Differential phosphorylation of two serine clusters in mouse HORMAD1 during meiotic prophase I progression

Hiroshi Kogo, Yuka Kikuchi-Kokubo, Yukiko Tajika, Akiko Iizuka-Kogo, Hanako Yamamoto, Maiko Ikezawa, Hiroki Kurahashi, Toshiyuki Matsuzaki

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)

Abstract

Mouse HORMAD1 is a phospho-protein involved in multiple functions during meiotic prophase I. To obtain insight into the significance of its phosphorylation, we generated phospho-specific antibodies against two serine residues, Ser307 and Ser378, representing each of two serine clusters in mouse HORMAD1. The Ser307 phosphorylation is detectable from early leptotene substage in both wild-type and Spo11−/− spermatocytes, indicating that Ser307 is a primary and SPO11-independent phosphorylation site. In contrast, the Ser378 phosphorylation is negligible at earlier substages in wild-type and Spo11−/− spermatocytes. After mid-zygotene substage, the Ser378 phosphorylation is abundant on unsynapsed chromosome axes in wild-type spermatocytes and is detected only in a part of unsynapsed chromosome axes in Spo11−/− spermatocytes. We also generated a non-phosphorylated Ser307-specific antibody and found that Ser307 is phosphorylated on sex chromosome axes but is almost entirely unphosphorylated on desynapsed chromosome axes in diplotene spermatocytes. These results demonstrated a substage-specific phosphorylation status of mouse HORMAD1, which might be associated with multiple substage-specific functions.

Original languageEnglish
Article number114133
JournalExperimental Cell Research
Volume440
Issue number1
DOIs
Publication statusPublished - 01-07-2024
Externally publishedYes

All Science Journal Classification (ASJC) codes

  • Cell Biology

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