首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Combined Extracellular Matrix Cross-linking Activity of the Peroxidase MLT-7 and the Dual Oxidase BLI-3 Is Critical for Post-embryonic Viability in Caenorhabditis elegans
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Combined Extracellular Matrix Cross-linking Activity of the Peroxidase MLT-7 and the Dual Oxidase BLI-3 Is Critical for Post-embryonic Viability in Caenorhabditis elegans

机译:过氧化物酶MLT-7和双重氧化酶BLI-3的结合的细胞外基质交联活性对于秀丽隐杆线虫的胚后生存能力至关重要

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摘要

The nematode cuticle is a protective collagenous extracellular matrix that is modified, cross-linked, and processed by a number of key enzymes. This Ecdysozoan-specific structure is synthesized repeatedly and allows growth and development in a linked degradative and biosynthetic process known as molting. A targeted RNA interference screen using a cuticle collagen marker has been employed to identify components of the cuticle biosynthetic pathway. We have characterized an essential peroxidase, MoLT-7 (MLT-7), that is responsible for proper cuticle molting and re-synthesis. MLT-7 is an active, inhibitable peroxidase that is expressed in the cuticle-synthesizing hypodermis coincident with each larval molt. mlt-7 mutants show a range of body morphology defects, most notably molt, dumpy, and early larval stage arrest phenotypes that can all be complemented with a wild type copy of mlt-7. The cuticles of these mutants lacks di-tyrosine cross-links, becomes permeable to dye and accessible to tyrosine iodination, and have aberrant collagen protein expression patterns. Overexpression of MLT-7 causes mutant phenotypes further supporting its proposed enzymatic role. In combination with BLI-3, an H2O2-generating NADPH dual oxidase, MLT-7 is essential for post-embryonic development. Disruption of mlt-7, and particularly bli-3, via RNA interference also causes dramatic changes to the in vivo cross-linking patterns of the cuticle collagens DPY-13 and COL-12. This points toward a functionally cooperative relationship for these two hypodermally expressed proteins that is essential for collagen cross-linking and proper extracellular matrix formation.
机译:线虫表皮是一种保护性胶原细胞外基质,可通过多种关键酶进行修饰,交联和加工。这种蜕皮动物特有的结构是反复合成的,并允许在称为蜕皮的链接降解和生物合成过程中生长和发育。使用表皮胶原标记物的靶向RNA干扰筛查已被用于鉴定表皮生物合成途径的成分。我们已经表征了一种必需的过氧化物酶MoLT-7(MLT-7),该酶负责适当的表皮蜕皮和重新合成。 MLT-7是一种活性,可抑制的过氧化物酶,在每个幼虫蜕皮的表皮合成皮下组织中表达。 mlt-7突变体显示出一系列的身体形态缺陷,最明显的是蜕皮,矮胖和幼虫早期停滞表型,这些缺陷都可以与mlt-7的野生型拷贝互补。这些突变体的表皮缺乏二酪氨酸交联,变得可渗透染料并且可被酪氨酸碘化,并且具有异常的胶原蛋白表达模式。 MLT-7的过表达导致突变表型,进一步支持其提议的酶作用。 MLT-7与产生H2O2的NADPH双氧化酶BLI-3结合,对胚胎后发育至关重要。通过RNA干扰破坏mlt-7,尤其是bli-3,也会导致表皮胶原DPY-13和COL-12的体内交联模式发生重大变化。这指出了这两种皮下表达的蛋白质的功能合作关系,这对于胶原蛋白交联和适当的细胞外基质形成至关重要。

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