Many X-linked microRNAs escape meiotic sex chromosome inactivation
Rui Song1, Seungil Ro, Jason D Michaels
1Department of Physiology and Cell Biology, University of Nevada School of Medicine, Reno, NV, USA.
Abstract:
Meiotic sex chromosome inactivation (MSCI) during spermatogenesis is characterized by transcriptional silencing of genes on both the X and Y chromosomes in mid-to-late pachytene spermatocytes. MSCI is believed to result from meiotic silencing of unpaired DNA because the X and Y chromosomes remain largely unpaired throughout first meiotic prophase. However, unlike X-chromosome inactivation in female embryonic cells, where 25-30% of X-linked structural genes have been reported to escape inactivation, previous microarray- and RT-PCR-based studies of expression of >364 X-linked mRNA-encoding genes during spermatogenesis have failed to reveal any X-linked gene that escapes the silencing effects of MSCI in primary spermatocytes. Here we show that many X-linked miRNAs are transcribed and processed in pachytene spermatocytes. This unprecedented escape from MSCI by these X-linked miRNAs suggests that they may participate in a critical function at this stage of spermatogenesis, including the possibility that they contribute to the process of MSCI itself, or that they may be essential for post-transcriptional regulation of autosomal mRNAs during the late meiotic and early postmeiotic stages of spermatogenesis.
Insights
Many X-linked microRNAs escape meiotic sex chromosome inactivation (MSCI) during spermatogenesis. These microRNAs may play crucial roles in gene regulation during male meiosis.
Area of Science:
- Reproductive Biology
- Molecular Genetics
- Epigenetics
Background:
- Meiotic sex chromosome inactivation (MSCI) silences X and Y genes during male meiosis.
- MSCI is linked to chromosome asynapsis in pachytene spermatocytes.
- Previous studies found no X-linked genes escaping MSCI in spermatocytes.
Purpose of the Study:
- To investigate X-linked gene expression escape from MSCI in spermatocytes.
- To identify potential functions of escaping X-linked genes during male meiosis.
Main Methods:
- Analysis of X-linked microRNA (miRNA) transcription and processing in pachytene spermatocytes.
- Comparison with previous studies on mRNA-encoding X-linked genes.
Main Results:
- Numerous X-linked miRNAs are transcribed and processed in pachytene spermatocytes.
- This represents an unprecedented escape from MSCI for X-linked genes.
Conclusions:
- X-linked miRNAs may have critical roles in spermatogenesis.
- These miRNAs could be involved in MSCI or post-transcriptional regulation of autosomal genes.
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