Cardiovascular Biology Research Program, Oklahoma Medical Research Foundation, Oklahoma City, OK; and.
Department of Physiology, and.
Blood Adv. 2022 Jun 14;6(11):3321-3328. doi: 10.1182/bloodadvances.2021005977.
Transforming growth factor β1 (TGF-β1) regulates a wide variety of events in adult bone marrow (BM), including quiescence of hematopoietic stem cells, via undefined mechanisms. Because megakaryocytes (MKs)/platelets are a rich source of TGF-β1, we assessed whether TGF-β1 might inhibit its own production by comparing mice with conditional inactivation of Tgfb1 in MKs (PF4Cre;Tgfb1flox/flox) and control mice. PF4Cre;Tgfb1flox/flox mice had ∼30% more MKs in BM and ∼15% more circulating platelets than control mice (P < .001). Thrombopoietin (TPO) levels in plasma and TPO expression in liver were approximately twofold higher in PF4Cre;Tgfb1flox/flox than in control mice (P < .01), whereas TPO expression in BM cells was similar between these mice. In BM cell culture, TPO treatment increased the number of MKs from wild-type mice by approximately threefold, which increased approximately twofold further in the presence of a TGF-β1-neutralizing antibody and increased the number of MKs from PF4Cre;Tgfb1flox/flox mice approximately fourfold. Our data reveal a new role for TGF-β1 produced by MKs/platelets in regulating its own production in BM via increased TPO production in the liver. Additional studies are required to determine the mechanism.
转化生长因子 β1(TGF-β1)通过未定义的机制调节成人骨髓(BM)中的各种事件,包括造血干细胞的静止。由于巨核细胞(MKs)/血小板是 TGF-β1 的丰富来源,我们通过比较 MKs 中 Tgfb1 条件性失活的小鼠(PF4Cre;Tgfb1flox/flox)和对照小鼠,评估了 TGF-β1 是否可能通过抑制自身产生。PF4Cre;Tgfb1flox/flox 小鼠的 BM 中 MKs 增加约 30%,循环血小板增加约 15%(P <.001)。PF4Cre;Tgfb1flox/flox 小鼠的血浆中血小板生成素(TPO)水平和肝中 TPO 表达约为对照小鼠的两倍(P <.01),而这些小鼠的 BM 细胞中 TPO 表达相似。在 BM 细胞培养中,TPO 处理使来自野生型小鼠的 MK 数量增加了约三倍,而在存在 TGF-β1 中和抗体的情况下,MK 数量增加了约两倍,来自 PF4Cre;Tgfb1flox/flox 小鼠的 MK 数量增加了约四倍。我们的数据揭示了 MKs/血小板产生的 TGF-β1 通过增加肝脏中的 TPO 产生来调节 BM 中自身产生的新作用。需要进一步的研究来确定该机制。