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Molecular Cancer Research : MCR|April 9, 2026
StarD5 Regulates Cholesterol Homeostasis to Promote Colorectal Cancer Progression and the Cancer Stem Cell PhenotypeChetna Sharon, Daniel Rodriguez-Agudo, Rio S Boothello, et al.Journal of Lipid Research|May 18, 2005
Human StarD5, a cytosolic StAR-related lipid binding proteinDaniel Rodriguez-Agudo, Shunlin Ren, Phillip B Hylemon, et al.American Journal of Physiology. Endocrinology and Metabolism|October 16, 2008
25-Hydroxycholesterol-3-sulfate regulates macrophage lipid metabolism via the LXR/SREBP-1 signaling pathwayYongjie Ma, Leyuan Xu, Daniel Rodriguez-Agudo, et al.Journal of Lipid Research|March 1, 2006
Identification of a novel sulfonated oxysterol, 5-cholesten-3beta,25-diol 3-sulfonate, in hepatocyte nuclei and mitochondriaShunlin Ren, Phillip Hylemon, Zong-Ping Zhang, et al.Journal of Lipid Research|March 15, 2006
Localization of StarD5 cholesterol binding proteinDaniel Rodriguez-Agudo, Shunlin Ren, Phillip B Hylemon, et al.Oncotarget|April 21, 2015
Inhibition of insulin-like growth factor receptor/AKT/mammalian target of rapamycin axis targets colorectal cancer stem cells by attenuating mevalonate-isoprenoid pathway in vitro and in vivoChetna Sharon, Somesh Baranwal, Nirmita J Patel, et al.Biochimica Et Biophysica Acta|July 20, 2011
Subcellular localization and regulation of StarD4 protein in macrophages and fibroblastsDaniel Rodriguez-Agudo, Maria Calderon-Dominguez, Shunlin Ren, et al.American Journal of Physiology. Endocrinology and Metabolism|January 26, 2012
25-Hydroxycholesterol-3-sulfate attenuates inflammatory response via PPARγ signaling in human THP-1 macrophagesLeyuan Xu, Shanwei Shen, Yongjie Ma, et al.Journal of Lipid Research|April 25, 2019
StarD5: an ER stress protein regulates plasma membrane and intracellular cholesterol homeostasisDaniel Rodriguez-Agudo, Leonel Malacrida, Genta Kakiyama, et al.The Journal of Steroid Biochemistry and Molecular Biology|February 3, 2019
Mitochondrial oxysterol biosynthetic pathway gives evidence for CYP7B1 as controller of regulatory oxysterolsGenta Kakiyama, Dalila Marques, Hajime Takei, et al.Pageof 3