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◆ Frontiers in Veterinary Science2026-02-12· Histone

Lysine lactylation regulates ATF4-mediated stress responses under glucose starvation in canine hemangiosarcoma

Tamami Suzuki, Kazuki Heishima, Jumpei Yamazaki, Masaya Yamazaki, Ryohei Kinoshita, Sangho KIM, Kenji Hosoya, Yuko Okamatsu-Ogura, Michihito Sasaki, Peng Xu, Qin Yan, Takashi Kimura, Keisuke Aoshima

原始摘要(英文原文)· Original abstract
Excess lactate is produced in tumor cells by aerobic glycolysis and regulates gene expressions by histone lactylation. However, how histone lactylation functions under glucose-limited conditions remains unknown. Here, we show that lysine lactylation redistributes to transcription start sites (TSSs) during glucose deprivation, thereby altering biological behaviors in canine hemangiosarcoma (HSA) cells. Glucose deprivation significantly decreased global histone lactylation levels, while lactylation peaks were enriched at TSSs of ATF4-regulated stress-response, asparagine-synthesis and immune-related genes. Stress-response gene expressions were upregulated, and ATF4 polyclonal knockout abrogated this activation. [U- 13 C]glutamine tracing demonstrated that HSA cells synthesized asparagine from glutamine when glucose was scarce, and asparagine supplementation modestly activated cell proliferation. In HSA patient tissues, H3K18la levels were heterogeneous, and M2-like macrophages preferentially infiltrated tumor regions showing low histone lactylation levels. These findings demonstrate that lysine lactylation regulates transcription that supports tumor cell survival and fosters a pro-tumor microenvironment even under glucose-limited conditions.
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Lysine lactylation regulates ATF4-mediated stress responses under glucose starvation in canine hemangiosarcoma — 科研速览 Science Skim