An extra-erythrocyte role of haemoglobin body in chondrocyte hypoxia adaption.

Nature

Frontier Biotechnology Laboratory, Beijing Institute of Biotechnology, Academy of Military Medical Science; Research Unit of Cell Death Mechanism, 2021RU008, Chinese Academy of Medical Science, Beijing, China.

Published: October 2023

AI Article Synopsis

  • Haemoglobin, typically known for transporting oxygen in red blood cells, is also produced by chondrocytes, where it forms eosin-positive bodies called Hedy, functioning outside of its usual role.
  • The production of haemoglobin in chondrocytes is stimulated by low oxygen levels and regulated by the KLF1 pathway, not the commonly known HIF1/2α pathway.
  • Removing haemoglobin from chondrocytes leads to the loss of Hedy, causing serious consequences like intense cell death in cartilage due to inadequate oxygen supply in low-oxygen conditions.

Article Abstract

Although haemoglobin is a known carrier of oxygen in erythrocytes that functions to transport oxygen over a long range, its physiological roles outside erythrocytes are largely elusive. Here we found that chondrocytes produced massive amounts of haemoglobin to form eosin-positive bodies in their cytoplasm. The haemoglobin body (Hedy) is a membraneless condensate characterized by phase separation. Production of haemoglobin in chondrocytes is controlled by hypoxia and is dependent on KLF1 rather than the HIF1/2α pathway. Deletion of haemoglobin in chondrocytes leads to Hedy loss along with severe hypoxia, enhanced glycolysis and extensive cell death in the centre of cartilaginous tissue, which is attributed to the loss of the Hedy-controlled oxygen supply under hypoxic conditions. These results demonstrate an extra-erythrocyte role of haemoglobin in chondrocytes, and uncover a heretofore unrecognized mechanism in which chondrocytes survive a hypoxic environment through Hedy.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10600011PMC
http://dx.doi.org/10.1038/s41586-023-06611-6DOI Listing

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