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丝氨酸激酶-2 在骨中的意外作用和甲状旁腺激素的合成代谢作用。

An Unanticipated Role for Sphingosine Kinase-2 in Bone and in the Anabolic Effect of Parathyroid Hormone.

机构信息

Department of Medicine (Endocrinology), Yale School of Medicine, New Haven, CT, USA.

出版信息

Endocrinology. 2021 May 1;162(5). doi: 10.1210/endocr/bqab042.

Abstract

Sphingosine-1-phosphate (S1P) is an anabolic clastokine. Sphingosine kinase (SPHK) is the rate-limiting enzyme in S1P production and has 2 isoforms. To evaluate the roles of SPHK1 and SPHK2 in bone, we examined the skeletal phenotype of mice with selective deletion of SPHK1 in osteoclasts (SPHK1-Oc-/-) and mice in which the SPHK2 gene was deleted in all tissues (SPHK2-/-). SPHK1-Oc-/- had normal bone mass. By contrast, SPHK2-/- female mice had a 14% lower spinal bone mineral density (BMD; P < 0.01) and males a 22% lower BMD at the same site (P < 0.001). SPHK2-/- and control mice were subsequently treated either with daily parathyroid hormone PTH or vehicle for 29 days. The response to PTH was significantly attenuated in the SPHK2-/-mice. The mean femoral bone volume to total volume fraction (BV/TV) increased by 24.8% in the PTH-treated female control animals vs 10.6% in the vehicle-treated female controls (P < 0.01). In contrast, in the SPHK2-/- female mice the difference in femoral trabecular BV/TV at the end of treatment was not significant (20.5 vs13.3%, PTH vs vehicle, P = NS). The anabolic response to PTH was significantly attenuated in the spine of male SPHK2-/- mice (29.7% vs 23.1%, PTH vs vehicle, in controls, P < 0.05; 26.9% vs 19.5% PTH vs vehicle in SPHK2-/- mice, P = NS). The spine responded normally in the SPHK2-/- female mice. Interestingly, suppression of sclerostin was blunted in the SPHK2-/- mice when those animals were treated with an anabolic PTH regimen. We conclude that SPHK2 has an important role in mediating both normal bone remodeling and the anabolic response to PTH.

摘要

鞘氨醇-1-磷酸(S1P)是一种合成破骨细胞因子。鞘氨醇激酶(SPHK)是 S1P 产生的限速酶,有 2 种同工酶。为了评估 SPHK1 和 SPHK2 在骨骼中的作用,我们检查了破骨细胞中 SPHK1 选择性缺失(SPHK1-Oc-/-)和所有组织中 SPHK2 基因缺失(SPHK2-/-)的小鼠的骨骼表型。SPHK1-Oc-/-的骨量正常。相比之下,SPHK2-/-雌性小鼠的脊柱骨密度(BMD)低 14%(P<0.01),雄性低 22%(P<0.001)。随后,用甲状旁腺激素[PTH](1-34)或载体对 SPHK2-/-和对照小鼠进行 29 天的治疗。SPHK2-/-小鼠对 PTH 的反应明显减弱。在接受 PTH 治疗的雌性对照动物中,股骨骨体积与总体积分数(BV/TV)平均增加 24.8%,而在接受载体治疗的雌性对照动物中增加 10.6%(P<0.01)。相比之下,在 SPHK2-/-雌性小鼠中,治疗结束时股骨小梁 BV/TV 的差异无统计学意义(20.5%对 13.3%,PTH 对载体,P=NS)。SPHK2-/-雄性小鼠的脊柱对 PTH 的合成反应明显减弱(在对照中,PTH 对载体,29.7%对 23.1%,P<0.05;SPHK2-/-小鼠,26.9%对 19.5%,PTH 对载体,P=NS)。SPHK2-/-雌性小鼠的脊柱反应正常。有趣的是,当这些动物接受合成代谢 PTH 治疗时,SPHK2-/-小鼠中硬骨素的抑制作用减弱。我们得出结论,SPHK2 在介导正常骨重塑和 PTH 的合成反应中都有重要作用。

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