Javascript must be enabled to continue!
Data from An LKB1–SIK Axis Suppresses Lung Tumor Growth and Controls Differentiation
View through CrossRef
<div>Abstract<p>The kinase LKB1 is a critical tumor suppressor in sporadic and familial human cancers, yet the mechanisms by which it suppresses tumor growth remain poorly understood. To investigate the tumor-suppressive capacity of four canonical families of LKB1 substrates <i>in vivo</i>, we used CRISPR/Cas9-mediated combinatorial genome editing in a mouse model of oncogenic KRAS-driven lung adenocarcinoma. We demonstrate that members of the SIK family are critical for constraining tumor development. Histologic and gene-expression similarities between LKB1- and SIK-deficient tumors suggest that SIKs and LKB1 operate within the same axis. Furthermore, a gene-expression signature reflecting SIK deficiency is enriched in <i>LKB1</i>-mutant human lung adenocarcinomas and is regulated by LKB1 in human cancer cell lines. Together, these findings reveal a key LKB1–SIK tumor-suppressive axis and underscore the need to redirect efforts to elucidate the mechanisms through which LKB1 mediates tumor suppression.</p>Significance:<p>Uncovering the effectors of frequently altered tumor suppressor genes is critical for understanding the fundamental driving forces of cancer growth. Our identification of the SIK family of kinases as effectors of LKB1-mediated tumor suppression will refocus future mechanistic studies and may lead to new avenues for genotype-specific therapeutic interventions.</p><p><i>This article is highlighted in the In This Issue feature, p. 1469</i></p></div>
American Association for Cancer Research (AACR)
Title: Data from An LKB1–SIK Axis Suppresses Lung Tumor Growth and Controls Differentiation
Description:
<div>Abstract<p>The kinase LKB1 is a critical tumor suppressor in sporadic and familial human cancers, yet the mechanisms by which it suppresses tumor growth remain poorly understood.
To investigate the tumor-suppressive capacity of four canonical families of LKB1 substrates <i>in vivo</i>, we used CRISPR/Cas9-mediated combinatorial genome editing in a mouse model of oncogenic KRAS-driven lung adenocarcinoma.
We demonstrate that members of the SIK family are critical for constraining tumor development.
Histologic and gene-expression similarities between LKB1- and SIK-deficient tumors suggest that SIKs and LKB1 operate within the same axis.
Furthermore, a gene-expression signature reflecting SIK deficiency is enriched in <i>LKB1</i>-mutant human lung adenocarcinomas and is regulated by LKB1 in human cancer cell lines.
Together, these findings reveal a key LKB1–SIK tumor-suppressive axis and underscore the need to redirect efforts to elucidate the mechanisms through which LKB1 mediates tumor suppression.
</p>Significance:<p>Uncovering the effectors of frequently altered tumor suppressor genes is critical for understanding the fundamental driving forces of cancer growth.
Our identification of the SIK family of kinases as effectors of LKB1-mediated tumor suppression will refocus future mechanistic studies and may lead to new avenues for genotype-specific therapeutic interventions.
</p><p><i>This article is highlighted in the In This Issue feature, p.
1469</i></p></div>.
Related Results
Crosstalk between PIM and LKB1 kinases regulates AMPK phosphorylation and tumorigenic growth
Crosstalk between PIM and LKB1 kinases regulates AMPK phosphorylation and tumorigenic growth
Abstract
Background
The oncogenic PIM kinases and the tumor-suppressive LKB1 kinase have both been implicated in the regulation of cell growth and metabolism, albeit in op...
Data from An LKB1–SIK Axis Suppresses Lung Tumor Growth and Controls Differentiation
Data from An LKB1–SIK Axis Suppresses Lung Tumor Growth and Controls Differentiation
<div>Abstract<p>The kinase LKB1 is a critical tumor suppressor in sporadic and familial human cancers, yet the mechanisms by which it suppresses tumor growth remain poo...
Complex Collision Tumors: A Systematic Review
Complex Collision Tumors: A Systematic Review
Abstract
Introduction: A collision tumor consists of two distinct neoplastic components located within the same organ, separated by stromal tissue, without histological intermixing...
LKB1: Can We Target an Hidden Target? Focus on NSCLC
LKB1: Can We Target an Hidden Target? Focus on NSCLC
LKB1 (liver kinase B1) is a master regulator of several processes such as metabolism, proliferation, cell polarity and immunity. About one third of non-small cell lung cancers (NSC...
LKB1 expression and the prognosis of lung cancer
LKB1 expression and the prognosis of lung cancer
Abstract
Background:
In the past few decades, many lines of evidence implicate the importance of liver kinase B1 (LKB1) as a tumor suppressor gen...
Evaluasi Sistem Informasi Kesehatan di Provinsi Jawa Tengah Dalam Rangka Penguatan Sistem Informasi Kesehatan Nasional
Evaluasi Sistem Informasi Kesehatan di Provinsi Jawa Tengah Dalam Rangka Penguatan Sistem Informasi Kesehatan Nasional
Evaluasi SIK bertujuan untuk memastikan SIK berjalan secara efisien, mampu mengumpulkan informasi yang relevan dan berkualitas sebagai dasar pengambilan keputusan oleh pemangku keb...
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Microwave Ablation with or Without Chemotherapy in Management of Non-Small Cell Lung Cancer: A Systematic Review
Abstract
Introduction
Microwave ablation (MWA) has emerged as a minimally invasive treatment for patients with inoperable non-small cell lung cancer (NSCLC). However, whether it i...
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
Macroeconomic and Social Precursors of Suicide Rates in the Philippines: A Quantitative Analysis (Preprint)
BACKGROUND
Suicide is a complex, serious and multifaceted public health issue that poses significant challenges to societies worldwide. In fact, it represen...

