KRAS Prenylation Is Required for Bivalent Binding with Calmodulin in a Nucleotide-Independent Manner

被引:35
作者
Agamasu, Constance [1 ]
Ghirlando, Rodolfo [2 ]
Taylor, Troy [1 ]
Messing, Simon [1 ]
Tran, Timothy H. [1 ]
Bindu, Lakshman [1 ]
Tonelli, Marco [3 ]
Nissley, Dwight, V [1 ]
McCormick, Frank [4 ]
Stephen, Andrew G. [1 ]
机构
[1] Leidos Biomed Res Inc, Frederick Natl Lab Canc Res, Canc Res Technol Program, NCI RAS Initiat, Frederick, MD 21702 USA
[2] NIDDK, Lab Mol Biol, NIH, Bethesda, MD 20892 USA
[3] Univ Wisconsin, Biochem Dept, Natl Magnet Resource Facil Madison, Madison, WI USA
[4] Univ Calif San Francisco, Diller Family Comprehens Canc Ctr, San Francisco, CA 94143 USA
基金
美国国家科学基金会; 美国国家卫生研究院;
关键词
HIGH-AFFINITY INTERACTION; BIOPHYSICAL CHARACTERIZATION; SEDIMENTATION-VELOCITY; H-RAS; K-RAS; HYPERVARIABLE REGION; NMR-SPECTROSCOPY; PROTEINS; DOMAIN; ULTRACENTRIFUGATION;
D O I
10.1016/j.bpj.2019.02.004
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
Deregulation of KRAS4b signaling pathway has been implicated in 30% of all cancers. Membrane localization of KRAS4b is an essential step for the initiation of the downstream signaling cascades that guide various cellular mechanisms. KRAS4b plasma membrane (PM) binding is mediated by the insertion of a prenylated moiety that is attached to the terminal carboxy-methylated cysteine, in addition to electrostatic interactions of its positively charged hypervariable region with anionic lipids. Calmodulin (CaM) has been suggested to selectively bind KRAS4b to act as a negative regulator of the RAS/mitogenactivated protein kinase (MAPK) signaling pathway by displacing KRAS4b from the membrane. However, the mechanism by which CaM can recognize and displace KRAS4b from the membrane is not well understood. In this study, we employed biophysical and structural techniques to characterize this mechanism in detail. We show that KRAS4b prenylation is required for binding to CaM and that the hydrophobic pockets of CaM can accommodate the prenylated region of KRAS4b, which might represent a novel CaM-binding motif. Remarkably, prenylated KRAS4b forms a 2:1 stoichiometric complex with CaM in a nucleotide-independent manner. The interaction between prenylated KRAS4b and CaM is enthalpically driven, and electrostatic interactions also contribute to the formation of the complex. The prenylated KRAS4b terminal KSKTKC-farnesylation and carboxy-methylation is sufficient for binding and defines the minimal CaM-binding motif. This is the same region implicated in membrane and phosphodiesterase6-delta binding. Finally, we provide a structure-based docking model by which CaM binds to prenylated KRAS4b. Our data provide new insights into the KRAS4b-CaM interaction and suggest a possible mechanism whereby CaM can regulate KRAS4b membrane localization.
引用
收藏
页码:1049 / 1063
页数:15
相关论文
共 47 条
[1]   The Hypervariable Region of K-Ras4B Is Responsible for Its Specific Interactions with Calmodulin [J].
Abraham, Sherwin J. ;
Nolet, Ryan P. ;
Calvert, Richard J. ;
Anderson, Lucy M. ;
Gaponenko, Vadim .
BIOCHEMISTRY, 2009, 48 (32) :7575-7583
[2]   The Interplay between Calmodulin and Membrane Interactions with the Pleckstrin Homology Domain of Akt [J].
Agamasu, Constance ;
Ghanam, Ruba H. ;
Xu, Fei ;
Sun, Yong ;
Chen, Yabing ;
Saad, Jamil S. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2017, 292 (01) :251-263
[3]   Structural and Biophysical Characterization of the Interactions between Calmodulin and the Pleckstrin Homology Domain of Akt [J].
Agamasu, Constance ;
Ghanam, Ruba H. ;
Saad, Jamil S. .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2015, 290 (45) :27403-27413
[4]  
[Anonymous], CURR PROTOC PROTEIN
[5]   STRUCTURE OF CALMODULIN REFINED AT 2.2 A RESOLUTION [J].
BABU, YS ;
BUGG, CE ;
COOK, WJ .
JOURNAL OF MOLECULAR BIOLOGY, 1988, 204 (01) :191-204
[6]   Membrane protein assembly into Nanodiscs [J].
Bayburt, Timothy H. ;
Sligar, Stephen G. .
FEBS LETTERS, 2010, 584 (09) :1721-1727
[7]   Multiple Cellular Proteins Modulate the Dynamics of K-ras Association with the Plasma Membrane [J].
Bhagatji, Pinkesh ;
Leventis, Rania ;
Rich, Rebecca ;
Lin, Chen-ju ;
Silvius, John R. .
BIOPHYSICAL JOURNAL, 2010, 99 (10) :3327-3335
[8]   The GDI-like solubilizing factor PDEδ sustains the spatial organization and signalling of Ras family proteins [J].
Chandra, Anchal ;
Grecco, Hernan E. ;
Pisupati, Venkat ;
Perera, David ;
Cassidy, Liam ;
Skoulidis, Ferdinandos ;
Ismail, Shehab A. ;
Hedberg, Christian ;
Hanzal-Bayer, Michael ;
Venkitaraman, Ashok R. ;
Wittinghofer, Alfred ;
Bastiaens, Philippe I. H. .
NATURE CELL BIOLOGY, 2012, 14 (02) :148-158
[9]   High-Affinity Interaction of the K-Ras4B Hypervariable Region with the Ras Active Site [J].
Chavan, Tanmay S. ;
Jang, Hyunbum ;
Khavrutskii, Lyuba ;
Abraham, Sherwin J. ;
Banerjee, Avik ;
Freed, Benjamin C. ;
Johannessen, Liv ;
Tarasov, Sergey G. ;
Gaponenko, Vadim ;
Nussinov, Ruth ;
Tarasova, Nadya I. .
BIOPHYSICAL JOURNAL, 2015, 109 (12) :2602-2613
[10]   Analytical ultracentrifugation: Sedimentation velocity and sedimentation equilibrium [J].
Cole, James L. ;
Lary, Jeffrey W. ;
Moody, Thomas P. ;
Laue, Thomas M. .
BIOPHYSICAL TOOLS FOR BIOLOGISTS: VOL 1 IN VITRO TECHNIQUES, 2008, 84 :143-179