PubMed Health⌕ Search

PubMed · 9717062

Diabetic dyslipidaemia.

Abstract

In patients with insulin resistant or type II diabetes, changes in the composition of lipoprotein occur in the absence of large changes in the absolute levels of cholesterol and triglycerides. A small increase in serum cholesterol reflects both a reduction in high density lipoprotein (HDL) cholesterol and an increase in very low density lipoprotein (VLDL) cholesterol. There are also increases in the triglyceride content of HDL and low density lipoprotein (LDL). Overproduction of VLDL occurs partly due to the resistance to insulin and also because of lower lipoprotein lipase activity. Furthermore, the lipoprotein phenotype in patients with type II diabetes is similar to that in familial combined dyslipidaemia. This is associated with an increased residence time for triglyceride rich particles and exposure to cholesterol ester transfer protein (CETP) which facilitates the transfer of cholesterol to VLDL and chylomicrons in exchange for triglyceride. CETP can also have an atherogenic effect by reducing the cholesterol in HDL. These factors combine to increase the degree of cholesterol enrichment in remnant particles and thereby exacerbate the atherosclerotic process. The high levels of circulating LDL, which result from the overproduction of VLDL and impaired lipoprotein lipase activity, are glycated in the presence of elevated blood glucose. These glycated particles are primarily removed by a non-receptor mediated pathway that results in the formation of foam cells. These changes in lipoprotein profile markedly increase the risk of coronary events and treatment that can reduce triglycerides and VLDL cholesterol and increase HDL cholesterol has clear benefits.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D W Erkelens. 1998. Diabetic dyslipidaemia.. https://pubmed.ncbi.nlm.nih.gov/9717062/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Electrochemical screening of recombinant protein solubility in Escherichia coli using scanning electrochemical microscopy (SECM).

A microbial array chip with collagen gel spots entrapping living Escherichia coli (E. coli) DH5alpha was applied for the screening of recombinant protein solubilities. The alpha-fragment of beta-galactosidase (betaGal) was fused to the target protein, namely, maltose-binding protein (MBP), to monitor the solubility of MBP. Scanning electrochemical microscopy (SECM) was used to detect the release of p-aminophenol from E. coli cells catalyzed by intracellular betaGal. Comparison of the SECM-based method with the Western blotting-based method indicated that the current response obtained using SECM increased with an increase in the betaGal activity and therefore, with the soluble fraction of MBP in the host cells.

Carrier Proteins↗

Direct interactions between NEDD8 and ubiquitin E2 conjugating enzymes upregulate cullin-based E3 ligase activity.

Although cullin-1 neddylation is crucial for the activation of SCF ubiquitin E3 ligases, the underlying mechanisms for NEDD8-mediated activation of SCF remain unclear. Here we demonstrate by NMR and mutational studies that NEDD8 binds the ubiquitin E2 (UBC4), but not NEDD8 E2 (UBC12). Our data imply that NEDD8 forms an active platform on the SCF complex for selective recruitment of ubiquitin-charged E2s in collaboration with RBX1, and thereby upregulates the E3 activity.

Carrier Proteins↗