Lerner Research Institute, Cleveland Clinic Foundation, Cleveland, OH, USA.
Blood. 2010 Dec 16;116(25):5698-706. doi: 10.1182/blood-2010-04-278325. Epub 2010 Sep 3.
The LMAN1-MCFD2 (lectin, mannose binding 1/multiple coagulation factor deficiency protein 2) cargo receptor complex transports coagulation factors V (FV) and VIII (FVIII) from the endoplasmic reticulum (ER) to the ER-Golgi intermediate compartment (ERGIC). LMAN1 (ERGIC-53) is a hexameric transmembrane protein with a carbohydrate recognition domain (CRD) on the ER luminal side. Here, we show that mutations in the first beta sheet of the CRD abolish MCFD2 binding without affecting the mannose binding, suggesting that LMAN1 interacts with MCFD2 through its N-terminal beta sheet, consistent with recently reported crystal structures of the CRD-MCFD2 complex. Mutations in the Ca(2+)- and sugar-binding sites of the CRD disrupt FV and FVIII interactions, without affecting MCFD2 binding. This interaction is independent of MCFD2, as LMAN1 mutants defective in MCFD2 binding can still interact with FVIII. Thus, the CRD of LMAN1 contains distinct, separable binding sites for both its partner protein (MCFD2) and the cargo proteins (FV/FVIII). Monomeric LMAN1 mutants are defective in ER exit and unable to interact with MCFD2, suggesting that the oligomerization of LMAN1 is necessary for its cargo receptor function. These results point to a central role of LMAN1 in regulating the binding in the ER and the subsequent release in the ERGIC of FV and FVIII.
LMAN1-MCFD2(凝集素,甘露糖结合 1/多种凝血因子缺乏蛋白 2)货物受体复合物将凝血因子 V(FV)和 VIII(FVIII)从内质网(ER)转运至 ER-Golgi 中间隔室(ERGIC)。LMAN1(ERGIC-53)是一种六聚体跨膜蛋白,其在 ER 腔侧具有碳水化合物识别结构域(CRD)。在这里,我们表明 CRD 中第一个β片层的突变会破坏 MCFD2 的结合,而不影响甘露糖结合,这表明 LMAN1 通过其 N 端β片层与 MCFD2 相互作用,与最近报道的 CRD-MCFD2 复合物晶体结构一致。CRD 中 Ca(2+)和糖结合位点的突变破坏了 FV 和 FVIII 的相互作用,而不影响 MCFD2 的结合。这种相互作用不依赖于 MCFD2,因为在 MCFD2 结合缺陷的 LMAN1 突变体中仍然可以与 FVIII 相互作用。因此,LMAN1 的 CRD 包含其伴侣蛋白(MCFD2)和货物蛋白(FV/FVIII)的独特、可分离的结合位点。单体 LMAN1 突变体在 ER 出口处有缺陷,无法与 MCFD2 相互作用,这表明 LMAN1 的寡聚化对于其货物受体功能是必需的。这些结果表明 LMAN1 在调节 ER 中的结合以及随后在 ERGIC 中释放 FV 和 FVIII 方面起着核心作用。