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Alternative splicing of CCN mRNAs …. it has been upon us

机译:CCN mRNA的可变剪接…。它一直在我们身上

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摘要

Variant CCN proteins have been identified over the past decade in several normal and pathological situations. The production of CCN truncated proteins have been reported in the case of CCN2(ctgf), CCN3(nov), CCN4(wisp-1) and CCN6(wisp-3). Furthermore, the natural CCN5 is known to miss the C-terminal domain that is present in all other members of the CCN family of proteins. In spite of compelling evidence that assign important biological activities to these truncated CCN variants, their potential regulatory functions have only recently begun to be widely accepted. The report of CCN1(cyr61) intron 3 retention in breast cancer cells now confirms that, in addition to well documented post-translational processing of full length CCN proteins, alternative splicing is to be regarded as another effective way to generate CCN variants. These observations add to a previous bulk of evidence that support the existence of alternative splicing for other CCN genes. It has become clearly evident that we need to recognize these mechanisms as a means to increase the biological diversity of CCN proteins.
机译:在过去的十年中,已经在几种正常和病理情况下发现了变异的CCN蛋白。在CCN2(ctgf),CCN3(nov),CCN4(wisp-1)和CCN6(wisp-3)的情况下,已经报道了CCN截短蛋白的产生。此外,已知天然CCN5会缺失存在于CCN蛋白家族的所有其他成员中的C末端结构域。尽管有令人信服的证据表明这些截短的CCN变体具有重要的生物学活性,但其潜在的调控功能直到最近才开始被广泛接受。 CCN1(cyr61)内含子3在乳腺癌细胞中保留的报告现在证实,除了充分记录的全长CCN蛋白的翻译后加工外,替代剪接被认为是生成CCN变体的另一种有效方法。这些发现增加了以前的大量证据,这些证据支持其他CCN基因的选择性剪接的存在。显然,我们需要认识到这些机制作为增加CCN蛋白生物学多样性的一种手段。

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