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Syndecan 1 is a critical mediator of macropinocytosis in pancreatic cancer.

Authors :
Yao W
Rose JL
Wang W
Seth S
Jiang H
Taguchi A
Liu J
Yan L
Kapoor A
Hou P
Chen Z
Wang Q
Nezi L
Xu Z
Yao J
Hu B
Pettazzoni PF
Ho IL
Feng N
Ramamoorthy V
Jiang S
Deng P
Ma GJ
Den P
Tan Z
Zhang SX
Wang H
Wang YA
Deem AK
Fleming JB
Carugo A
Heffernan TP
Maitra A
Viale A
Ying H
Hanash S
DePinho RA
Draetta GF
Source :
Nature [Nature] 2019 Apr; Vol. 568 (7752), pp. 410-414. Date of Electronic Publication: 2019 Mar 27.
Publication Year :
2019

Abstract

Pancreatic ductal adenocarcinoma (PDAC) remains recalcitrant to all forms of cancer treatment and carries a five-year survival rate of only 8% <superscript>1</superscript> . Inhibition of oncogenic KRAS (hereafter KRAS*), the earliest lesion in disease development that is present in more than 90% of PDACs, and its signalling surrogates has yielded encouraging preclinical results with experimental agents <superscript>2-4</superscript> . However, KRAS*-independent disease recurrence following genetic extinction of Kras* in mouse models anticipates the need for co-extinction strategies <superscript>5,6</superscript> . Multiple oncogenic processes are initiated at the cell surface, where KRAS* physically and functionally interacts to direct signalling that is essential for malignant transformation and tumour maintenance. Insights into the complexity of the functional cell-surface-protein repertoire (surfaceome) have been technologically limited until recently and-in the case of PDAC-the genetic control of the function and composition of the PDAC surfaceome in the context of KRAS* signalling remains largely unknown. Here we develop an unbiased, functional target-discovery platform to query KRAS*-dependent changes of the PDAC surfaceome, which reveals syndecan 1 (SDC1, also known as CD138) as a protein that is upregulated at the cell surface by KRAS*. Localization of SDC1 at the cell surface-where it regulates macropinocytosis, an essential metabolic pathway that fuels PDAC cell growth-is essential for disease maintenance and progression. Thus, our study forges a mechanistic link between KRAS* signalling and a targetable molecule driving nutrient salvage pathways in PDAC and validates oncogene-driven surfaceome annotation as a strategy to identify cancer-specific vulnerabilities.

Details

Language :
English
ISSN :
1476-4687
Volume :
568
Issue :
7752
Database :
MEDLINE
Journal :
Nature
Publication Type :
Academic Journal
Accession number :
30918400
Full Text :
https://doi.org/10.1038/s41586-019-1062-1