BioImaging Unit, Cardiff School of Biosciences, University of Cardiff, Cardiff, UK.
Histochem Cell Biol. 2011 Oct;136(4):437-54. doi: 10.1007/s00418-011-0854-7. Epub 2011 Aug 28.
We have colocalized elastin and fibrillin-1 with perlecan in extracellular matrix of tensional and weight-bearing connective tissues. Elastin and fibrillin-1 were identified as prominent components of paraspinal blood vessels, and posterior longitudinal ligament in the human fetal spine and outer annulus fibrosus of the fetal intervertebral disc. We also colocalized perlecan with a synovial elastic basal lamina, where the attached synovial cells were observed to produce perlecan. Elastin, fibrillin-1 and perlecan were co-localized in the intima and media of small blood vessels in the synovium and in human fetal paraspinal blood vessels. Elastic fibers were observed at the insertion point of the anterior cruciate ligament to bone in the ovine stifle joint where they colocalized with perlecan. Elastin has not previously been reported to be spatially associated with perlecan in these tissues. Interactions between the tropoelastin and perlecan heparan sulfate chains were demonstrated using quartz crystal microbalance with dissipation solid phase binding studies. Electrostatic interactions through the heparan sulfate chains of perlecan and core protein mediated the interactions with tropoelastin, and were both important in the coacervation of tropoelastin and deposition of elastin onto perlecan immobilized on the chip surface. This may help us to understand the interactions which are expected to occur in vivo between the tropoelastin and perlecan to facilitate the deposition of elastin and formation of elastic microfibrils in situ and would be consistent with the observed distributions of these components in a number of connective tissues.
我们已经在张力和承重结缔组织的细胞外基质中发现了弹性蛋白和原纤维-1 与多配体聚糖-1 的共定位。在人类胎儿脊柱的脊柱旁血管和后纵韧带以及胎儿椎间盘的外纤维环中,弹性蛋白和原纤维-1 被鉴定为主要成分。我们还发现多配体聚糖-1 与滑膜弹性基膜共定位,附着的滑膜细胞被观察到产生多配体聚糖-1。弹性蛋白、原纤维-1 和多配体聚糖-1 共定位在滑膜中小血管的内膜和中膜以及人胎儿脊柱旁血管中。在绵羊膝关节前交叉韧带到骨的插入点观察到弹性纤维,它们与多配体聚糖-1 共定位。以前在这些组织中没有报道过弹性蛋白与多配体聚糖-1 在空间上的关联。使用石英晶体微天平与耗散固相结合研究,证明了原弹性蛋白与多配体聚糖-1 肝素硫酸盐链之间的相互作用。多配体聚糖-1 的肝素硫酸盐链和核心蛋白通过静电相互作用介导与原弹性蛋白的相互作用,这两者在原弹性蛋白的凝聚和弹性蛋白沉积到固定在芯片表面的多配体聚糖-1 上都很重要。这有助于我们理解原弹性蛋白和多配体聚糖-1 之间在体内预期发生的相互作用,以促进弹性蛋白的沉积和弹性微纤维的原位形成,并与这些成分在许多结缔组织中的观察到的分布一致。