α(6)整合素新变体α (6p)的差异调控。

Tracy L Davis, Friederike Buerger, Anne E Cress
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引用次数: 0

摘要

我们之前报道过在多种人类上皮细胞系中存在M(r) 70,000形式的α(6)整合素,称为α (6p)。采用四种不同的实验条件考察α(6)和α (6p)整合素的调控作用。使用蛋白质翻译抑制剂(2.25微米嘌呤霉素)后,α(6)整合素的产生减少了45%,而α (6p)变体的产生不受影响。通过肌动蛋白解聚(10 microM cytochalasin D), α (6p)变异减少了60%,导致其表面表达减少,而α(6)整合素的产生不受影响。α (6p)变体对内糖苷酶H具有抗性,而α(6)整合素对内糖苷酶H既敏感又耐药,表明其保留在内质网中并通过高尔基体加工。此外,内糖苷酶F消化表明α (6p)和α(6)整合素都含有NH(2)连接的糖基化,并且在酶切过程中都将M(r)移动了大约10,000。最后,calyculin A (15 nM)或冈田酸(62微米)对丝氨酸/苏氨酸磷酸酶的抑制不影响α (6p),而α(6)整合素的产生减少了50%。这些数据表明,α (6p)变体的产生与α(6)整合素不同,可能涉及细胞表面的翻译后加工事件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Differential regulation of a novel variant of the alpha(6) integrin, alpha(6p).

We have reported previously the existence of an M(r) 70,000 form of the alpha(6) integrin called alpha(6p) in a variety of human epithelial cell lines. Four different experimental conditions were used to examine the regulation of alpha(6) and alpha(6p) integrin. The production of the alpha(6) integrin was decreased by 45% using a protein translation inhibitor (2.25 microM puromycin), whereas production of the alpha(6p) variant was unaffected. The alpha(6p) variant was decreased 60% by actin depolymerization (10 microM cytochalasin D) corresponding to a decrease in its surface expression, whereas alpha(6) integrin production was unaffected. The alpha(6p) variant was resistant to endoglycosidase H treatment, whereas the alpha(6) integrin was both sensitive and resistant to endoglycosidase H treatment, indicating retention in the endoplasmic reticulum and processing through the Golgi apparatus. Additionally, digestion by endoglycosidase F demonstrated both alpha(6p) and alpha(6) integrin contained NH(2)-linked glycosylations and both shifted M(r) approximately 10,000 on enzymatic digestion. Finally, inhibition of serine/threonine phosphatases by either calyculin A (15 nM) or okadaic acid (62 microM) did not affect alpha(6p), whereas the production of alpha(6) integrin was decreased by 50%. These data suggest that the production of the alpha(6p) variant is distinct from alpha(6) integrin and may involve a post-translational processing event at the cell surface.

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