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Molecular basis of CD36 deficiency. Evidence that a 478C-->T substitution (proline90-->serine) in CD36 cDNA accounts for CD36 deficiency.
Kashiwagi H, Tomiyama Y, Honda S, Kosugi S, Shiraga M, Nagao N, Sekiguchi S, Kanayama Y, Kurata Y, Matsuzawa Y. Kashiwagi H, et al. J Clin Invest. 1995 Mar;95(3):1040-6. doi: 10.1172/JCI117749. J Clin Invest. 1995. PMID: 7533783 Free PMC article.
We have already demonstrated that a 478C-->T substitution (proline90-->serine) in platelet CD36 cDNA predominates in type II deficiency (Kashiwagi, H., S. Honda, Y. Tomiyama, H. Mizutani, H. Take, Y. Honda, S. Kosugi, Y. Kanayama, Y. ...
We have already demonstrated that a 478C-->T substitution (proline90-->serine) in platelet CD36 cDNA predominates in type II deficienc …
Reduced uptake of oxidized low density lipoproteins in monocyte-derived macrophages from CD36-deficient subjects.
Nozaki S, Kashiwagi H, Yamashita S, Nakagawa T, Kostner B, Tomiyama Y, Nakata A, Ishigami M, Miyagawa J, Kameda-Takemura K, et al. Nozaki S, et al. Among authors: kashiwagi h. J Clin Invest. 1995 Oct;96(4):1859-65. doi: 10.1172/JCI118231. J Clin Invest. 1995. PMID: 7560077 Free PMC article.
To clarify the physiological roles of CD36 as an oxidized low density lipoprotein (OxLDL) receptor, we analyzed the monocyte-derived macrophages from normal and two CD36-deficient subjects, since we identified the molecular abnormalities (Kashiwagi, H., Y. Tomiyama, …
To clarify the physiological roles of CD36 as an oxidized low density lipoprotein (OxLDL) receptor, we analyzed the monocyte-derived macroph …
656 results