Adapala Naga Suresh, Holland Danielle, Scanlon Vanessa, Barbe Mary F, Langdon Wallace Y, Tsygankov Alexander Y, Lorenzo Joseph A, Sanjay Archana
Department of Orthopaedic Surgery, University of Connecticut Health Center, Farmington, CT 06032, USA.
Department of Anatomy and Cell Biology, Temple University School of Medicine, Philadelphia, PA 19140, USA.
Bone. 2014 Oct;67:1-9. doi: 10.1016/j.bone.2014.06.013. Epub 2014 Jul 1.
Cbl and Cbl-b are E3 ubiquitin ligases and adaptor proteins, which perform regulatory roles in bone remodeling. Cbl-/- mice have delayed bone development due to decreased osteoclast migration. Cbl-b-/- mice are osteopenic due to increased bone resorbing activity of osteoclasts. Unique to Cbl, but not present in Cbl-b, is tyrosine 737 in the YEAM motif, which upon phosphorylation provides a binding site for the regulatory p85 subunit of PI3K. Substitution of tyrosine 737 with phenylalanine (Y737F, CblYF/YF mice) prevents Y737 phosphorylation and abrogates the Cbl-PI3K interaction. We have previously reported that CblYF/YF mice had increased bone volume due to defective bone resorption and increased bone formation. Here we show that the lumbar vertebra from CblYF/YF mice did not have significant bone loss following ovariectomy. Our data also suggests that abrogation of Cbl-PI3K interaction in mice results in the loss of coupling between bone resorption and formation, since ovariectomized CblYF/YF mice did not show significant changes in serum levels of c-terminal telopeptide (CTX), whereas the serum levels of pro-collagen type-1 amino-terminal pro-peptide (P1NP) were decreased. In contrast, following ovariectomy, Cbl-/- and Cbl-b-/- mice showed significant bone loss in the tibiae and L2 vertebrae, concomitant with increased serum CTX and P1NP levels. These data indicate that while lack of Cbl or Cbl-b distinctly affects bone remodeling, only the loss of Cbl-PI3K interaction protects mice from significant bone loss following ovariectomy.
Cbl和Cbl-b是E3泛素连接酶及衔接蛋白,在骨重塑过程中发挥调节作用。Cbl基因敲除小鼠由于破骨细胞迁移减少,骨骼发育延迟。Cbl-b基因敲除小鼠则因破骨细胞骨吸收活性增加而出现骨质减少。Cbl特有的、Cbl-b中不存在的是YEAM基序中的酪氨酸737,其磷酸化后为PI3K的调节性p85亚基提供结合位点。用苯丙氨酸替代酪氨酸737(Y737F,CblYF/YF小鼠)可阻止Y737磷酸化并消除Cbl与PI3K的相互作用。我们之前报道过,CblYF/YF小鼠由于骨吸收缺陷和骨形成增加,骨体积增大。在此我们表明,CblYF/YF小鼠的腰椎在卵巢切除术后没有明显的骨质流失。我们的数据还表明,小鼠中Cbl与PI3K相互作用的消除导致骨吸收与骨形成之间的偶联丧失,因为卵巢切除的CblYF/YF小鼠血清中c端肽(CTX)水平没有显著变化,而I型前胶原氨基端前肽(P1NP)的血清水平降低。相比之下,卵巢切除术后,Cbl基因敲除小鼠和Cbl-b基因敲除小鼠的胫骨和L2椎骨出现明显骨质流失,同时血清CTX和P1NP水平升高。这些数据表明,虽然缺乏Cbl或Cbl-b会明显影响骨重塑,但只有Cbl-PI3K相互作用的丧失能保护小鼠在卵巢切除术后不出现明显的骨质流失。