Sublytic concentrations of the membrane attack complex of complement induce endothelial interleukin-8 and monocyte

K S Kilgore1, E Schmid, T P Shanley

  • 1Department of Pathology, University of Michigan Medical School, Ann Arbor 48109-0602, USA.

Insights

The membrane attack complex (MAC) activates endothelial cells, increasing inflammatory mediators like IL-8 and MCP-1. This process requires nuclear factor-kappa B (NF-κB) translocation, highlighting a key mechanism in complement-driven inflammation.

Area of Science:

  • Immunology
  • Cell Biology
  • Molecular Biology

Background:

  • The complement cascade and membrane attack complex (MAC) are implicated in various diseases.
  • MAC on endothelial cells can trigger pro-inflammatory responses, but intracellular mechanisms are unclear.
  • Understanding how complement activation leads to inflammation is crucial for therapeutic development.

Purpose of the Study:

  • To investigate the intranuclear mechanisms of MAC-induced inflammation in endothelial cells.
  • To determine the role of nuclear factor-kappa B (NF-κB) in MAC-mediated upregulation of IL-8 and MCP-1.
  • To establish a direct link between MAC assembly and inflammatory mediator production.

Main Methods:

  • Functional MAC assembly on human umbilical vein endothelial cells (HUVECs) using purified complement proteins (C5-9).
  • Electrophoretic mobility shift assay (EMSA) to assess NF-κB DNA binding activity.
  • Western immunoblot and immunocytochemistry to confirm NF-κB translocation.
  • Pharmacological inhibition using pyrrolidine dithiocarbamate and the SN50 peptide to block NF-κB activation.

Main Results:

  • Sublytic MAC formation significantly increased NF-κB DNA binding activity and translocation to the nucleus within 60 minutes.
  • Complete MAC assembly induced greater NF-κB translocation than partial complexes (C5b-8).
  • Inhibition of NF-κB activation prevented MAC-induced increases in IL-8 and MCP-1 mRNA and protein secretion.

Conclusions:

  • The distal complement system, specifically MAC, directly promotes pro-inflammatory endothelial cell activation.
  • Cytosolic to nuclear translocation of NF-κB is a necessary intracellular event for MAC-induced IL-8 and MCP-1 expression.
  • This study elucidates a critical molecular pathway linking complement activation to endothelial cell-driven inflammation.

Related Concept Videos

Inflammation01:38

Inflammation

Overview
Complement System01:27

Complement System

The complement system is a group of approximately 20 plasma proteins that strengthen the body's defenses against infections through opsonization, inflammation, and cell lysis. Opsonization involves coating pathogens with complement proteins, making them more recognizable and facilitating phagocyte engulfment. Certain complement proteins induce inflammation that attracts immune cells to the site of infection. Cell lysis involves the destruction of pathogens through the formation of a membrane...
Acute Inflammation I: Inflammatory Response01:26

Acute Inflammation I: Inflammatory Response

Acute inflammation is a rapid, short-lived physiological response to tissue injury or infection, designed to eliminate harmful agents and initiate repair. This tightly regulated process typically lasts from minutes to several days and is triggered by factors such as microbial invasion, physical trauma, or chemical injury.Recognition and Mediator ReleaseThe inflammatory response begins when resident immune cells—such as mast cells, macrophages, and dendritic cells—detect damage-associated...
Acute Inflammation II: Cellular Phase01:26

Acute Inflammation II: Cellular Phase

The cellular phase of acute inflammation is a tightly orchestrated sequence of events that recruits leukocytes, primarily neutrophils, to sites of tissue injury or infection. Following the initial vascular changes, this phase ensures effective immune cell migration, activation, and function at the affected site to eliminate pathogens and initiate tissue repair.Leukocyte Recruitment CascadeLeukocyte recruitment happens in four steps: margination, adhesion, transmigration, and chemotaxis. Reduced...
Acute Inflammation III: Local and Systemic Effects01:25

Acute Inflammation III: Local and Systemic Effects

Acute inflammation produces a coordinated set of local and systemic changes that limit injury, eliminate pathogens, and initiate repair. These responses arise within minutes of infection, trauma, or chemical insult and are driven by vascular alterations and leukocyte-derived mediators. When the stimulus resolves, the reaction typically abates within days.Local EffectsAt the site of injury, arteriolar vasodilation increases blood flow, resulting in redness and warmth. Simultaneously, increased...
Chronic Inflammation: Introduction01:12

Chronic Inflammation: Introduction

Chronic inflammation is a prolonged, dysregulated immune response that persists for weeks to years when the inciting stimulus is difficult to eradicate or when self‑antigens drive ongoing reactivity. Morphologically, it is defined by mononuclear cell infiltration, progressive tissue destruction, and concurrent attempts at healing via angiogenesis and fibrosis. Compared with acute inflammation, edema is less prominent while cellular infiltration predominates; triggers include persistent...