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      <ref-type name="Journal Article">17</ref-type>
      <contributors>
        <authors>
          <author>Zheng Zhang</author>
          <author>Kuo-Hai Fan</author>
          <author>Na Sun</author>
          <author>Pan-pan Sun</author>
          <author>Yao-Gui Sun</author>
          <author>Hong-quan Li</author>
          <author>Wei Yin</author>
        </authors>
      </contributors>
      <titles>
        <title>THE DETECTION AND IDENTIFICATION OF THE CR1-LIKE MEMBRANE BINDING PROTEIN OF PORCINE ERYTHROCYTES</title>
        <secondary-title>Journal of Animal and Plant Sciences</secondary-title>
        <alt-title>JAPS</alt-title>
      </titles>
      <dates><year>2024</year><pub-dates><date>2024/10/22</date></pub-dates></dates>
      <volume>34</volume>
      <number>5</number>
      <pages>1324-1332</pages>
      <isbn>1018-7081</isbn>
      <electronic-resource-num>https://doi.org/10.36899/JAPS.2024.5.0814</electronic-resource-num>
      <abstract>&lt;p&gt;Erythrocyte complement receptor I-like (ECR1-like) is a natural immunoreactive molecule on the surface of porcine erythrocyte membrane. The aim of this study was to establish an effective method for the detection and characterization of porcine erythrocyte CR1-like membrane-bound proteins, and to explore their expression characteristics and biological significance in porcine erythrocyte membranes.The CR1-like protein ligands were observed by laser confocal microscopy using fluorescence immunocytochemistry with two types of PDZ-binding domain monoclonal antibodies, FAP-1 (Fas-associated phosphatase-1) and ZO2 (Tight Junction Protein ZO-2); meanwhile, immunoprecipitation and Western blot techniques were used to detect the membrane proteins of porcine blood cells. The immunofluorescence cytochemical staining showed that the specific fluorescence sites of CR1-like and FAP-1 molecules in the porcine erythrocyte membrane skeleton were identical; the sum of the difference squares of the site distances of 253 typical positive erythrocytes was 0.2224, indicating that the difference between the site distances of CR1-like and FAP-1 in each group was approximately 0. The results showed that the distribution of CR1-like and FAP-1 was consistent with a co-local relationship, and the FAP-1 molecule was clearly observed in the examined gel by immunoprecipitation. The results indicate that CR1-like does not bind directly to the erythrocyte membrane skeleton protein, but is distributed on the surface of the porcine erythrocyte membrane through the riveted structure of the FAP-1 protein molecule.&lt;/p&gt;</abstract>
      <keywords><keyword>CR1-like; FAP-1; Immunoadhesion; Porcine erythrocytes</keyword></keywords>
      <publisher>Pakistan Agricultural Scientists Forum</publisher>
      <urls><related-urls><url>https://thejaps.org.pk/AbstractView.aspx?mid=2023-JAPS-811</url></related-urls></urls>
    </record>
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