Department of Pathology, Johns Hopkins Medical Institutions, Baltimore, Maryland, United States of America.
PLoS One. 2013 Jul 26;8(7):e69099. doi: 10.1371/journal.pone.0069099. Print 2013.
NAC1 encoded by NACC1 is a member of the BTB/POZ family of proteins and participates in several pathobiological processes. However, its function during tissue development has not been elucidated. In this study, we compared homozygous null mutant Nacc1(-/-) and wild type Nacc1(+/+) mice to determine the consequences of diminished NAC1 expression. The most remarkable change in Nacc1(-/-) mice was a vertebral patterning defect in which most knockout animals exhibited a morphological transformation of the sixth lumbar vertebra (L6) into a sacral identity; thus, the total number of pre-sacral vertebrae was decreased by one (to 25) in Nacc1(-/-) mice. Heterozygous Nacc1(+/-) mice had an increased tendency to adopt an intermediate phenotype in which L6 underwent partial sacralization. Nacc1(-/-) mice also exhibited non-closure of the dorsal aspects of thoracic vertebrae T10-T12. Chondrocytes from Nacc1(+/+) mice expressed abundant NAC1 while Nacc1(-/-) chondrocytes had undetectable levels. Loss of NAC1 in Nacc1(-/-) mice was associated with significantly reduced chondrocyte migratory potential as well as decreased expression of matrilin-3 and matrilin-4, two cartilage-associated extracellular matrix proteins with roles in the development and homeostasis of cartilage and bone. These data suggest that NAC1 participates in the motility and differentiation of developing chondrocytes and cartilaginous tissues, and its expression is necessary to maintain normal axial patterning of murine skeleton.
NAC1 由 NACC1 编码,是 BTB/POZ 蛋白家族的成员,参与多种病理生物学过程。然而,其在组织发育过程中的功能尚未阐明。在本研究中,我们比较了纯合缺失突变 Nacc1(-/-)和野生型 Nacc1(+/+)小鼠,以确定 NAC1 表达减少的后果。Nacc1(-/-)小鼠最显著的变化是椎体模式缺陷,大多数敲除动物的第六腰椎 (L6) 表现出骶骨特征的形态转化;因此,Nacc1(-/-)小鼠的总骶前椎骨数量减少了一个(降至 25 个)。杂合子 Nacc1(+/-)小鼠有增加的趋势,表现出中间表型,其中 L6 部分骶骨化。Nacc1(-/-)小鼠还表现出 T10-T12 胸椎背侧未闭合。Nacc1(+/+)小鼠的软骨细胞表达丰富的 NAC1,而 Nacc1(-/-)软骨细胞则无法检测到。Nacc1(-/-)小鼠的 NAC1 缺失与软骨细胞迁移潜力显著降低以及软骨基质蛋白 3 和 4 表达减少有关,这两种软骨相关细胞外基质蛋白在软骨和骨骼的发育和稳态中发挥作用。这些数据表明,NAC1 参与了发育中的软骨细胞和软骨组织的迁移和分化,其表达对于维持小鼠骨骼的正常轴向模式至关重要。