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The yin and yang of cell signaling
admin
2019-02-18
发布年2019
语种英语
国家美国
领域地球科学
正文(英文)

Lysophospholipids (LysoPLs) are potent cellular signaling biomolecules that also maintain the structure, shape and fluidity of cell membranes.

Imbalance in LysoPL levels has been associated with cell proliferation, inflammatory processes and neurological diseases.

In mammals, cellular levels of LysoPLs are finely regulated primarily by the enzymes lysophospholipase (LYPLA) 1 and 2. Although the enzymes are similar in their and structures, they display moderate substrate specificity.

To better understand their role in LysoPL metabolism, Lawrence Marnett, PhD, and colleagues used CRISPR-Cas9 technology to generate stable knock-outs of LYPLA1 and/or LYPLA2 in mouse neuroblastoma cell lines.

Their work, published this month in the Journal of Lipid Research, showed that LYPLA1 and LYPLA2 compensated for the loss of each other and cooperatively maintained LysoPL levels in the cells.

However, deletion of both enzymes led to dramatically increased LysoPL levels and increased activation of the mitogen-activated (MAPK) signaling pathway, which has been implicated in development of human neurodegenerative diseases and cancer.

Explore further: Molecular mechanisms behind AICAr drug; impact on ALL

More information: James A. Wepy et al. Lysophospholipases cooperate to mediate lipid homeostasis and lysophospholipid signaling, Journal of Lipid Research (2018). DOI: 10.1194/jlr.M087890

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来源平台Science X network
文献类型新闻
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/109437
专题地球科学
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