PLEKHM1/DEF8/RAB7 complex regulates lysosome positioning and bone homeostasis

Toshifumi Fujiwara, Shiqiao Ye, Thiago Castro-Gomes, Caylin Winchell, Norma Andrews, Daniel Voth, Kottayil Varughese, Samuel Mackintosh, Yunfeng Feng, Nathan Pavlos, Takashi Nakamura, Stavros Manolagas, Haibo Zhao

Research output: Contribution to journalArticlepeer-review

64 Citations (Scopus)

Abstract

Mutations of the Plekhm1 gene in humans and rats cause osteopetrosis, an inherited bone disease characterized by diminished bone resorption by osteoclasts. PLEKHM1 binds to RAB7 and is critical for lysosome trafficking. However, the molecular mechanisms by which PLEKHM1 regulates lysosomal pathways remain unknown. Here, we generated germline and conditional Plekhm1deficient mice. These mice displayed no overt abnormalities in major organs, except for an increase in trabecular bone mass. Furthermore, loss of PLEKHM1 abrogated the peripheral distribution of lysosomes and bone resorption in osteoclasts. Mechanistically, we indicated that DEF8 interacts with PLEKHM1 and promotes its binding to RAB7, whereas the binding of FAM98A and NDEL1 with PLEKHM1 connects lysosomes to microtubules. Importantly, suppression of these proteins results in lysosome positioning and bone resorption defects similar to those of Plekhm1-null osteoclasts. Thus, PLHKEM1, DEF8, FAM98A, and NDEL1 constitute a molecular complex that regulates lysosome positioning and secretion through RAB7.
Original languageEnglish
Article numbere86330
JournalJCI Insight
Volume1
Issue number17
DOIs
Publication statusPublished - 20 Oct 2016

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