RRC ID 29098
著者 Uchikawa T, Yamamoto A, Inouye K.
タイトル Origin and function of the stalk-cell vacuole in Dictyostelium.
ジャーナル Dev Biol
Abstract Large vacuoles are characteristic of plant and fungal cells, and their origin has long attracted interest. The cellular slime mould provides a unique opportunity to study the de novo formation of vacuoles because, in its life cycle, a subset of the highly motile animal-like cells (prestalk cells) rapidly develops a single large vacuole and cellulosic cell wall to become plant-like cells (stalk cells). Here we describe the origin and process of vacuole formation using live-imaging of Dictyostelium cells expressing GFP-tagged ammonium transporter A (AmtA-GFP), which was found to reside on the membrane of stalk-cell vacuoles. We show that stalk-cell vacuoles originate from acidic vesicles and autophagosomes, which fuse to form autolysosomes. Their repeated fusion and expansion accompanied by concomitant cell wall formation enable the stalk cells to rapidly develop turgor pressure necessary to make the rigid stalk to hold the spores aloft. Contractile vacuoles, which are rich in H(+)-ATPase as in plant vacuoles, remained separate from these vacuoles. We further argue that AmtA may play an important role in the control of stalk-cell differentiation by modulating the pH of autolysosomes.
巻・号 352(1)
ページ 48-57
公開日 2011-4-1
DOI 10.1016/j.ydbio.2011.01.014
PII S0012-1606(11)00038-8
PMID 21256841
MeSH Biomarkers / metabolism Cell Proliferation Cell Wall / metabolism Cell Wall / ultrastructure Dictyostelium / cytology* Dictyostelium / metabolism* Dictyostelium / ultrastructure Green Fluorescent Proteins / metabolism Intracellular Membranes / metabolism Intracellular Membranes / ultrastructure Lysosomes / metabolism Lysosomes / ultrastructure Phagosomes / metabolism Phagosomes / ultrastructure Protozoan Proteins / metabolism Vacuoles / metabolism* Vacuoles / ultrastructure
IF 2.896
引用数 13
WOS 分野 DEVELOPMENTAL BIOLOGY
リソース情報
細胞性粘菌 S90414 S90415