Proteome and phosphoproteome profiling reveals the regulation mechanism of hibernation in a freshwater leech (Whitmania pigra)
Research article published in Journal of proteomics (2020)
Abstract
Hibernation is an energy-saving and adaptive strategy adopted by leech, an important medicinal resource in Asia, to survive low temperature. Reversible protein phosphorylation (RPP) plays a key role in the regulation of mammalian hibernation processes but has never been documented in freshwater invertebrate such as leech. In this study, we detected the effects of hibernation on the proteome and phosphoproteome of the leech Whitmania pigra. A total of 2184 proteins and 2598 sites were quantified. Deep-hibernation resulted in 85 up-regulated and 107 down-regulated proteins and 318 up-regulated and 204 down-regulated phosphosites using a 1.5-fold threshold (P<0.05). Proteins involved in protein digestion and absorption, amino acid metabolism and N-glycan biosynthesis were significantly down-regulated during deep-hibernation. However, proteins involved in maintaining cell structure stability in hibernating animals were up-regulated. Differentially phosphorylated proteins provided the first global picture of a shift in energy metabolism, protein synthesis, cytoprotection and signaling during deep hibernation. Furthermore, AMP-activated protein kinase and protein kinase C play major roles in the regulation of these functional processes. These data significantly improve our understanding of the regulatory mechanisms of leech hibernation processes and provides substantial candidate phosphorylated proteins that could be important for functionally adapt in freshwater animals. SIGNIFICANCE: The leech Whitmania pigra as an important medicinal resource in Asia is an excellent model freshwater invertebrate for studies of environmentally-induced hibernation. The present study provides the first quantitative proteomics and phosphoproteomic analysis of leech hibernation using isobaric tag based TMT labeling and high-resolution mass spectrometry. These data significantly improve our understanding of the regulatory mechanisms when ectotherm animals face environmental stress and provides substantial candidate phosphorylated proteins that could be important for functionally adapt in freshwater animals.
Abstract sourced from PubMed (NCBI) for the cited record. See the original publication for the authoritative version.
Резюме
Hibernation is an energy-saving and adaptive strategy adopted by leech, an important medicinal resource in Asia, to survive low temperature.
Почему это важно для гирудотерапии
Данное исследование с применением количественной протеомики и фосфопротеомики изучало гибернацию у пресноводной пиявки Whitmania pigra, охарактеризованной в аннотации как важный лекарственный ресурс в Азии. Глубокая гибернация вызвала повышение регуляции 85 и снижение регуляции 107 белков, а также повышение регуляции 318 и снижение регуляции 204 фосфорилируемых сайтов, с изменениями в энергетическом метаболизме, синтезе белков, цитопротекции и сигнальных путях, опосредованных AMP-активируемой протеинкиназой и протеинкиназой C. Для ASH идентификация данного вида как лекарственного ресурса обеспечивает ограниченное основание для включения, хотя аннотация не раскрывает его терапевтические применения. Однако исследование посвящено биологии гибернации и экологической адаптации — в нём не сообщается об анализе терапевтических соединений, слюнных антикоагулянтов или исходов, связанных с гирудотерапией. Его связь с областью ASH является косвенной.
Цитирование
Proteome and phosphoproteome profiling reveals the regulation mechanism of hibernation in a freshwater leech (Whitmania pigra)
Shi H et al. · Journal of proteomics, 2020
Связанный клинический контекст
Узнайте, как это исследование связано с клинической практикой
Добавлено в библиотеку ASH: May 27, 2026 · Последнее обновление сайта: 18 июня 2026 г.