Correlation Engine 2.0
Clear Search sequence regions


  • bafilomycin (1)
  • biogenesis (3)
  • cathepsin K (1)
  • help (1)
  • knockout mice (1)
  • Lamp1 (1)
  • ligand (1)
  • macrophages (7)
  • nf κb (1)
  • organelles (9)
  • osteoclasts (7)
  • paralog (1)
  • rab gtpases (1)
  • Rab32 (5)
  • Rab38 (6)
  • receptor (1)
  • small gtpases (1)
  • Sizes of these terms reflect their relevance to your search.

    Both the biogenesis and functions of osteoclasts and macrophages involves dynamic membrane traffic. We screened transcript levels for Rab family small GTPases related to osteoclasts and identified Rab38. Rab38 expression is upregulated during osteoclast differentiation and maturation. In osteoclasts, both Rab38 and its paralog, Rab32, colocalize to lysosome-related organelles (LROs). In macrophages, Rab32 is also found in LROs. LROs are part of the endocytic pathway but are distinct from lysosomes. After receptor activator of NF-κB ligand stimulation, LROs contain cathepsin K and tartrate-resistant acid phosphatase inside and help both proteins to accumulate around bone resorption pits. After osteoclast maturation, these enzymes are hardly found within LROs. In macrophages derived from Rab32 and Rab38 double knockout mice, both acidification and V-ATPase a3 localization were severely compromised. Both the double knockout macrophage and bafilomycin-treated wildtype macrophage show an increase in Lamp1-positive organelles, implying that biogenesis of lysosomes and LROs are related. These results indicate that Rab32 and Rab38 both play a crucial role in LRO biogenesis in macrophages and in osteoclasts. Copyright © 2023 The Authors. Published by Elsevier Inc. All rights reserved.

    Citation

    Kazuya Noda, Shiou-Ling Lu, Siyu Chen, Kanako Tokuda, Yangjie Li, Feike Hao, Yoh Wada, Ge-Hong Sun-Wada, Shinya Murakami, Mitsunori Fukuda, Takashi Itoh, Takeshi Noda. Characterization of Rab32- and Rab38-positive lysosome-related organelles in osteoclasts and macrophages. The Journal of biological chemistry. 2023 Aug 23;299(10):105191


    PMID: 37625588

    View Full Text