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Fluorescently tagged laminin subunits facilitate analyses of the properties assembly and processing of laminins in live and fixed lung epithelial cells and keratinocytes

机译:荧光标记的层粘连蛋白亚基有助于分析活的和固定的肺上皮细胞和角质形成细胞中层粘连蛋白的特性组装和加工

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摘要

Recent analyses of collagen, elastin and fibronectin matrix assembly, organization and remodeling have been facilitated by the use of tagged proteins that can be visualized without the need for antibody labeling. Here, we report the generation of C-terminal tagged, full-length and “processed” (α3ΔLG4-5) human α3 as well as C-terminal tagged, full-length human β3 laminin subunits in adenoviral vectors. Human epidermal keratinocytes (HEKs) and human bronchial epithelial (BEP2D) cells, which assemble laminin-332-rich matrices, as well as primary rat lung alveolar type II (ATII) cells, which elaborate a fibrous network rich in laminin-311, were infected with adenovirus encoding the tagged human laminin subunits. In HEKs and BEP2D cells, tagged, full-length α3, α3ΔLG4-5 and β3 laminin subunits incorporate into arrays of matrix organized into patterns that are comparable to those observed when such cells are stained using laminin-332 subunit antibody probes. Moreover, HEKs and BEP2Ds move over these tagged, laminin-332-rich matrix arrays. We have also used the tagged β3 laminin subunit-containing matrices to demonstrate that assembled laminin-332 arrays influence laminin matrix secretion and/or assembly. In the case of rat ATII cells, although tagged α3 laminin subunits are not detected in the matrix of rat ATII cells infected with virus encoding full-length human α3 laminin protein, processed human α3 laminin subunits are incorporated into an extracellular fibrous array. We discuss how these novel laminin reagents can be used to study the organization, processing and assembly of laminin matrices and how they provide new insights into the potential functional importance of laminin fragments.
机译:胶原蛋白,弹性蛋白和纤连蛋白基质组装,组织和重塑的最新分析已通过使用无需抗体标记即可可视化的标记蛋白得以促进。在此,我们报告了腺病毒载体中C末端标记的全长和“加工”(α3ΔLG4-5)人α3以及C末端标记的全长人β3层粘连蛋白亚基的生成。人表皮角质形成细胞(HEKs)和人支气管上皮细胞(BEP2D)组装了富含层粘连蛋白332的基质,以及原代大鼠肺泡II型(ATII)细胞,它们合成了富含层粘连蛋白311的纤维网络。用编码标记的人层粘连蛋白亚基的腺病毒感染。在HEK和BEP2D细胞中,标记的全长α3,α3ΔLG4-5和β3层粘连蛋白亚基掺入矩阵阵列,这些阵列组织成与使用层粘连蛋白332亚基抗体探针染色的细胞可观察到的模式可比的阵列。此外,HEK和BEP2D在这些标记的富含层粘连蛋白332的矩阵阵列上移动。我们还使用了标记的含β3层粘连蛋白亚基的基质来证明组装的层粘连蛋白332阵列会影响层粘连蛋白的分泌和/或组装。就大鼠ATII细胞而言,尽管在用编码全长人α3层粘连蛋白的病毒感染的大鼠ATII细胞的基质中未检测到标记的α3层粘连蛋白亚基,但是将加工后的人α3层粘连蛋白亚基掺入细胞外纤维阵列中。我们讨论了如何将这些新型层粘连蛋白试剂用于研究层粘连蛋白基质的组织,加工和组装,以及它们如何为层粘连蛋白片段的潜在功能重要性提供新见解。

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