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A Critical Phenylalanine Residue in the Respiratory Syncytial Virus Fusion Protein Cytoplasmic Tail Mediates Assembly of Internal Viral Proteins into Viral Filaments and Particles

机译:呼吸道合胞病毒融合蛋白细胞质尾中的关键苯丙氨酸残基介导内部病毒蛋白组装成病毒丝和颗粒。

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摘要

Respiratory syncytial virus (RSV) is a single-stranded RNA virus in the Paramyxoviridae family that assembles into filamentous structures at the apical surface of polarized epithelial cells. These filaments contain viral genomic RNA and structural proteins, including the fusion (F) protein, matrix (M) protein, nucleoprotein (N), and phosphoprotein (P), while excluding F-actin. It is known that the F protein cytoplasmic tail (FCT) is necessary for filament formation, but the mechanism by which the FCT mediates assembly into filaments is not clear. We hypothesized that the FCT is necessary for interactions with other viral proteins in order to form filaments. In order to test this idea, we expressed the F protein with cytoplasmic tail (CT) truncations or specific point mutations and determined the abilities of these variant F proteins to form filaments independent of viral infection when coexpressed with M, N, and P. Deletion of the terminal three FCT residues (amino acids Phe-Ser-Asn) or mutation of the Phe residue resulted in a loss of filament formation but did not affect F-protein expression or trafficking to the cell surface. Filament formation could be restored by addition of residues Phe-Ser-Asn to an FCT deletion mutant and was unaffected by mutations to Ser or Asn residues. Second, deletion of residues Phe-Ser-Asn or mutation of the Phe residue resulted in a loss of M, N, and P incorporation into virus-like particles. These data suggest that a C-terminal Phe residue in the FCT mediates assembly through incorporation of internal virion proteins into virus filaments at the cell surface.
机译:呼吸道合胞病毒(RSV)是副粘病毒科中的单链RNA病毒,在极化上皮细胞的顶端表面组装成丝状结构。这些细丝包含病毒基因组RNA和结构蛋白,包括融合蛋白(F),基质蛋白(M),核蛋白(N)和磷蛋白(P),但不包括F-肌动蛋白。众所周知,F蛋白胞质尾(FCT)对于细丝形成是必需的,但是FCT介导组装成细丝的机制尚不清楚。我们假设FCT是与其他病毒蛋白相互作用以形成细丝所必需的。为了测试该想法,我们用细胞质尾(CT)截短或特定点突变表达了F蛋白,并确定了这些变异F蛋白与M,N和P共表达时形成独立于病毒感染的细丝的能力。末端三个FCT残基(氨基酸Phe-Ser-Asn)的突变或Phe残基的突变导致细丝形成损失,但不影响F蛋白表达或运输到细胞表面。通过向FCT缺失突变体添加残基Phe-Ser-Asn可以恢复长丝形成,并且不受Ser或Asn残基突变的影响。其次,残基Phe-Ser-Asn的缺失或Phe残基的突变导致M,N和P掺入病毒样颗粒的损失。这些数据表明,FCT中的C端Phe残基通过将内部病毒体蛋白掺入细胞表面的病毒丝中来介导装配。

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