Starcher Barry, d'Azzo Alessandra, Keller Patrick W, Rao Gottipati K, Nadarajah Deepa, Hinek Alexsander
Deptartment of Biochemistry, University of Texas Health Science Center at Tyler, Tyler, TX 75708, USA.
Am J Physiol Lung Cell Mol Physiol. 2008 Oct;295(4):L637-47. doi: 10.1152/ajplung.90346.2008. Epub 2008 Aug 8.
The assembly of elastic fibers in tissues that undergo repeated cycles of extension and recoil, such as the lungs and blood vessels, is dependent on the proper interaction and alignment of tropoelastin with a microfibrillar scaffold. Here, we describe in vivo histopathological effects of neuraminidase-1 (Neu1) deficiency on elastin assembly in the lungs and aorta of mice. These mice exhibited a tight-skin phenotype very similar to the Tsk mouse. Normal septation of Neu1-null mice did not occur in neonatal mice, resulting in enlarged alveoli that were maintained in adults. The abnormal development of elastic fibers was remarkable under electron microscopy and confirmed by the overlapping distribution of elastin, fibrillin-1, fibrillin-2, and fibulin-5 (Fib-5) by the light microscopy immunostainings. Fib-5 fibers appeared diffuse and unorganized around the alveolar walls and the apex of developing secondary septal crests. Fibrillin-2 deposition was also abnormal in neonatal and adult lungs. Dispersion of myofibroblasts appeared abnormal in developing lungs of Neu1-null mice, with a random distribution of myofibroblast around the alveolar walls, rather than concentrating at sites of elastin synthesis. The elastic lamellae in the aorta of the Neu1-null mice were thinner and separated by hypertrophic smooth muscle cells that were surrounded by an excess of the sialic acid-containing moieties. The concentration of elastin, as measure by desmosine levels, was significantly reduced in the aorta of Neu1-null mice. Message levels for tropoelastin and Fib-5 were normal, suggesting the elastic fiber defects in Neu1-null mice result from impaired extracellular assembly.
在经历反复伸展和回缩循环的组织(如肺和血管)中,弹性纤维的组装依赖于原弹性蛋白与微原纤维支架的正确相互作用和排列。在此,我们描述了神经氨酸酶-1(Neu1)缺乏对小鼠肺和主动脉中弹性蛋白组装的体内组织病理学影响。这些小鼠表现出与Tsk小鼠非常相似的紧肤表型。Neu1基因敲除小鼠在新生小鼠中未出现正常的间隔,导致肺泡扩大并在成年期维持。在电子显微镜下,弹性纤维的异常发育很明显,并通过光学显微镜免疫染色证实弹性蛋白、原纤蛋白-1、原纤蛋白-2和纤连蛋白-5(Fib-5)的重叠分布。Fib-5纤维在肺泡壁和发育中的次级间隔嵴顶端周围显得弥散且无序。原纤蛋白-2在新生和成年肺中的沉积也异常。在Neu1基因敲除小鼠发育中的肺中,肌成纤维细胞的分散似乎异常,肌成纤维细胞在肺泡壁周围随机分布,而不是集中在弹性蛋白合成部位。Neu1基因敲除小鼠主动脉中的弹性膜较薄,被肥大的平滑肌细胞分隔,这些平滑肌细胞被过量的含唾液酸部分包围。通过锁链素水平测量,Neu1基因敲除小鼠主动脉中弹性蛋白的浓度显著降低。原弹性蛋白和Fib-5的信使水平正常,表明Neu1基因敲除小鼠的弹性纤维缺陷是由细胞外组装受损导致的。