Tgif1-deficiency impairs cytoskeletal architecture in osteoblasts by activating PAK3 signaling.

Bolamperti, Simona; Saito, Hiroaki; Heerdmann, Sarah; Hesse, Eric; Taipaleenmäki, Hanna · Elife · 2024

basic_science · Level V

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Abstract

Osteoblast adherence to bone surfaces is important for remodeling bone tissue. This study demonstrates that deficiency of TG-interacting factor 1 (Tgif1) in osteoblasts results in altered cell morphology, reduced adherence to collagen type I-coated surfaces, and impaired migration capacity. Tgif1 is essential for osteoblasts to adapt a regular cell morphology and to efficiently adhere and migrate on collagen type I-rich matrices in vitro. Furthermore, Tgif1 acts as a transcriptional repressor of p21-activated kinase 3 (<i>Pak3</i>), an important regulator of focal adhesion formation and osteoblast spreading. Absence of Tgif1 leads to increased <i>Pak3</i> expression, which impairs osteoblast spreading. Additionally, Tgif1 is implicated in osteoblast recruitment and activation of bone surfaces in the context of bone regeneration and in response to parathyroid hormone 1-34 (PTH 1-34) treatment in vivo in mice. These findings provide important novel insights in the regulation of the cytoskeletal architecture of osteoblasts.

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