Immunolocalization of Fertilin β, IZUMO1, and P34H in Ram Spermatozoa.

IF 1.2 4区 生物学 Q4 CELL BIOLOGY
Biopreservation and Biobanking Pub Date : 2021-12-01 Epub Date: 2021-05-05 DOI:10.1089/bio.2021.0006
Gul Ipek Gundogan, Abit Aktas
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引用次数: 2

Abstract

According to various reports, current methods of sperm freezing destroy the integrity of the sperm plasma membrane and acrosome. This study aimed to determine the changes in the existence and location of three proteins, namely fertilin β, IZUMO1, and P34H, in ram spermatozoa. By using frozen-thawed spermatozoa, ejaculated fresh spermatozoa, and testicular and epididymal spermatozoa (obtained from caput, corpus, and caudal regions), the localizations of the mentioned proteins were performed using signal labeling with indirect immunofluorescence, and the quantification of these proteins was compared using Western blot analyses. Moreover, protein localization and signal labeling in fresh and frozen-thawed spermatozoa subjected to in vitro capacitation and acrosome reaction were compared. Using chlortetracycline (CTC) staining, as expected, it was detected that after incubating for 4 hours under capacitating conditions related to the control sample (0 hour), capacitated and acrosome-reacted sperm were increased (p < 0.001). Frozen-thawed samples had a lower density and expression than the ejaculate samples. Expression was not obtained, except for IZUMO1, from samples that underwent in vitro capacitation/acrosome reactions. Expression of IZUMO1 was seen as an increasing band formation from the equatorial region through the acrosome, after in vitro capacitation. However, after the acrosome reaction, the band formation was only on the equatorial region. Region-specific differences of proteins at the kDa level were obtained using Western blot analysis and possible isoforms specific to ram spermatozoa or proteins with similar epitopes were expressed. Considering the changes in surface proteins in frozen-thawed sperm, it is suggested that fertilin β and P34H can be used as fertility or freezability markers.

受精素β、IZUMO1和P34H在公羊精子中的免疫定位。
根据各种报道,目前的精子冷冻方法破坏了精子质膜和顶体的完整性。本研究旨在确定公羊精子中受精蛋白β、IZUMO1和P34H的存在和位置的变化。通过使用冻融精子、射精的新鲜精子、睾丸和附睾精子(来自头、体和尾区),使用间接免疫荧光信号标记对上述蛋白质进行定位,并使用Western blot分析对这些蛋白质进行定量比较。并比较了体外获能和顶体反应对新鲜和冻融精子蛋白定位和信号标记的影响。通过CTC染色,在与对照样品(0小时)相关的能化条件下孵育4小时后,检测到体外能化/顶体反应中被能化和顶体反应的精子增加(p)。IZUMO1在体外获能后从赤道区通过顶体呈带状增加表达。顶体反应后,条带形成仅在赤道区。利用Western blot分析获得了kDa水平上蛋白的区域特异性差异,并表达了可能是公精子特异性的同种异构体或具有相似表位的蛋白。考虑到冻融后精子表面蛋白的变化,提示受精素β和P34H可作为精子生育或冷冻性的标志物。
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来源期刊
Biopreservation and Biobanking
Biopreservation and Biobanking CELL BIOLOGY-MEDICAL LABORATORY TECHNOLOGY
CiteScore
3.30
自引率
12.50%
发文量
114
审稿时长
6-12 weeks
期刊介绍: Biopreservation and Biobanking is the first journal to provide a unifying forum for the peer-reviewed communication of recent advances in the emerging and evolving field of biospecimen procurement, processing, preservation and banking, distribution, and use. The Journal publishes a range of original articles focusing on current challenges and problems in biopreservation, and advances in methods to address these issues related to the processing of macromolecules, cells, and tissues for research. In a new section dedicated to Emerging Markets and Technologies, the Journal highlights the emergence of new markets and technologies that are either adopting or disrupting the biobank framework as they imprint on society. The solutions presented here are anticipated to help drive innovation within the biobank community. Biopreservation and Biobanking also explores the ethical, legal, and societal considerations surrounding biobanking and biorepository operation. Ideas and practical solutions relevant to improved quality, efficiency, and sustainability of repositories, and relating to their management, operation and oversight are discussed as well.
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