Evaluation of Potential Roles of Zinc Finger Homeobox 3 (Zfhx3) Expressed in Chondrocytes and Osteoblasts on Skeletal Growth in Mice

被引:0
|
作者
Gomez, Gustavo A. [1 ]
Udayakumar, Anakha [1 ]
Pourteymoor, Sheila [1 ]
Dennis, Garrett [1 ]
Xing, Weirong [1 ]
Mohan, Subburaman [1 ,2 ]
机构
[1] VA Loma Linda Healthcare Syst, Musculoskeletal Dis Ctr, 11201 Benton St, Loma Linda, CA 92357 USA
[2] Loma Linda Univ, Dept Med Biochem & Orthoped Surg, Loma Linda, CA 92354 USA
关键词
Osteoblasts; Chondrocytes; Zfhx3; Osteoporosis; Bones; Mice; AUTOSOMAL SEX REVERSAL; CAMPOMELIC DYSPLASIA; DIFFERENTIATION; DELETION; MUTATIONS; OSTERIX; ARREST; CBFA1; CELLS; ATBF1;
D O I
10.1007/s00223-024-01265-6
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Bone formation is tightly modulated by genetically encoded molecular proteins that interact to regulate cellular differentiation and secretion of bony matrix. Many transcription factors are known to coordinate these events by controlling gene transcription within networks. However, not all factors involved are known. Here, we identified a novel function for Zinc Finger Homeobox 3 (Zfhx3), a gene encoding a transcription factor, as a regulator of bone metabolism. We knocked out Zfhx3 conditionally in mice in either chondrocytes or osteoblasts and characterized their bones by micro-CT in 12-week-old mice. We observed a negative effect in linear bone growth in both knockout mice but reduced bone mass only in mice with Zfhx3 deleted in osteoblasts. Loss of Zfhx3 expression in osteoblasts affected trabecular bone mass in femurs and vertebrae in both sexes but influenced cortical bone volume fraction only in females. Moreover, transcriptional analysis of femoral bones in osteoblast Zfhx3 conditional knockout mice revealed a reduced expression of osteoblast genes, and histological evaluation of trabecular bones suggests that Zfhx3 causes changes in bone formation and not resorption. The loss of Zfhx3 causes reductions in trabecular bone area and osteoid volume, but no changes in the expression of osteoclast differentiation markers or number of TRAP stained osteoclasts. These studies introduce Zfhx3 as a relevant factor toward understanding gene regulatory networks that control bone formation and development of peak bone mass.
引用
收藏
页码:445 / 454
页数:10
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