Department of Biology, University of North Carolina Greensboro, Greensboro, North Carolina, USA.
Department of Cell Biology, Genetic Engineering and Biotechnology Research Division, National Research Centre, Giza, Egypt.
J Cell Biochem. 2021 Oct;122(10):1262-1276. doi: 10.1002/jcb.29950. Epub 2021 May 13.
WNT5A activates noncanonical Wnt signaling pathways and has critical functions in early development, differentiation, and tissue homeostasis. Two major WNT5A protein isoforms, which in this study we term WNT5A-L(A) and WNT5A-S(B), have been identified that differ by 18 AA at their amino terminus. Functional differences between the isoforms have been indicated in studies utilizing cancer cell lines but the activities of the isoforms in normal cells and during differentiation have not been explored. We examined the WNT5A isoforms in the normal osteoblast cell line hFOB1.19. WNT5A-L(A) and WNT5A-S(B) transcripts increased from Days 3 to 21 of differentiation but WNT5A-S(B) showed a greater fold-change. In undifferentiated cells, there are 2-fold more WNT5A-L(A) than WNT5A-S(B) transcripts. Total intracellular WNT5A protein increased up to 3-fold during differentiation. siRNA knockdown of total WNT5A leads to a decrease in the expression of the differentiation markers, osteocalcin and RUNX2. Conditioned medium containing the isoform proteins [CM-L(A) and CM-S(B)] was used to analyze the effects of the isoforms on β-catenin and noncanonical signaling, proliferation, gene expression, and alkaline phosphatase (ALP) activity. Treatment with both CM-L(A) and CM-S(B) reduced β-catenin signaling. CM-L(A) but not CM-S(B) significantly increased the proliferation of nondifferentiated hFOB1.19 cells. CM-L(A) enhanced osteocalcin transcripts over 2-fold in differentiating cells, whereas CM-S(B) had no effect. Analysis of differentiating cells up to Day 21 revealed no significant effect of treatment with CM-L(A) or CM-S(B) on ALP activity or osteocalcin gene expression. pJNK levels were unaffected in proliferating cells by treatment with neither isoform. pPKC increased slightly in CM-L(A)-treated cells at 15 min but by 2 h pPKC levels were less than the control. CM-S(B) had a more robust effect on pPKC levels that continued up to 2 h. Together these results suggest that the WNT5A isoforms have distinct and overlapping functions in normal osteoblasts.
WNT5A 激活非经典 Wnt 信号通路,在早期发育、分化和组织稳态中具有关键功能。已经鉴定出两种主要的 WNT5A 蛋白同工型,在本研究中我们将其称为 WNT5A-L(A)和 WNT5A-S(B),它们在氨基末端相差 18 个氨基酸。利用癌细胞系的研究表明同工型之间存在功能差异,但同工型在正常细胞和分化过程中的活性尚未得到探索。我们在正常成骨细胞系 hFOB1.19 中检查了 WNT5A 同工型。WNT5A-L(A)和 WNT5A-S(B)的转录物从分化的第 3 天增加到第 21 天,但 WNT5A-S(B)的变化幅度更大。在未分化的细胞中,WNT5A-L(A)的转录物比 WNT5A-S(B)多 2 倍。总细胞内 WNT5A 蛋白在分化过程中增加了 3 倍。用 WNT5A 的 siRNA 敲低导致分化标记物骨钙素和 RUNX2 的表达减少。使用同工型蛋白 [CM-L(A)和 CM-S(B)] 的条件培养基来分析同工型对 β-连环蛋白和非经典信号、增殖、基因表达和碱性磷酸酶 (ALP)活性的影响。用 CM-L(A)和 CM-S(B)处理均降低了 β-连环蛋白信号。CM-L(A)但不是 CM-S(B)显著增加了未分化 hFOB1.19 细胞的增殖。CM-L(A)使分化细胞中的骨钙素转录物增加了 2 倍以上,而 CM-S(B)则没有影响。在分化细胞中直至第 21 天的分析表明,用 CM-L(A)或 CM-S(B)处理对 ALP 活性或骨钙素基因表达没有显著影响。用两种同工型处理均未影响增殖细胞中的 pJNK 水平。CM-L(A)处理细胞中的 pPKC 在 15 分钟时略有增加,但在 2 小时时 pPKC 水平低于对照。CM-S(B)对 pPKC 水平的影响更为显著,一直持续到 2 小时。这些结果表明,WNT5A 同工型在正常成骨细胞中具有不同但重叠的功能。