Xiao Zhousheng, Awad Hani A, Liu Shiguang, Mahlios Josh, Zhang Shiqin, Guilak Farshid, Mayo Matthew S, Quarles Leigh Darryl
Internal Medicine/The Kidney Institute, University of Kansas Medical Center, 6018 Wahl Hall East, Kansas City, 66160, USA.
Dev Biol. 2005 Jul 15;283(2):345-56. doi: 10.1016/j.ydbio.2005.04.028.
Runx2 transcribes Runx2-II and Runx2-I isoforms with distinct N-termini. Deletion of both isoforms results in complete arrest of bone development, whereas selective loss of Runx2-II is sufficient to form a grossly intact skeleton with impaired endochondral bone development. To elucidate the role of Runx2-II in osteoblast function in adult mice, we examined heterozygous Runx2-II (Runx2-II(+/-)) and homozygous Runx2-II (Runx2-II(-/-))-deficient mice, which, respectively, lack one or both copies of Runx2-II but intact Runx2-I expression. Compared to wild-type mice, 6-week-old Runx2-II(+/-) had reduced trabecular bone volume (BV/TV%), cortical thickness (Ct.Th), and bone mineral density (BMD), decreased osteoblastic and osteoclastic markers, lower bone formation rates, impaired osteoblast maturation of BMSCs in vitro, and significant reductions in mechanical properties. Homozygous Runx2-II(-/-) mice had a more severe reduction in BMD, BV/TV%, and Ct.Th, and greater suppression of osteoblastic and osteoclastic markers than Runx2-II(+/-) mice. Non-selective Runx2(+/-) mice, which have an equivalent reduction in Runx2 expression due to the lack one copy of Runx2-I and II, however, had an intermediate reduction in BMD. Thus, selective Runx2-II mutation causes diminished osteoblastic function in an adult mouse leading to low-turnover osteopenia and suggest that Runx2-I and II have distinct functions imparted by their different N-termini.
Runx2转录出具有不同N端的Runx2-II和Runx2-I亚型。两种亚型的缺失会导致骨骼发育完全停滞,而Runx2-II的选择性缺失足以形成大体完整但软骨内骨发育受损的骨骼。为了阐明Runx2-II在成年小鼠成骨细胞功能中的作用,我们研究了杂合Runx2-II(Runx2-II(+/-))和纯合Runx2-II(Runx2-II(-/-))缺陷小鼠,它们分别缺少Runx2-II的一个或两个拷贝,但Runx2-I表达完整。与野生型小鼠相比,6周龄的Runx2-II(+/-)小鼠的骨小梁体积(BV/TV%)、皮质厚度(Ct.Th)和骨密度(BMD)降低,成骨细胞和破骨细胞标志物减少,骨形成率降低,体外骨髓间充质干细胞(BMSC)的成骨细胞成熟受损,力学性能显著降低。纯合Runx2-II(-/-)小鼠的BMD、BV/TV%和Ct.Th降低更为严重,与Runx2-II(+/-)小鼠相比,成骨细胞和破骨细胞标志物的抑制作用更强。然而,由于缺少Runx2-I和II的一个拷贝而导致Runx2表达等量减少的非选择性Runx2(+/-)小鼠,其BMD降低程度处于中间水平。因此,选择性Runx2-II突变导致成年小鼠成骨细胞功能减弱,导致低转换型骨质减少,并表明Runx2-I和II因其不同的N端而具有不同的功能。