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Cooperative Cleavage of the R Peptide in the Env Trimer of Moloney Murine Leukemia Virus Facilitates Its Maturation for Fusion Competence▿

机译:莫洛尼鼠白血病病毒env三聚体中R肽的协同切割促进融合能力的成熟▿

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摘要

The spike protein of murine leukemia virus, MLV, is made as a trimer of the Env precursor. This is primed for receptor-induced activation of its membrane fusion function first by cellular furin cleavage in the ectodomain and then by viral protease cleavage in the endodomain. The first cleavage separates the peripheral surface (SU) subunit from the transmembrane (TM) subunit, and the latter releases a 16-residue-long peptide (R) from the TM endodomain. Here, we have studied the distribution of R peptide cleavages in the spike TM subunits of Moloney MLV preparations with partially R-peptide-processed spikes. The spikes were solubilized as trimers and separated with an R peptide antibody. This showed that the spikes were either uncleaved or cleaved in all of its TM subunits. Further studies showed that R peptide cleavage-inhibited Env mutants, L649V and L649I, were rescued by wild-type (wt) Env in heterotrimeric spikes. These findings suggested that the R peptide cleavages in the spike are facilitated through positive allosteric cooperativity; i.e., the cleavage of the TM subunit in one Env promoted the cleavages of the TMs in the other Envs. The mechanism ensures that protease cleavage in newly released virus will generate R-peptide-cleaved homotrimers rather than heterotrimeric intermediates. However, using a cleavage site Env mutant, L649R, which was not rescued by wt Env, it was possible to produce virus with heterotrimers. These were shown to be less fusion active than the R-peptide-cleaved homotrimers. Therefore, the cooperative cleavage will speed up the maturation of released virus for fusion competence.
机译:鼠白血病病毒MLV的刺突蛋白是Env前体的三聚体。首先通过胞外域中的细胞弗林蛋白酶裂解,然后通过内域中的病毒蛋白酶裂解,为受体诱导的膜融合功能激活做好准备。第一次切割将外周表面(SU)亚基与跨膜(TM)亚基分开,后者从TM内结构域释放16个残基长的肽(R)。在这里,我们研究了具有部分R肽处理的穗的莫洛尼MLV制剂的穗TM亚基中R肽裂解的分布。将加标溶解为三聚体并用R肽抗体分离。这表明刺突在其所有TM亚基中都未被切割或被切割。进一步的研究表明,R肽裂解抑制的Env突变体L649V和L649I通过野生型(wt)Env在异源三聚体突峰中得以拯救。这些发现表明,正构构协作性促进了尖峰中R肽的裂解。即,一个Env中TM亚单位的裂解促进了另一Env中TMs的裂解。该机制确保新释放的病毒中的蛋白酶裂解将产生R肽裂解的同型三聚体,而不是异源三聚体中间体。然而,使用未被wt Env拯救的切割位点Env突变体L649R,可以用异源三聚体产生病毒。与R-肽切割的同三聚体相比,它们的融合活性弱。因此,协同切割将加速释放的病毒的融合能力。

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