Cardiovascular Center of Excellence, Louisiana State University Health Sciences Center, New Orleans, LA, USA; Department of Physiology, Louisiana State University Health Sciences Center, New Orleans, LA, USA.
Glycan Therapeutics Corporation, Raleigh, NC, USA.
Matrix Biol. 2024 Dec;134:107-118. doi: 10.1016/j.matbio.2024.10.002. Epub 2024 Oct 4.
The heparan sulfate (HS) 6-O-endosulfatases or the Sulfs (Sulf1 and Sulf2) are the only known enzymes that can modify HS sulfation status extracellularly and have been shown to regulate diverse biological processes. The role of the Sulfs in bone marrow (BM) hematopoiesis is not known. In this study, we generated a novel mouse line with myeloid-specific deletion of the Sulfs by crossing Sulf1/2 double floxed mice with the LysM-cre line. The LysM-Sulf knockout (KO) male mice exhibited age-dependent expansion of hematopoietic stem cells and the granulocyte-monocyte lineages in the BM, whereas common lymphoid progenitors and B lymphocyte populations were significantly reduced. Although megakaryocytic and erythroid progenitors were not reduced in the BM, the LysM-Sulf KO males suffered age-dependent reduction of red blood cells (RBCs) and platelets in the peripheral blood, suggesting that the production of RBCs and platelets was arrested at later stages. In addition, LysM-Sulf KO males displayed progressive splenomegaly with extramedullary hematopoiesis. Compared to males, LysM-Sulf KO females exhibited a much-reduced phenotype, and ovariectomy had little effect. Mechanistically, reduced TGF-β/Smad2 but enhanced p53/p21 signaling were observed in male but not female LysM-Sulf KO mice. Finally, HS disaccharide analysis via LC-MS/MS revealed increased HS 6-O-sulfation in the BM from both male and female LysM-Sulf KO mice, however, the distribution of 6-O-sulfated motifs were different between the sexes with compensatory increase in Sulf1 expression observed only in LysM-Sulf KO females. In conclusion, our study reveals that myeloid deficiency of the Sulfs leads to multilineage abnormalities in BM hematopoiesis in an age- and sex-dependent manner.
硫酸乙酰肝素(HS)6-O-内切硫酸酯酶或 Sulfs(Sulf1 和 Sulf2)是唯一已知的能够在细胞外修饰 HS 硫酸化状态的酶,并且已被证明可以调节多种生物学过程。Sulfs 在骨髓(BM)造血中的作用尚不清楚。在这项研究中,我们通过将 Sulf1/2 双 floxed 小鼠与 LysM-cre 线杂交,生成了一种新型骨髓髓系特异性 Sulfs 缺失的小鼠品系。LysM-Sulf 敲除(KO)雄性小鼠表现出年龄依赖性的 BM 造血干细胞和粒细胞-单核细胞谱系扩增,而共同淋巴祖细胞和 B 淋巴细胞群体则显著减少。尽管 BM 中的巨核细胞和红细胞祖细胞没有减少,但 LysM-Sulf KO 雄性小鼠出现年龄依赖性的外周血红细胞(RBC)和血小板减少,表明 RBC 和血小板的生成在后期被阻断。此外,LysM-Sulf KO 雄性小鼠表现出进行性脾肿大和骨髓外造血。与雄性相比,LysM-Sulf KO 雌性表现出明显减少的表型,并且卵巢切除术几乎没有影响。从机制上讲,在雄性 LysM-Sulf KO 小鼠中观察到 TGF-β/Smad2 减少但 p53/p21 信号增强,但在雌性 LysM-Sulf KO 小鼠中则没有观察到。最后,通过 LC-MS/MS 进行的 HS 二糖分析显示,雄性和雌性 LysM-Sulf KO 小鼠的 BM 中 HS 6-O-硫酸化增加,然而,性别之间 6-O-硫酸化基序的分布不同,仅在 LysM-Sulf KO 雌性小鼠中观察到 Sulf1 表达的代偿性增加。总之,我们的研究表明,Sulfs 在骨髓中的髓系缺失导致 BM 造血中多谱系异常,这种异常具有年龄和性别依赖性。