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E3 连接酶 SMURF1 通过 UbcH7 催化的 K29 连接泛素链稳定 p27,从而促进细胞迁移 SMURF1-UbcH7 K29 泛素化 p27 和细胞迁移。

The E3 ligase SMURF1 stabilizes p27 via UbcH7 catalyzed K29-linked ubiquitin chains to promote cell migration SMURF1-UbcH7 K29 ubiquitination of p27 and cell migration.

机构信息

Laboratory for Nutrition and Vision Research Human Nutrition Research Center on Aging Tufts University.

Laboratory for Nutrition and Vision Research Human Nutrition Research Center on Aging Tufts University.

出版信息

J Biol Chem. 2024 Mar;300(3):105693. doi: 10.1016/j.jbc.2024.105693. Epub 2024 Feb 1.

Abstract

Ubiquitination is a key regulator of protein stability and function. The multifunctional protein p27 is known to be degraded by the proteasome following K48-linked ubiquitination. However, we recently reported that when the ubiquitin-conjugating enzyme UbcH7 (UBE2L3) is overexpressed, p27 is stabilized, and cell cycle is arrested in multiple diverse cell types including eye lens, retina, HEK-293, and HELA cells. However, the ubiquitin ligase associated with this stabilization of p27 remained a mystery. Starting with an in vitro ubiquitination screen, we identified RSP5 as the yeast E3 ligase partner of UbcH7 in the ubiquitination of p27. Screening of the homologous human NEDD4 family of E3 ligases revealed that SMURF1 but not its close homolog SMURF2, stabilizes p27 in cells. We found that SMURF1 ubiquitinates p27 with K29O but not K29R or K63O ubiquitin in vitro, demonstrating a strong preference for K29 chain formation. Consistent with SMURF1/UbcH7 stabilization of p27, we also found that SMURF1, UbcH7, and p27 promote cell migration, whereas knockdown of SMURF1 or UbcH7 reduces cell migration. We further demonstrated the colocalization of SMURF1/p27 and UbcH7/p27 at the leading edge of migrating cells. In sum, these results indicate that SMURF1 and UbcH7 work together to produce K29-linked ubiquitin chains on p27, resulting in the stabilization of p27 and promoting its cell-cycle independent function of regulating cell migration.

摘要

泛素化是蛋白质稳定性和功能的关键调节因子。多功能蛋白 p27 已知在 K48 连接的泛素化后被蛋白酶体降解。然而,我们最近报道称,当泛素结合酶 UbcH7(UBE2L3)过表达时,p27 被稳定,细胞周期在多种不同的细胞类型中被阻断,包括晶状体、视网膜、HEK-293 和 HELA 细胞。然而,与这种 p27 稳定相关的泛素连接酶仍然是一个谜。从体外泛素化筛选开始,我们确定 RSP5 是 UbcH7 在 p27 泛素化中的酵母 E3 连接酶伙伴。同源的人类 NEDD4 家族 E3 连接酶的筛选表明,SMURF1 而不是其近同源物 SMURF2,在细胞中稳定 p27。我们发现 SMURF1 在体外用 K29O 而不是 K29R 或 K63O 泛素泛素化 p27,表明强烈倾向于 K29 链形成。与 SMURF1/UbcH7 稳定 p27 一致,我们还发现 SMURF1、UbcH7 和 p27 促进细胞迁移,而 SMURF1 或 UbcH7 的敲低会减少细胞迁移。我们进一步证明了在迁移细胞的前缘处 SMURF1/p27 和 UbcH7/p27 的共定位。总之,这些结果表明 SMURF1 和 UbcH7 一起在 p27 上产生 K29 连接的泛素链,导致 p27 的稳定,并促进其独立于细胞周期的调节细胞迁移的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d82/10897894/973dc04e21f0/gr1.jpg

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