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揭示PIK3R1在癌症中的作用:对调控信号传导及治疗意义的全面综述

Unveiling the role of PIK3R1 in cancer: A comprehensive review of regulatory signaling and therapeutic implications.

作者信息

Gupta Ishita, Gaykalova Daria A

机构信息

Institute for Genome Sciences, University of Maryland School of Medicine, Baltimore, MD, USA; Department of Otorhinolaryngology-Head and Neck Surgery, Marlene & Stewart Greenebaum Comprehensive Cancer Center, University of Maryland Medical Center, Baltimore, MD, USA.

Institute for Genome Sciences, University of Maryland School of Medicine, Baltimore, MD, USA; Department of Otorhinolaryngology-Head and Neck Surgery, Marlene & Stewart Greenebaum Comprehensive Cancer Center, University of Maryland Medical Center, Baltimore, MD, USA; Department of Oncology, Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins University, Baltimore, MD, USA.

出版信息

Semin Cancer Biol. 2024 Nov;106-107:58-86. doi: 10.1016/j.semcancer.2024.08.004. Epub 2024 Aug 26.

Abstract

Phosphoinositide 3-kinase (PI3K) is responsible for phosphorylating phosphoinositides to generate secondary signaling molecules crucial for regulating various cellular processes, including cell growth, survival, and metabolism. The PI3K is a heterodimeric enzyme complex comprising of a catalytic subunit (p110α, p110β, or p110δ) and a regulatory subunit (p85). The binding of the regulatory subunit, p85, with the catalytic subunit, p110, forms an integral component of the PI3K enzyme. PIK3R1 (phosphoinositide-3-kinase regulatory subunit 1) belongs to class IA of the PI3K family. PIK3R1 exhibits structural complexity due to alternative splicing, giving rise to distinct isoforms, prominently p85α and p55α. While the primary p85α isoform comprises multiple domains, including Src homology 3 (SH3) domains, a Breakpoint Cluster Region Homology (BH) domain, and Src homology 2 (SH2) domains (iSH2 and nSH2), the shorter isoform, p55α, lacks certain domains present in p85α. In this review, we will highlight the intricate regulatory mechanisms governing PI3K signaling along with the impact of PIK3R1 alterations on cellular processes. We will further delve into the clinical significance of PIK3R1 mutations in various cancer types and their implications for prognosis and treatment outcomes. Additionally, we will discuss the evolving landscape of targeted therapies aimed at modulating PI3K-associated pathways. Overall, this review will provide insights into the dynamic interplay of PIK3R1 in cancer, fostering advancements in precision medicine and the development of targeted interventions.

摘要

磷脂酰肌醇3激酶(PI3K)负责磷酸化磷脂酰肌醇,以生成对调节各种细胞过程至关重要的二级信号分子,包括细胞生长、存活和代谢。PI3K是一种异二聚体酶复合物,由催化亚基(p110α、p110β或p110δ)和调节亚基(p85)组成。调节亚基p85与催化亚基p110的结合形成了PI3K酶的一个组成部分。PIK3R1(磷脂酰肌醇-3-激酶调节亚基1)属于PI3K家族的IA类。由于可变剪接,PIK3R1表现出结构复杂性,产生了不同的异构体,主要是p85α和p55α。虽然主要的p85α异构体包含多个结构域,包括Src同源3(SH3)结构域、断点簇区域同源(BH)结构域和Src同源2(SH2)结构域(iSH2和nSH2),但较短的异构体p55α缺乏p85α中存在的某些结构域。在这篇综述中,我们将强调PI3K信号传导的复杂调节机制以及PIK3R1改变对细胞过程的影响。我们将进一步深入探讨PIK3R1突变在各种癌症类型中的临床意义及其对预后和治疗结果的影响。此外,我们将讨论旨在调节PI3K相关途径的靶向治疗的发展前景。总体而言,这篇综述将深入了解PIK3R1在癌症中的动态相互作用,推动精准医学的进步和靶向干预措施的开发。

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