Janiszewski, Lopes, Carmo et al.: "Regulation of NAD(P)H oxidase by associated protein disulfide isomerase in vascular smooth muscle cells." in: The Journal of biological chemistry, Vol. 280, Issue 49, pp. 40813-9, 2005 (PubMed).
Raggo, Rapin, Stirling et al.: "Luman, the cellular counterpart of herpes simplex virus VP16, is processed by regulated intramembrane proteolysis." in: Molecular and cellular biology, Vol. 22, Issue 16, pp. 5639-49, 2002 (PubMed).
Schrag, Bergeron, Li et al.: "The Structure of calnexin, an ER chaperone involved in quality control of protein folding." in: Molecular cell, Vol. 8, Issue 3, pp. 633-44, 2001 (PubMed).
Elagöz, Callejo, Armstrong et al.: "Although calnexin is essential in S. pombe, its highly conserved central domain is dispensable for viability." in: Journal of cell science, Vol. 112 ( Pt 23), pp. 4449-60, 2000 (PubMed).
Otteken, Moss: "Calreticulin interacts with newly synthesized human immunodeficiency virus type 1 envelope glycoprotein, suggesting a chaperone function similar to that of calnexin." in: The Journal of biological chemistry, Vol. 271, Issue 1, pp. 97-103, 1996 (PubMed).
Rajagopalan, Xu, Brenner: "Retention of unassembled components of integral membrane proteins by calnexin." in: Science (New York, N.Y.), Vol. 263, Issue 5145, pp. 387-90, 1994 (PubMed).
Tjoelker, Seyfried, Eddy et al.: "Human, mouse, and rat calnexin cDNA cloning: identification of potential calcium binding motifs and gene localization to human chromosome 5." in: Biochemistry, Vol. 33, Issue 11, pp. 3229-36, 1994 (PubMed).
Galvin, Krishna, Ponchel et al.: "The major histocompatibility complex class I antigen-binding protein p88 is the product of the calnexin gene." in: Proceedings of the National Academy of Sciences of the United States of America, Vol. 89, Issue 18, pp. 8452-6, 1992 (PubMed).