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SmgGDS:Ras和Rho家族中小GTP酶异戊二烯化和运输过程中一种新出现的主调控因子。

SmgGDS: An Emerging Master Regulator of Prenylation and Trafficking by Small GTPases in the Ras and Rho Families.

作者信息

Brandt Anthony C, Koehn Olivia J, Williams Carol L

机构信息

Department of Pharmacology and Toxicology, Medical College of Wisconsin, Milwaukee, WI, United States.

出版信息

Front Mol Biosci. 2021 Jun 16;8:685135. doi: 10.3389/fmolb.2021.685135. eCollection 2021.

Abstract

Newly synthesized small GTPases in the Ras and Rho families are prenylated by cytosolic prenyltransferases and then escorted by chaperones to membranes, the nucleus, and other sites where the GTPases participate in a variety of signaling cascades. Understanding how prenylation and trafficking are regulated will help define new therapeutic strategies for cancer and other disorders involving abnormal signaling by these small GTPases. A growing body of evidence indicates that splice variants of SmgGDS (gene name RAP1GDS1) are major regulators of the prenylation, post-prenylation processing, and trafficking of Ras and Rho family members. SmgGDS-607 binds pre-prenylated small GTPases, while SmgGDS-558 binds prenylated small GTPases. This review discusses the history of SmgGDS research and explains our current understanding of how SmgGDS splice variants regulate the prenylation and trafficking of small GTPases. We discuss recent evidence that mutant forms of RabL3 and Rab22a control the release of small GTPases from SmgGDS, and review the inhibitory actions of DiRas1, which competitively blocks the binding of other small GTPases to SmgGDS. We conclude with a discussion of current strategies for therapeutic targeting of SmgGDS in cancer involving splice-switching oligonucleotides and peptide inhibitors.

摘要

Ras和Rho家族中新合成的小GTP酶被胞质异戊二烯基转移酶异戊二烯化,然后由分子伴侣护送至膜、细胞核及其他位点,在这些位点小GTP酶参与各种信号级联反应。了解异戊二烯化和转运如何被调控,将有助于确定针对癌症和其他涉及这些小GTP酶异常信号传导的疾病的新治疗策略。越来越多的证据表明,SmgGDS(基因名RAP1GDS1)的剪接变体是Ras和Rho家族成员异戊二烯化、异戊二烯化后加工及转运的主要调节因子。SmgGDS-607结合异戊二烯化前的小GTP酶,而SmgGDS-558结合异戊二烯化后的小GTP酶。本文综述了SmgGDS的研究历程,并阐述了我们目前对SmgGDS剪接变体如何调节小GTP酶异戊二烯化和转运的理解。我们讨论了最近的证据,即RabL3和Rab22a的突变形式控制小GTP酶从SmgGDS的释放,并综述了DiRas1的抑制作用,其竞争性地阻断其他小GTP酶与SmgGDS的结合。我们最后讨论了目前在癌症中靶向SmgGDS的治疗策略,包括剪接转换寡核苷酸和肽抑制剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/67ef/8242357/d90d849c9661/fmolb-08-685135-g001.jpg

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