The Role of Energy Homeostasis-Associated Gene Expression and Serum Adropin Levels in Patients with Familial

Durkadin Demir Eksi1, Gulay Gulbol Duran2, Muhammet Murat Celik3,4

  • 1Department of Medical Biology, Faculty of Medicine, Alanya Alaaddin Keykubat University, Antalya 07425, Türkiye.

Insights

Familial Mediterranean Fever (FMF) shows elevated ENHO gene expression, suggesting a role in disease pathogenesis. Adropin levels correlate with disease onset, hinting at a protective function in this autoinflammatory condition.

Area of Science:

  • Genetics
  • Immunology
  • Metabolism

Background:

  • Familial Mediterranean Fever (FMF) is a genetic autoinflammatory disorder with unclear pathogenesis.
  • Adropin, encoded by ENHO, influences energy metabolism and inflammation.

Purpose of the Study:

  • To investigate the relationship between ENHO expression, Adropin levels, and FMF.
  • To examine correlations with FMF disease characteristics.

Main Methods:

  • Quantitative real-time PCR (qRT-PCR) for ENHO expression in peripheral blood mononuclear cells.
  • Enzyme-linked immunosorbent assay (ELISA) for serum Adropin levels.
  • Comparison between 30 FMF patients and 35 healthy controls.

Main Results:

  • ENHO expression was significantly higher in FMF patients versus controls (p = 0.0007).
  • No significant difference in serum Adropin levels between groups (p = 0.81).
  • ENHO expression negatively correlated with age; Adropin positively correlated with age, onset, and diagnostic delay.

Conclusions:

  • Increased ENHO expression may contribute to FMF pathophysiology, possibly as a compensatory response.
  • Adropin's correlation with disease onset suggests a potential protective role.
  • Further research is required to validate these findings.

Related Concept Videos

Role of Septins01:02

Role of Septins

Septins are the recently discovered fourth major protein component of the cytoskeleton, along with microfilaments, microtubules, and intermediate filaments. These proteins can associate with other cytoskeletal filaments and carry out varied roles or can be free-floating in the cytoplasm.
Cellular Functions of Septins
Recent studies have revealed the multifaceted roles of septins in various cellular processes such as cytokinesis, ciliogenesis, and neurogenesis. Septins act as scaffolds and...
1.7K
Role of ER in the Secretory Pathway01:17

Role of ER in the Secretory Pathway

Eukaryotic cells have a special pathway that enables communication between various intracellular membrane-bound compartments and also with the extracellular environment. This pathway is termed as the secretory pathway.
Components of the secretory pathway
About a third of proteins synthesized in the cell are sorted via the secretory route. They shuffle between different compartments in membrane-bound vesicles until they reach their final destination. The main intracellular compartments involved...
5.2K
Role of Reduced Coenzymes NADH and FADH₂01:29

Role of Reduced Coenzymes NADH and FADH₂

The energy released from the breakdown of the chemical bonds within nutrients can be stored either through the reduction of electron carriers or in the bonds of adenosine triphosphate (ATP). In living systems, a small class of compounds functions as mobile electron carriers, molecules that bind to and shuttle high-energy electrons between compounds in pathways. The principal electron carriers that will be considered originate from the B vitamin group and are derivatives of nucleotides; they are...
11.1K
The Role of Actin and Myosin in Non-muscle Cells01:10

The Role of Actin and Myosin in Non-muscle Cells

Actin and myosin or actomyosin filaments also play a significant role in cells other than those involved in muscle contraction (which occurs within the sarcomere of muscle cells). The mechanism of non-muscle cell contractile bundles was first observed in Dictyostelium and Acanthamoeba. In non-muscle cells, two bundles are commonly found: stress fibers and actomyosin adherence belts. These contractile bundles are smaller and less organized than the ones found in muscle cells. They  are held...
3.4K
Role of Microtubules in Cell Wall Deposition01:02

Role of Microtubules in Cell Wall Deposition

Microtubules are small hollow tubes in eukaryotic cells. The cell wall microtubules are polymerized dimers of two globular proteins, α-tubulin and β-tubulin, two globular proteins. With a diameter of about 25 nm, microtubules are the widest components of the cytoskeleton. They help the cell resist compression and provide a track along which vesicles move through the cell or pull replicated chromosomes to opposite ends of a dividing cell. Microtubules go through quick cycles of...
2.3K
Role of Proteins in the Human Body01:28

Role of Proteins in the Human Body

Proteins are the building block of life. They are also  the most abundant macromolecules with as many diverse roles in the body. They are part of many structural components that provide unique shapes and structures to animal cells, tissues, and organs. In addition, they also act as biological catalysts and carry out several anabolic and catabolic reactions. Notably, some proteins are chemical messengers and regulate many critical processes, such as metabolism, growth, and development. They...
2.5K