1.Upregulated SKP2 Empowers Epidermal Proliferation Through Downregulation of P27 Kip1
Lipeng TANG ; Bowen ZHANG ; Guanzhuo LI ; Xinmin QIU ; Zixin DAI ; Hongying LIU ; Ying ZHU ; Bing FENG ; Zuqing SU ; Wenhui HAN ; Huilin HUANG ; Qiuping LI ; Zihao ZHANG ; Maojie WANG ; Huazhen LIU ; Yuchao CHEN ; Yanmei ZHANG ; Dinghong WU ; Xirun ZHENG ; Taohua LIU ; Jie ZHAO ; Chutian LI ; Guangjuan ZHENG
Annals of Dermatology 2024;36(5):282-291
Background:
Excessive growth of keratinocytes is the critical event in the etiology of psoriasis.However, the underlying molecular mechanism of psoriatic keratinocyte hyperproliferation is still unclear.
Objective:
This study aimed to figure out the potential contributory role of S-phase kinase-associated protein 2 (SKP2) in promoting the hyperproliferation of keratinocytes in psoriasis.
Methods:
We analyzed microarray data (GSE41662) to investigate the gene expression of SKP2in psoriatic lesion skins compared with their adjacent non-lesional skin. Then, we further confirmed the mRNA and protein expression of SKP2 in human psoriatic skin tissues, imiquimod (IMQ)-induced psoriatic mice back skins and tumor necrosis factor α (TNF-α), interleukin (IL)-17A and IL-6-stimulated keratinocytes by using real-time quantitative polymerase chain reaction and western blot (WB). Furthermore, we explored the potential pathogenic role and its underlying cellular mechanism of SKP2 in promoting keratinocytes hyperproliferation through 3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide assay, cell cycle detection, 5-ethynyl-2′-deoxyuridine staining and WB. Finally, we determined whether inhibition of SKP2 can effectively alleviate the keratinocytes hyperproliferation in vivo.
Results:
We identified that SKP2 is aberrantly upregulated in the psoriatic lesion skin and cytokines-stimulated keratinocytes. Moreover, upregulated SKP2 augments cytokines-induced keratinocytes hyperproliferation. Mechanistically, enhanced SKP2 increased the S phase ratio through inhibiting Cyclin-Dependent Kinase Inhibitor p27 (P27 Kip1) expression. Correspondingly, suppression of SKP2 with SMIP004 can significantly ease the epidermis hyperplasia in vivo.
Conclusion
Our results suggest that elevated SKP2 can empower keratinocytes proliferation and psoriasis-like epidermis hyperplasia via downregulation of P27 Kip1. Therefore, targeting SKP2-P27 Kip1 axis might be a promising therapeutic strategy for the treatment of psoriasis in future.
2.Structure‒tissue exposure/selectivity relationship (STR) correlates with clinical efficacy/safety.
Wei GAO ; Hongxiang HU ; Lipeng DAI ; Miao HE ; Hebao YUAN ; Huixia ZHANG ; Jinhui LIAO ; Bo WEN ; Yan LI ; Maria PALMISANO ; Mohamed Dit Mady TRAORE ; Simon ZHOU ; Duxin SUN
Acta Pharmaceutica Sinica B 2022;12(5):2462-2478
Drug optimization, which improves drug potency/specificity by structure‒activity relationship (SAR) and drug-like properties, is rigorously performed to select drug candidates for clinical trials. However, the current drug optimization may overlook the structure‒tissue exposure/selectivity-relationship (STR) in disease-targeted tissues vs. normal tissues, which may mislead the drug candidate selection and impact the balance of clinical efficacy/toxicity. In this study, we investigated the STR in correlation with observed clinical efficacy/toxicity using seven selective estrogen receptor modulators (SERMs) that have similar structures, same molecular target, and similar/different pharmacokinetics. The results showed that drug's plasma exposure was not correlated with drug's exposures in the target tissues (tumor, fat pad, bone, uterus), while tissue exposure/selectivity of SERMs was correlated with clinical efficacy/safety. Slight structure modifications of four SERMs did not change drug's plasma exposure but altered drug's tissue exposure/selectivity. Seven SERMs with high protein binding showed higher accumulation in tumors compared to surrounding normal tissues, which is likely due to tumor EPR effect of protein-bound drugs. These suggest that STR alters drug's tissue exposure/selectivity in disease-targeted tissues vs. normal tissues impacting clinical efficacy/toxicity. Drug optimization needs to balance the SAR and STR in selecting drug candidate for clinical trial to improve success of clinical drug development.

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