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Cholesterol: Significance and Regulation01:29

Cholesterol: Significance and Regulation

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Although not a source of energy, cholesterol plays a significant role as a foundational structure for bile salts, steroid hormones, and vitamin D, as well as being a crucial component of plasma membranes. Approximately 15% of blood cholesterol is derived from our diet, with the remainder synthesized from acetyl CoA by the liver and intestines. Cholesterol is eliminated from the body through its conversion into bile salts, which are eventually discarded in the feces.
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Lipids: Dietary Sources and Requirements01:18

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Lipids are an essential component of a balanced human diet. Triglycerides, which make up the majority of dietary lipids, are found in both saturated fats—commonly present in meat, dairy products, and certain tropical plants like coconut, and hydrogenated oils such as margarine and baking shortenings (trans fats)—and unsaturated fats, which are abundant in seeds, nuts, olive oil, and most vegetable oils. The main sources of cholesterol include egg yolks, various meats and organ...
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Related Experiment Video

Updated: Jun 7, 2025

Enrichment of Mammalian Tissues and Xenopus Oocytes with Cholesterol
10:12

Enrichment of Mammalian Tissues and Xenopus Oocytes with Cholesterol

Published on: March 25, 2020

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Cholesterol sensing goes vegetarian.

John F Foley1

  • 1Science Signaling, AAAS, Washington, DC 20005, USA.

Science Signaling
|November 12, 2024
PubMed
Summary
This summary is machine-generated.

The LYCHOS protein senses cholesterol and uniquely combines a GPCR with a plant-like transporter. This discovery offers new insights into cellular lipid regulation and protein function.

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Related Experiment Videos

Last Updated: Jun 7, 2025

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Area of Science:

  • Biochemistry
  • Molecular Biology
  • Cell Biology

Background:

  • Cholesterol homeostasis is crucial for cellular function and organismal health.
  • G protein-coupled receptors (GPCRs) are key signaling molecules involved in diverse physiological processes.
  • Plant-like transport proteins facilitate the movement of molecules across cellular membranes.

Discussion:

  • The LYCHOS protein represents a novel hybrid molecular architecture.
  • Its dual nature suggests a unique mechanism for integrating signaling and transport functions.
  • Understanding LYCHOS provides a new paradigm for protein classification and function.

Key Insights:

  • LYCHOS functions as a cholesterol sensor.
  • It possesses a hybrid structure merging GPCR and plant-like transporter domains.
  • This unique structure enables a novel mode of action in cellular lipid metabolism.

Outlook:

  • Further investigation into LYCHOS's precise mechanism of action.
  • Exploring the therapeutic potential of targeting LYCHOS in metabolic diseases.
  • Investigating the evolutionary origins of such hybrid proteins.