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首页> 外文期刊>Journal de la Societe de biologie >Protein transduction, from technology to physiology
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Protein transduction, from technology to physiology

机译:从技术到生理的蛋白质转导

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摘要

In the early 90s, we found that the DNA-binding domain (homeodomain) of Antennapedia, a homeoprotein transcription factor, was internalized by live cells gaining access to their cytoplasm and nuclei. It was soon revealed that internalization is due to the third helix of the homeodomain, composed of sixteen amino acids. This short peptide baptized Penetratin is the first of a large series of transduction peptides widely used for the internalization of all sorts of cargoes in vitro and in vivo. Although transduction peptides are being developed with the latter practical goal, the most intriguing outcome of our initial observation is that full-length homeoproteins are transferred between cells and have non-cell autonomous transcriptional and translational activities. This new signaling mechanism requires that homeoproteins be internalized and secreted. Secretion is Golgi independent and requires a small sequence also present in the homeodomain but distinct from the Penetratin sequence. The consequences ofthis novel signaling mechanism are briefly discussed.
机译:在90年代初期,我们发现触角藻的DNA结合结构域(同源结构域)是一种同源蛋白转录因子,被活细胞内化,可以进入其细胞质和细胞核。很快发现内在化是由于同源域的第三个螺旋,由十六个氨基酸组成。这种短肽浸润的Penetratin是广泛用于体内外各种货物内在化的一系列转导肽中的第一个。尽管转导肽的开发是为了实现后者的实际目标,但我们最初观察到的最引人入胜的结果是全长同源蛋白在细胞之间转移,并具有非细胞自主的转录和翻译活性。这种新的信号传导机制要求同源蛋白被内化和分泌。分泌是高尔基体独立的,需要在同源域中也存在一个小序列,但与Penetratin序列不同。简要讨论了这种新型信号传导机制的后果。

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