TY - JOUR
T1 - LRRK1 regulation of actin assembly in osteoclasts involves serine 5 phosphorylation of L-plastin
AU - Si, Mingjue
AU - Goodluck, Helen
AU - Zeng, Canjun
AU - Pan, Songqin
AU - Todd, Elizabeth M.
AU - Morley, Sharon Celeste
AU - Qin, Xuezhong
AU - Mohan, Subburaman
AU - Xing, Weirong
N1 - Publisher Copyright:
© 2018 The Authors. Journal of Cellular Biochemistry Published by Wiley Periodicals, Inc.
PY - 2018/12
Y1 - 2018/12
N2 - Mice with disruption of Lrrk1 and patients with nonfunctional mutant Lrrk1 exhibit severe osteopetrosis phenotypes because of osteoclast cytoskeletal dysfunction. To understand how Lrrk1 regulates osteoclast function by modulating cytoskeleton rearrangement, we examined the proteins that are differentially phosphorylated in wild-type mice and Lrrk1-deficient osteoclasts by metal affinity purification coupled liquid chromatography/mass spectrometry (LC/MS) analyses. One of the candidates that we identified by LC/MS is L-plastin, an actin bundling protein. We found that phosphorylation of L-plastin at serine (Ser) residues 5 was present in wild-type osteoclasts but not in Lrrk1-deficient cells. Western blot analyses with antibodies specific for Ser5 phosphorylated L-plastin confirmed the reduced L-plastin Ser5 phosphorylation in Lrrk1 knockout (KO) osteoclasts. micro computed tomography (Micro-CT) analyses revealed that the trabecular bone volume of the distal femur was increased by 27% in the 16 to 21-week-old L-plastin KO females as compared with the wild-type control mice. The ratio of bone volume to tissue volume and connectivity density were increased by 44% and 47% (both P < 0.05), respectively, in L-plastin KO mice. Our data suggest that targeted disruption of L-plastin increases trabecular bone volume, and phosphorylation of Ser5 in L-plastin in the Lrrk1 signaling pathway may in part contribute to actin assembly in mature osteoclasts.
AB - Mice with disruption of Lrrk1 and patients with nonfunctional mutant Lrrk1 exhibit severe osteopetrosis phenotypes because of osteoclast cytoskeletal dysfunction. To understand how Lrrk1 regulates osteoclast function by modulating cytoskeleton rearrangement, we examined the proteins that are differentially phosphorylated in wild-type mice and Lrrk1-deficient osteoclasts by metal affinity purification coupled liquid chromatography/mass spectrometry (LC/MS) analyses. One of the candidates that we identified by LC/MS is L-plastin, an actin bundling protein. We found that phosphorylation of L-plastin at serine (Ser) residues 5 was present in wild-type osteoclasts but not in Lrrk1-deficient cells. Western blot analyses with antibodies specific for Ser5 phosphorylated L-plastin confirmed the reduced L-plastin Ser5 phosphorylation in Lrrk1 knockout (KO) osteoclasts. micro computed tomography (Micro-CT) analyses revealed that the trabecular bone volume of the distal femur was increased by 27% in the 16 to 21-week-old L-plastin KO females as compared with the wild-type control mice. The ratio of bone volume to tissue volume and connectivity density were increased by 44% and 47% (both P < 0.05), respectively, in L-plastin KO mice. Our data suggest that targeted disruption of L-plastin increases trabecular bone volume, and phosphorylation of Ser5 in L-plastin in the Lrrk1 signaling pathway may in part contribute to actin assembly in mature osteoclasts.
KW - L-plastin
KW - Lrrk1
KW - osteoclast
KW - protein kinase
KW - serine phosphorylation
KW - Osteoclasts/metabolism
KW - Membrane Glycoproteins/genetics
KW - Cancellous Bone/growth & development
KW - Humans
KW - Signal Transduction/genetics
KW - Phosphorylation/genetics
KW - Cytoskeleton/genetics
KW - Mice, Knockout
KW - Protein Serine-Threonine Kinases/deficiency
KW - Animals
KW - Osteopetrosis/genetics
KW - Protein Binding
KW - Serine/genetics
KW - Mice
KW - Actins/genetics
KW - Microfilament Proteins/genetics
UR - http://www.scopus.com/inward/record.url?scp=85052388663&partnerID=8YFLogxK
UR - http://www.scopus.com/inward/citedby.url?scp=85052388663&partnerID=8YFLogxK
UR - https://www.mendeley.com/catalogue/b06e4b48-eaeb-36f1-bfea-28a297d65433/
U2 - 10.1002/jcb.27377
DO - 10.1002/jcb.27377
M3 - Article
C2 - 30136304
SN - 0730-2312
VL - 119
SP - 10351
EP - 10357
JO - Journal of Cellular Biochemistry
JF - Journal of Cellular Biochemistry
IS - 12
ER -