C1QL1/CTRP14 Is Largely Dispensable for Atherosclerosis Formation in Apolipoprotein-E-Deficient Mice

Hua Guan1,2, Tao Shi1, Miaomiao Liu1

  • 1Department of Cardiovascular Surgery, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an 710061, China.

Insights

Complement C1ql-like 1 (C1QL1) does not significantly impact atherosclerosis development in apolipoprotein E knockout mice. This study found C1QL1 is largely dispensable for plaque formation in the aorta.

Area of Science:

  • Cardiovascular Biology
  • Molecular Biology
  • Genomics

Background:

  • Complement C1ql-like 1 (C1QL1), also known as CTRP14, is a protein primarily synthesized in the brain and adipose tissues.
  • The functional roles of C1QL1/CTRP14 outside of these tissues, particularly in cardiovascular disease, are largely unknown.
  • Atherosclerosis is a complex inflammatory disease characterized by plaque buildup in arteries.

Purpose of the Study:

  • To investigate the influence of C1QL1 on atherosclerosis development.
  • To analyze the transcriptomic alterations in the aorta associated with C1QL1 expression.
  • To determine if C1QL1 plays a role in modulating atherosclerotic plaque formation.

Main Methods:

  • Apolipoprotein E (ApoE) knockout mice were fed a Western diet to induce atherosclerosis.
  • Adenovirus-mediated overexpression of C1QL1 (Ad-C1QL1) or a control (Ad-GFP) was administered via tail vein injection.
  • Atherosclerotic plaque area was quantified, and aortic tissue underwent RNA sequencing for transcriptomic analysis.

Main Results:

  • Overexpression of C1QL1 in ApoE knockout mice did not significantly alter the area of atherosclerotic plaques compared to controls.
  • RNA sequencing identified only 111 differentially expressed genes (DEGs) in aortic lesions, enriched in 26 signaling pathways.
  • DEGs included genes related to metabolism and human diseases like type II diabetes, but not directly linked to atherosclerosis formation in this context.

Conclusions:

  • C1QL1 appears to be largely dispensable for the development of atherosclerosis in ApoE-deficient mice.
  • C1QL1 does not significantly improve or inhibit atherosclerotic plaque formation in the aorta under the studied conditions.
  • The transcriptomic changes observed suggest potential indirect associations with metabolic pathways rather than direct involvement in aortic atherosclerosis.