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PNAS Plus: Structural basis of recognition of farnesylated and methylated KRAS4b by PDEδ

机译:PNAS Plus:通过PDEδ识别法呢基化和甲基化KRAS4b的结构基础

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摘要

Farnesylation and carboxymethylation of KRAS4b (Kirsten rat sarcoma isoform 4b) are essential for its interaction with the plasma membrane where KRAS-mediated signaling events occur. Phosphodiesterase-δ (PDEδ) binds to KRAS4b and plays an important role in targeting it to cellular membranes. We solved structures of human farnesylated–methylated KRAS4b in complex with PDEδ in two different crystal forms. In these structures, the interaction is driven by the C-terminal amino acids together with the farnesylated and methylated C185 of KRAS4b that binds tightly in the central hydrophobic pocket present in PDEδ. In crystal form II, we see the full-length structure of farnesylated–methylated KRAS4b, including the hypervariable region. Crystal form I reveals structural details of farnesylated–methylated KRAS4b binding to PDEδ, and crystal form II suggests the potential binding mode of geranylgeranylated–methylated KRAS4b to PDEδ. We identified a 5-aa-long sequence motif (Lys-Ser-Lys-Thr-Lys) in KRAS4b that may enable PDEδ to bind both forms of prenylated KRAS4b. Structure and sequence analysis of various prenylated proteins that have been previously tested for binding to PDEδ provides a rationale for why some prenylated proteins, such as KRAS4a, RalA, RalB, and Rac1, do not bind to PDEδ. Comparison of all four available structures of PDEδ complexed with various prenylated proteins/peptides shows the presence of additional interactions due to a larger protein–protein interaction interface in KRAS4b–PDEδ complex. This interface might be exploited for designing an inhibitor with minimal off-target effects.
机译:KRAS4b(Kirsten大鼠肉瘤同种型4b)的法尼基化和羧甲基化对于其与发生KRAS介导的信号转导的质膜相互作用至关重要。磷酸二酯酶-δ(PDEδ)与KRAS4b结合并在将其靶向细胞膜方面起重要作用。我们用两种不同的晶体形式与PDEδ配合解决了人类法呢基化甲基化KRAS4b的结构。在这些结构中,相互作用是由C末端氨基酸以及KRAS4b的法尼基化和甲基化的C185(与PDEδ中存在的中央疏水口袋紧密结合)驱动的。在晶型II中,我们看到了法尼基化甲基化KRAS4b的全长结构,包括高变区。晶型I揭示了法尼基化甲基化KRAS4b与PDEδ结合的结构细节,晶型II暗示了香叶基香叶基化甲基化KRAS4b与PDEδ的潜在结合方式。我们在KRAS4b中鉴定了一个5个氨基酸长的序列基序(Lys-Ser-Lys-Thr-Lys),该序列可能使PDEδ结合两种形式的异戊烯化的KRAS4b。先前已测试过与PDEδ结合的各种异戊基化蛋白质的结构和序列分析,为某些异戊基化蛋白质(例如KRAS4a,RalA,RalB和Rac1)为何不与PDEδ结合提供了理论依据。比较所有四种可用的PDEδ与各种异戊二烯基化的蛋白质/肽复合的结构,发现由于KRAS4b-PDEδ复合物中较大的蛋白质-蛋白质相互作用界面,存在其他相互作用。该界面可被用于设计具有最小脱靶效应的抑制剂。

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