Liver microsomes; an integrated morphological and biochemical study

Insights

Rat liver microsomes, primarily derived from the endoplasmic reticulum, are membrane-bound vesicles containing RNA and protein. These microsomes exhibit enzymatic activity and their RNA is linked to small particles.

Area of Science:

  • Cell Biology
  • Biochemistry
  • Hepatology

Background:

  • Microsomes are crucial subcellular fractions derived from the endoplasmic reticulum in hepatic cells.
  • Understanding microsome composition and origin is vital for cellular function studies.

Purpose of the Study:

  • To systematically examine the morphology and composition of rat liver microsomes using electron microscopy.
  • To investigate the origin and structural components of microsomes, including their association with RNA and enzymatic activity.

Main Methods:

  • Electron microscopy of OsO(4)-fixed, methacrylate-embedded rat liver tissue, homogenates, and microsome fractions.
  • Biochemical analysis of microsome fractions for protein nitrogen, RNA, and phospholipide content.
  • Enzymatic assays for DPNH-cytochrome c reductase activity and identification of hemochromogen.
  • Differential centrifugation after deoxycholate treatment to isolate particulate components.

Main Results:

  • Most microsomes resemble rough endoplasmic reticulum, appearing as membrane-bound vesicles with attached dense particles (100-150 A).
  • Microsomes behave as osmometers, suggesting derivation from the endoplasmic reticulum via pinching-off rather than fragmentation.
  • Microsome fractions contain RNA (RNA/protein N ratio of 1.12), protein, phospholipides, hemochromogen, and DPNH-cytochrome c reductase activity.
  • Treatment with ribonuclease and deoxycholate indicated that microsomal RNA is associated with the small dense particles, while protein and enzymatic activity are linked to the membranes.

Conclusions:

  • Rat liver microsomes are predominantly derived from the rough endoplasmic reticulum through a pinching-off process.
  • Microsomal RNA is primarily associated with small, dense particles, distinct from the membrane-bound structures containing most proteins and enzymatic activities.