Institute of Zoology, Cell and Matrix Biology, Johannes Gutenberg-University, Mainz, Germany.
PLoS One. 2010 Jan 21;5(1):e8835. doi: 10.1371/journal.pone.0008835.
Meprin metalloproteases are thought to be involved in basic physiological functions such as cell proliferation and tissue differentiation. However, the specific functions of these enzymes are still ambiguous, although a variety of growth factors and structural proteins have been identified as meprin substrates. The discovery of meprins alpha(1), alpha(2) and beta in teleost fish provided the basis for uncovering their physiological functions by gene silencing in vivo.
METHODOLOGY/PRINCIPAL FINDINGS: A Morpholino knockdown in zebrafish embryos targeting meprin alpha(1) and beta mRNA caused defects in general tissue differentiation. But meprin alpha(2) morphants were affected more specifically and showed severe failures in the formation of the vascular system provoking the hypothesis of a pro-angiogenic effect. The blood circulation was largely diminished resulting in erythrocyte accumulation. These phenotypes mimic a previously described VEGF-A morphant, revealing a possible role of meprin alpha in VEGF-A activation. Indeed, human recombinant meprin alpha processed the vascular endothelial growth factor-A (VEGF-A) specifically, revealing the same cleavage products detectable for VEGF from zebrafish whole lysate.
CONCLUSIONS/SIGNIFICANCE: Our results demonstrate that meprin metalloproteases are important for cell differentiation and proliferation already during embryogenesis, predominantly by the activation of growth factors. Thus, we conclude that meprins play a significant role in VEGF-A processing, subsequently regulating angiogenesis. Therefore, meprin alpha might be a new therapeutic target in cardiovascular diseases or in tumor growth inhibition.
金属蛋白酶 meprin 被认为参与细胞增殖和组织分化等基本生理功能。然而,尽管已经鉴定出多种生长因子和结构蛋白是 meprin 的底物,但这些酶的具体功能仍不清楚。在硬骨鱼中发现的 meprin α(1)、α(2)和β为通过体内基因沉默揭示其生理功能提供了基础。
方法/主要发现:针对斑马鱼胚胎 meprin α(1)和β mRNA 的 Morpholino 敲低导致组织分化普遍缺陷。但是,meprin α(2)的形态发生缺陷更为特异,血管系统的形成严重失败,引发了促血管生成效应的假说。血液循环大大减少,导致红细胞积累。这些表型类似于先前描述的 VEGF-A 形态发生缺陷,揭示了 meprin α 在 VEGF-A 激活中的可能作用。事实上,人重组 meprin α 特异性处理血管内皮生长因子-A(VEGF-A),揭示了来自斑马鱼全裂解物的 VEGF 的相同切割产物。
结论/意义:我们的结果表明,金属蛋白酶 meprin 在胚胎发生过程中对细胞分化和增殖非常重要,主要通过生长因子的激活。因此,我们得出结论,meprin 在 VEGF-A 加工中起重要作用,随后调节血管生成。因此,meprin α 可能是心血管疾病或肿瘤生长抑制的新治疗靶点。