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Cytoplasmic poly (A)-binding protein critically regulates epidermal maintenance and turnover in the planarian Schmidtea mediterranea

机译:细胞质的聚(A)结合蛋白可严格调节刨丝虫Schmidtea mediterranea中的表皮维护和更新

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摘要

Identifying key cellular events that facilitate stem cell function and tissue organization is crucial for understanding the process of regeneration. Planarians are powerful model system to study regeneration and stem cell (neoblast) function. Here, using planaria, we show that the initial events of regeneration, such as epithelialization and epidermal organization are critically regulated by a novel cytoplasmic poly A-binding protein, SMED-PABPC2. Knockdown of smed-pabpc2 leads to defects in epidermal lineage specification, disorganization of epidermis and ECM, and deregulated wound healing, resulting in the selective failure of neoblast proliferation near the wound region. Polysome profiling suggests that epidermal lineage transcripts, including zfp-1, are translationally regulated by SMED-PABPC2. Together, our results uncover a novel role for SMED-PABPC2 in the maintenance of epidermal and ECM integrity, critical for wound healing and subsequent processes for regeneration.
机译:确定有助于干细胞功能和组织组织的关键细胞事件对于理解再生过程至关重要。平面主义者是研究再生和干细胞(成神经细胞)功能的强大模型系统。在这里,我们使用平面虫,表明再生的初始事件,如上皮化和表皮组织受到新型胞质多聚A结合蛋白SMED-PABPC2的严格调控。击倒smed-pabpc2会导致表皮谱系规范的缺陷,表皮和ECM的混乱以及伤口愈合的失调,从而导致创面附近的新生细胞增殖选择性失败。多核糖体分析表明,表皮谱系转录物,包括zfp-1,受SMED-PABPC2翻译调控。总之,我们的结果揭示了SMED-PABPC2在维持表皮和ECM完整性方面的新作用,这对于伤口愈合和随后的再生过程至关重要。

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