression.
生殖系 PAF1 旁系同源复合物确保细胞类型特异性基因表达
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作者:Vilstrup Astrid Pold, Gupta Archica, Rasmussen Anna Jon, Ebert Anja, Riedelbauch Sebastian, Lukassen Marie Vestergaard, Hayashi Rippei, Andersen Peter
| 期刊: | Genes & Development | 影响因子: | 7.700 |
| 时间: | 2024 | 起止号: | 2024 Oct 16; 38(17-20):866-886 |
| doi: | 10.1101/gad.351930.124 | 研究方向: | 细胞生物学 |
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