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赖氨酸 K117 和 K147 在从果蝇到哺乳动物的 Ras 激活中发挥保守作用。

Lysines K117 and K147 play conserved roles in Ras activation from Drosophila to mammals.

机构信息

Department of Oncological Sciences, The Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.

The Tisch Cancer Institute, The Icahn School of Medicine at Mount Sinai, New York, NY 10029, USA.

出版信息

G3 (Bethesda). 2023 Nov 1;13(11). doi: 10.1093/g3journal/jkad201.

Abstract

Ras signaling plays an important role in growth, proliferation, and developmental patterning. Maintaining appropriate levels of Ras signaling is important to establish patterning in development and to prevent diseases such as cancer in mature organisms. The Ras protein is represented by Ras85D in Drosophila and by HRas, NRas, and KRas in mammals. In the past dozen years, multiple reports have characterized both inhibitory and activating ubiquitination events regulating Ras proteins. Inhibitory Ras ubiquitination mediated by Rabex-5 or Lztr1 is highly conserved between flies and mammals. Activating ubiquitination events at K117 and K147 have been reported in mammalian HRas, NRas, and KRas, but it is unclear if these activating roles of K117 and K147 are conserved in flies. Addressing a potential conserved role for these lysines in Drosophila Ras activation requires phenotypes strong enough to assess suppression. Therefore, we utilized oncogenic Ras, RasG12V, which biases Ras to the GTP-loaded active conformation. We created double mutants RasG12V,K117R and RasG12V,K147R and triple mutant RasG12V,K117R,K147R to prevent lysine-specific post-translational modification of K117, K147, or both, respectively. We compared their phenotypes to RasG12V in the wing to reveal the roles of these lysines. Although RasG12V,K147R did not show compelling or quantifiable differences from RasG12V, RasG12V,K117R showed visible and quantifiable suppression compared to RasG12V, and triple mutant RasG12V,K117R,K147R showed dramatic suppression compared to RasG12V and increased suppression compared to RasG12V,K117R. These data are consistent with highly conserved roles for K117 and K147 in Ras activation from flies to mammals.

摘要

Ras 信号在生长、增殖和发育模式中起着重要作用。维持适当水平的 Ras 信号对于在发育过程中建立模式以及预防成熟生物体中的癌症等疾病非常重要。 Ras 蛋白在果蝇中由 Ras85D 代表,在哺乳动物中由 HRas、NRas 和 KRas 代表。在过去的十几年中,多项研究已经描述了调节 Ras 蛋白的抑制性和激活性泛素化事件。 Rabex-5 或 Lztr1 介导的 Ras 抑制性泛素化在果蝇和哺乳动物中高度保守。在哺乳动物的 HRas、NRas 和 KRas 中已经报道了 K117 和 K147 的激活泛素化事件,但尚不清楚这些 K117 和 K147 的激活作用在果蝇中是否保守。要确定这些赖氨酸在果蝇 Ras 激活中的潜在保守作用,需要足够强的表型来评估抑制作用。因此,我们利用致癌性 Ras(RasG12V),它使 Ras 偏向于 GTP 加载的活性构象。我们创建了 RasG12V、K117R 和 RasG12V、K147R 双突变体以及 RasG12V、K117R、K147R 三突变体,分别防止 K117、K147 或两者的赖氨酸特异性翻译后修饰。我们将它们的表型与 RasG12V 在翅膀中的表型进行比较,以揭示这些赖氨酸的作用。尽管 RasG12V、K147R 与 RasG12V 相比没有表现出引人注目的或可量化的差异,但 RasG12V、K117R 与 RasG12V 相比表现出明显的和可量化的抑制作用,而 RasG12V、K117R、K147R 三突变体与 RasG12V 和 RasG12V、K117R 相比表现出显著的抑制作用。这些数据与 K117 和 K147 在从果蝇到哺乳动物的 Ras 激活中高度保守的作用一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e16/10627255/739d0f96d02f/jkad201f1.jpg

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