Nishizawa Y, Fukai F, Natori Y, Kato R, Tanuma S, Katayama T
Department of Patho-Physiology, Faculty of Pharmaceutical Sciences, Science University of Tokyo, Japan.
Apoptosis. 1998 Dec;3(6):407-12. doi: 10.1023/a:1009606502160.
We previously showed that in passive Heymann nephritis (PHN) rats, a large quantity of fibronectin (FN) fragments containing the central cell-binding (CCB) domain and adjacent domains are generated in the kidney and excreted into urine (Nishizawa et al., Biol Pharm Bull 1998; 21: 429-433). To ascertain whether the FN fragments could affect the progression of PHN, we investigated the effect of a 150 K FN fragment containing the CCB and carboxyl-terminal heparin-binding (Hep 2) domains on cultured rat mesangial cells. When rat mesangial cells cultured on FN-coated plates were exposed to the 150 K FN fragment, some mesangial cells detached from the FN substrate and then underwent apoptosis as judged by nuclear and DNA fragmentations. The 150 K FN fragment competitively inhibited the mesangial cell adhesion to the FN substrate in a dose-dependent manner. Furthermore, gelatinzymography of the conditioned medium of mesangial cells showed that the 150 K FN fragment induced and/or potentiated the extracellular matrix (ECM)-degrading proteinases including matrix metalloproteinases (MMPs) of mesangial cells. These results indicate that the 150 K FN fragment may elicit mesangial cell apoptosis by disrupting the mesangial cell adhesion through two distinct ways: the inhibition of mesangial cell adhesion and the ECM-degradation by the 150 K FN fragment-induced MMPs. Thus, FN fragments containing the CCB and adjacent domains generated in the kidneys of PHN rats may be involved in the evolution of the renal injury.
我们先前表明,在被动型Heymann肾炎(PHN)大鼠中,肾脏会产生大量含有中央细胞结合(CCB)结构域及相邻结构域的纤连蛋白(FN)片段,并排泄到尿液中(Nishizawa等人,《生物药物通报》1998年;21: 429 - 433)。为确定FN片段是否会影响PHN的进展,我们研究了含有CCB和羧基末端肝素结合(Hep 2)结构域的150K FN片段对培养的大鼠系膜细胞的影响。当在FN包被的平板上培养的大鼠系膜细胞暴露于150K FN片段时,一些系膜细胞从FN底物上脱离,然后通过核及DNA片段化判断发生凋亡。150K FN片段以剂量依赖的方式竞争性抑制系膜细胞对FN底物的黏附。此外,系膜细胞条件培养基的明胶酶谱分析表明,150K FN片段诱导和/或增强了系膜细胞的细胞外基质(ECM)降解蛋白酶,包括基质金属蛋白酶(MMPs)。这些结果表明,150K FN片段可能通过两种不同方式破坏系膜细胞黏附从而引发系膜细胞凋亡:抑制系膜细胞黏附以及150K FN片段诱导的MMPs对ECM的降解。因此,PHN大鼠肾脏中产生的含有CCB和相邻结构域的FN片段可能参与了肾损伤的进展。