Related Experiment Video
Updated: Jul 11, 2026

Trace Fear Conditioning in Mice
Published on: March 20, 2014
The extracellular protease matrix metalloproteinase-9 is activated by inhibitory avoidance learning and required for
Vanja Nagy1, Ozlem Bozdagi, George W Huntley
1Fishberg Department of Neuroscience, The Mount Sinai School of Medicine, New York, New York 10029-6574, USA.
Abstract:
Matrix metalloproteinases (MMPs) are a family of extracellularly acting proteolytic enzymes with well-recognized roles in plasticity and remodeling of synaptic circuits during brain development and following brain injury. However, it is now becoming increasingly apparent that MMPs also function in normal, nonpathological synaptic plasticity of the kind that may underlie learning and memory. Here, we extend this idea by investigating the role and regulation of MMP-9 in an inhibitory avoidance (IA) learning and memory task. We demonstrate that following IA training, protein levels and proteolytic activity of MMP-9 become elevated in hippocampus by 6 h, peak at 12-24 h, then decline to baseline values by approximately 72 h. When MMP function is abrogated by intrahippocampal infusion of a potent gelatinase (MMP-2 and MMP-9) inhibitor 3.5 h following IA training, a time prior to the onset of training-induced elevation in levels, IA memory retention is significantly diminished when tested 1-3 d later. Animals impaired at 3 d exhibit robust IA memory when retrained, suggesting that such impairment is not likely attributed to toxic or other deleterious effects that permanently disrupt hippocampal function. In anesthetized adult rats, the effective distance over which synaptic plasticity is impaired by a single intrahippocampal infusion of the MMP inhibitor of the kind that blocks IA memory is approximately 1200 microm. Taken together, these data suggest that IA training induces a slowly emerging, but subsequently protracted period of MMP-mediated proteolysis critical for enabling long-lasting synaptic modification that underlies long-term memory consolidation.
Insights
Matrix metalloproteinases (MMPs) are crucial for learning and memory. This study shows MMP-9 in the hippocampus is vital for consolidating long-term memories after inhibitory avoidance training.
Area of Science:
- Neuroscience
- Molecular Biology
Background:
- Matrix metalloproteinases (MMPs) are enzymes involved in brain plasticity.
- Their role in learning and memory is an emerging area of research.
Purpose of the Study:
- To investigate the role and regulation of MMP-9 in inhibitory avoidance (IA) learning and memory.
- To determine if MMPs are critical for long-term memory consolidation.
Main Methods:
- MMP-9 levels and activity were measured in the hippocampus after IA training in rats.
- An MMP inhibitor was infused into the hippocampus to block MMP function post-training.
- Memory retention was tested at different time points after training and inhibitor infusion.
Main Results:
- IA training increased hippocampal MMP-9 protein levels and activity, peaking at 12-24 hours.
- Blocking MMP function 3.5 hours after IA training significantly impaired memory retention 1-3 days later.
- Impaired animals retained memory when retrained, indicating no permanent hippocampal damage.
Conclusions:
- MMP-9 plays a critical role in the consolidation of long-term memory after IA training.
- IA training initiates a period of MMP-mediated proteolysis essential for synaptic modification and memory.
- MMPs are key molecular players in the neurobiological mechanisms of learning and memory.
Related Concept Videos
Role of Matrix Metalloproteases in Degradation of ECM
A...
Role of Amygdala in Memory
One of the...
Long-term Potentiation
Hebbian LTP
LTP can occur when presynaptic neurons...
Long-term Potentiation
The Extracellular Matrix
In order to maintain tissue organization, many animal cells are surrounded by structural molecules that make up the extracellular matrix (ECM). Together, the molecules in the ECM maintain the structural integrity of tissue as well as the remarkable specific properties of certain tissues.
Composition of the Extracellular Matrix
The extracellular matrix (ECM) is commonly composed of ground substance, a gel-like fluid, fibrous components, and many structurally and functionally diverse...

