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Journal of Cellular and Molecular Medicine logoLink to Journal of Cellular and Molecular Medicine
. 2023 Sep 19;27(20):3213–3214. doi: 10.1111/jcmm.17829

Correction to Chronic stress inhibits testosterone synthesis in Leydig cells through mitochondrial damage via Atp5a1

PMCID: PMC10568667  PMID: 37724039

1.

In Xiaofan Xiong et al, 1 the spots number of ‘224’ and ‘246’ in Figure 3B mismatch with the spots of ‘234’ and ‘236’ in Figure 3C due to technical error. In addition, the spots name of ‘246’ in Table 1 mismatch with the spots of ‘236’ in Figure 3C. The correct Figure 3 and Table 1 are shown below. The authors confirmed that all results and conclusions of this article remain unchanged.

FIGURE 3.

FIGURE 3

Chronic stress induces differential protein expression in 2‐DE maps of the testis. (A) High‐resolution 2‐DE maps of proteins extracted from the testis in rats in the stressed and control groups on day 21 (n = 6 per group). (B) The replicable protein spots were analysed in PDQuest. A total of 25 differentially expressed spots were screened on the basis of fold differences in grey value relative to the control group. (C) Subsequently, 13 of the 25 spots were selected as the most significant in the statistical analysis from the 2‐DE gels. Each spot differentially present between the stressed and control groups is listed. Gels were stained with Coomassie brilliant blue, and the original maps are provided in Figure S1.

TABLE 1.

Mass spectrometry information of differential expression proteins.

Spots no. Gene name Protein ID PI MW Expression on ratio (S/C)
159 Atp5a1 P15999 8.4 94 0.2:1
191 Eno1 P04764 6.72 86 0.4:1
354 Ywhaz P63102 5.06 45 5.3:1
142 Pkm2 P11980 8.07 97 4.4:1
236 Uqcrc2 P32551 5.51 67 0.04:*
305/355 Acsm2 O70490 5.18 45 3.5:1
438 Myl9 Q64122 5.14 26 2.9:1
335/352/391 Prss2 P00763 4.99 49 2.5:1
234 Got1 P13221 * * 0.04:*
65 Akap4 O35774 6.58 97 0.3:1
*

No signal is detected.

Reference

  • 1. Xiong X, Wu Q, Zhang L, et al. Chronic stress inhibits testosterone synthesis in Leydig cells through mitochondrial damage via Atp5a1. J Cell Mol Med. 2022;26(2):354‐363. doi: 10.1111/jcmm.17085 [DOI] [PMC free article] [PubMed] [Google Scholar]

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