首页> 美国卫生研究院文献>Eukaryotic Cell >Secretion of Polypeptide Crystals from Tetrahymena thermophila Secretory Organelles (Mucocysts) Depends on Processing by a Cysteine Cathepsin Cth4p
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Secretion of Polypeptide Crystals from Tetrahymena thermophila Secretory Organelles (Mucocysts) Depends on Processing by a Cysteine Cathepsin Cth4p

机译:从嗜热四膜菌分泌细胞器(微囊)分泌多肽晶体取决于半胱氨酸组织蛋白酶Cth4p的加工过程。

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摘要

In many organisms, sophisticated mechanisms facilitate release of peptides in response to extracellular stimuli. In the ciliate Tetrahymena thermophila, efficient peptide secretion depends on specialized vesicles called mucocysts that contain dense crystalline cores that expand rapidly during exocytosis. Core assembly depends of endoproteolytic cleavage of mucocyst proproteins by an aspartyl protease, cathepsin 3 (CTH3). Here, we show that a second enzyme identified by expression profiling, Cth4p, is also required for processing of proGrl proteins and for assembly of functional mucocysts. Cth4p is a cysteine cathepsin that localizes partially to endolysosomal structures and appears to act downstream of, and may be activated by, Cth3p. Disruption of CTH4 results in cells (Δcth4) that show aberrant trimming of Grl proproteins, as well as grossly aberrant mucocyst exocytosis. Surprisingly, Δcth4 cells succeed in assembling crystalline mucocyst cores. However, those cores do not undergo normal directional expansion during exocytosis, and they thus fail to efficiently extrude from the cells. We could phenocopy the Δcth4 defects by mutating conserved catalytic residues, indicating that the in vivo function of Cth4p is enzymatic. Our results indicate that as for canonical proteins packaged in animal secretory granules, the maturation of mucocyst proproteins involves sequential processing steps. The Δcth4 defects uncouple, in an unanticipated way, the assembly of mucocyst cores and their subsequent expansion and thereby reveal a previously unsuspected aspect of polypeptide secretion in ciliates.
机译:在许多生物中,复杂的机制有助于响应细胞外刺激释放肽。在纤毛的四膜虫热菌中,有效的肽分泌依赖于称为粘液囊的特殊囊泡,囊泡中含有密集的晶体核心,在胞吐过程中会迅速膨胀。核心组装取决于天冬氨酰蛋白酶组织蛋白酶3(CTH3)对黏液囊原蛋白的内蛋白水解切割。在这里,我们表明,通过表达谱鉴定的第二种酶Cth4p,对于proGrl蛋白的加工和功能性粘液囊的组装也是必需的。 Cth4p是半胱氨酸组织蛋白酶,部分位于溶酶体结构中,似乎在Cth3p的下游起作用,并可能被Cth3p激活。 CTH4的破坏导致细胞(Δcth4)表现出Grl前蛋白的异常修剪,以及粘液囊泡的胞外分泌异常。令人惊讶的是,Δcth4细胞成功组装了晶体粘液囊核心。然而,这些核心在胞吐过程中没有经历正常的方向性膨胀,因此它们不能有效地从细胞中挤出。我们可以通过突变保守的催化残基来表型化Δcth4缺陷,表明Cth4p的体内功能是酶促的。我们的结果表明,对于包装在动物分泌颗粒中的规范蛋白,粘液囊原蛋白的成熟涉及顺序的加工步骤。 Δcth4缺陷以未曾预料的方式解开了粘液囊核心的组装及其随后的扩展,从而揭示了纤毛中多肽分泌的先前未曾预料到的方面。

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