Infection & Inflammation, UMR 1173, Inserm, UVSQ, Université Paris Saclay, 2 avenue de la Source de la Bièvre, Montigny-le-Bretonneux, 78180, France.
Laboratoire d'Excellence Inflamex, Université Paris Cité, Paris, France.
Arthritis Res Ther. 2024 Jul 15;26(1):131. doi: 10.1186/s13075-024-03370-1.
Association of HLA-B27 with spondyloarthritis (SpA) has been known for 50 years, but still remains unexplained. We recently showed that HLA-B27 expressed in wing imaginal disc from HLA-B27/human-β2 microglobulin (hβ2m) transgenic Drosophila deregulated bone morphogenetic protein (BMP) pathway by interacting physically with type I BMP receptor (BMPR1) Saxophone (Sax), leading to crossveinless phenotype.
Genetic interaction was studied between activin/transforming growth factor β (TGFβ) pathway and HLA-B27/hβ2m in transgenic Drosophila wings. The HLA-B27-bound peptidome was characterized in wing imaginal discs. In mesenteric lymph node (mLN) T cells from HLA-B27/hβ2m rat (B27 rat), physical interaction between HLA-B27 and activin receptor-like kinase-2 (ALK2), ALK3 and ALK5 BMPR1s, phosphorylation of small mothers against decapentaplegic (SMADs) and proteins of the non-canonical BMP/TGFβ pathways induced by its ligands, and the transcript level of target genes of the TGFβ pathway, were evaluated.
In HLA-B27/hβ2m transgenic Drosophila, inappropriate signalling through the activin/TGFβ pathway, involving Baboon (Babo), the type I activin/TGFβ receptor, contributed to the crossveinless phenotype, in addition to deregulated BMP pathway. We identified peptides bound to HLA-B27 with the canonical binding motif in HLA-B27/hβ2m transgenic Drosophila wing imaginal disc. We demonstrated specific physical interaction, between HLA-B27/hβ2m and mammalian orthologs of Sax and Babo, i.e. ALK2 and ALK5 (i.e. TGFβ receptor I), in the mLN cells from B27 rat. The magnitude of phosphorylation of SMAD2/3 in response to TGFβ1 was increased in T cells from B27 rats, showing evidence for deregulated TGFβ pathway. Accordingly, expression of several target genes of the pathway was increased in T cells from B27 rats, in basal conditions and/or after TGFβ exposure, including Foxp3, Rorc, Runx1 and Maf. Interestingly, Tgfb1 expression was reduced in naive T cells from B27 rats, even premorbid, an observation consistent with a pro-inflammatory pattern.
This study shows that HLA-B27 alters the TGFβ pathways in Drosophila and B27 rat. Given the importance of this pathway in CD4 + T cells differentiation and regulation, its disturbance could contribute to the abnormal expansion of pro-inflammatory T helper 17 cells and altered regulatory T cell phenotype observed in B27 rats.
HLA-B27 与脊柱关节炎(SpA)的关联已为人所知 50 年,但仍未得到解释。我们最近表明,在 HLA-B27/人β2 微球蛋白(hβ2m)转基因果蝇的翅 imaginal 盘中表达的 HLA-B27 通过与 I 型骨形态发生蛋白受体(BMPR1)Saxophone(Sax)物理相互作用,扰乱骨形态发生蛋白(BMP)途径,导致无横脉表型。
研究了转基因果蝇翅膀中激活素/转化生长因子β(TGFβ)途径与 HLA-B27/hβ2m 之间的遗传相互作用。在 wing imaginal discs 中对 HLA-B27 结合肽组进行了表征。在 HLA-B27/hβ2m 大鼠(B27 大鼠)的肠系膜淋巴结(mLN)T 细胞中,评估了 HLA-B27 与激活素受体样激酶-2(ALK2)、ALK3 和 ALK5 BMPR1s 之间的物理相互作用、其配体诱导的小母体对抗 decapentaplegic(SMADs)和非经典 BMP/TGFβ 途径的蛋白的磷酸化以及 TGFβ 途径的靶基因的转录水平。
在 HLA-B27/hβ2m 转基因果蝇中,通过激活素/TGFβ 途径的异常信号转导,涉及 Baboon(Babo),即 I 型激活素/TGFβ 受体,除了 BMP 途径失调外,还导致了无横脉表型。我们在 HLA-B27/hβ2m 转基因果蝇的 wing imaginal disc 中鉴定到与 HLA-B27 结合的具有经典结合基序的肽。我们证明了 HLA-B27/hβ2m 与哺乳动物 Sax 和 Babo 同源物(即 TGFβ 受体 I)ALK2 和 ALK5 之间的特异性物理相互作用,在 B27 大鼠的 mLN 细胞中。TGFβ1 刺激后 SMAD2/3 的磷酸化程度在 B27 大鼠的 T 细胞中增加,表明 TGFβ 途径失调。相应地,B27 大鼠 T 细胞中该途径的几个靶基因的表达增加,包括 Foxp3、Rorc、Runx1 和 Maf,无论是在基础条件下还是在 TGFβ 暴露后。有趣的是,即使在发病前,B27 大鼠的幼稚 T 细胞中 Tgfb1 的表达也减少,这一观察结果与促炎模式一致。
本研究表明,HLA-B27 改变了果蝇和 B27 大鼠中的 TGFβ 途径。鉴于该途径在 CD4+T 细胞分化和调节中的重要性,其紊乱可能导致 B27 大鼠中异常扩增的促炎辅助性 17 细胞和改变的调节性 T 细胞表型。