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Kindlin3 缺乏导致进行性骨骼缺陷,为人类常染色体隐性遗传骨硬化症的模型。

Progressive skeletal defects caused by Kindlin3 deficiency, a model of autosomal recessive osteopetrosis in humans.

机构信息

Department of Neurosciences, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA.

Biomedical Engineering, Lerner Research Institute, Cleveland Clinic, Cleveland, OH 44195, USA.

出版信息

Bone. 2022 Jul;160:116397. doi: 10.1016/j.bone.2022.116397. Epub 2022 Mar 25.

Abstract

The cellular and molecular mechanisms of bone development and homeostasis are clinically important, but not fully understood. Mutations in integrins and Kindlin3 in humans known as Leukocyte adhesion deficiencies (LAD) cause a wide spectrum of complications, including osteopetrosis. Yet, the rarity, frequent misdiagnosis, and lethality of LAD preclude mechanistic analysis of skeletal abnormalities in these patients. Here, using inducible and constitutive tissue-specific Kindlin3 knockout (K3KO) mice, we show that the constitutive lack of embryonic-Kindlin3 in myeloid lineage cells causes growth retardation, edentulism, and skull deformity indicative of hydrocephaly. Micro-CT analysis revealed craniosynostosis, choanal stenosis, and micrognathia along with other skeletal abnormalities characteristic of osteopetrosis. A marked progression of osteosclerosis occurs in mature to middle-aged adults, resulting in the narrowing of cranial nerve foramina and bone marrow cavities of long bones. However, postnatal-Kindlin3 is less critical for bone remodeling and architecture. Thus, myeloid Kindlin3 is essential for skeletal development and its deficiency leads to autosomal recessive osteopetrosis (ARO). The study will aid in the diagnosis, management, and treatment choices for patients with LAD-III and ARO.

摘要

骨骼发育和稳态的细胞和分子机制具有重要的临床意义,但尚未完全阐明。整合素和 Kindlin3 的突变在人类中被称为白细胞黏附缺陷症(LAD),会导致广泛的并发症,包括骨质增生症。然而,LAD 的罕见性、频繁误诊和致命性使得难以对这些患者的骨骼异常进行机制分析。在这里,我们使用诱导型和组成型组织特异性 Kindlin3 敲除(K3KO)小鼠,表明骨髓谱系细胞中胚胎型 Kindlin3 的组成性缺失会导致生长迟缓、无牙和颅骨畸形,提示脑积水。微 CT 分析显示颅缝早闭、后鼻孔狭窄和小颌畸形,以及其他具有骨质增生症特征的骨骼异常。在成熟到中年成年人中,会发生明显的骨质硬化进展,导致颅神经孔和长骨骨髓腔变窄。然而,出生后 Kindlin3 对骨骼重塑和结构的重要性较低。因此,髓样细胞 Kindlin3 对骨骼发育至关重要,其缺失会导致常染色体隐性骨质增生症(ARO)。该研究将有助于 LAD-III 和 ARO 患者的诊断、管理和治疗选择。

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