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51. Cytoplasmic MTOCs control spindle orientation for asymmetric cell division in plants.

52. Molecular mechanisms of kinesin-14 motors in spindle assembly and chromosome segregation.

53. Ultrastructure of spermiogenesis and spermatozoa in Marchalina hellenica (Gennadius) (Hemiptera: Sternorrhyncha, Marchalinidae).

54. Error-prone meiotic division and subfertility in mice with oocyte-conditional knockdown of pericentrin.

56. Regulation of myonuclear positioning and muscle function by the skeletal muscle-specific CIP protein

57. Maturing Autophagosomes are Transported Towards the Cell Periphery

58. T Cell Polarization at the Virological Synapse

60. Microglia reactivity entails microtubule remodeling from acentrosomal to centrosomal arrays.

61. Developmental alterations in centrosome integrity contribute to the post-mitotic state of mammalian cardiomyocytes

62. B Cells use Conserved Polarity Cues to regulate their Antigen Processing and Presentation Functions

63. Haspin kinase regulates microtubule-organizing center clustering and stability through Aurora kinase C in mouse oocytes.

64. Evolution of the microtubular cytoskeleton (flagellar apparatus) in parasitic protists.

65. Flagellar apparatus structure of choanoflagellates.

66. Laser capture microdissection to identify septum-associated proteins in Aspergillus nidulans.

67. DIAPH3 deficiency links microtubules to mitotic errors, defective neurogenesis, and brain dysfunction.

68. Apical PAR complex proteins protect against programmed epithelial assaults to create a continuous and functional intestinal lumen

69. A genome-wide CRISPR-Cas9 screen identifies CENPJ as a host regulator of altered microtubule organization during Plasmodium liver infection.

70. Stable kinetochore–microtubule attachments restrict MTOC position and spindle elongation in oocytes

72. New frontiers: discovering cilia-independent functions of cilia proteins.

73. Shaping of interphase chromosomes by the microtubule network.

74. The ultrastructure of spermiogenesis in four species of Coccoidea (Insecta, Homoptera).

75. B cells use conserved polarity cues to regulate their antigen processing and presentation functions.

77. Azoxystrobin exposure impairs meiotic maturation by disturbing spindle formation in mouse oocytes.

78. ROS-independent cytotoxicity of 9,10-phenanthrenequinone inhibits cell cycle progression and spindle assembly during meiotic maturation in mouse oocytes.

79. Chapter Two - A Critical Role for Cell Polarity in Antigen Extraction, Processing, and Presentation by B Lymphocytes.

80. Gathering up meiotic telomeres: a novel function of the microtubule-organizing center.

81. Discrepancy between Species Borders at Morphological and Molecular Levels in the Genus Cochliopodium (Amoebozoa, Himatismenida), with the Description of Cochliopodium plurinucleolum n. sp.

82. Two new species of the genus Stenamoeba (Discosea, Longamoebia): Cytoplasmic MTOC is present in one more amoebae lineage.

83. Mammalian orthoreovirus core protein μ2 reorganizes host microtubule-organizing center components

84. DIAPH3 deficiency links microtubules to mitotic errors, defective neurogenesis, and brain dysfunction

85. Microtubule Organization in Striated Muscle Cells

86. A guiding torch at the poles: the multiple roles of spindle microtubule-organizing centers during cell division

87. Microtubule-Based Mechanisms of Pronuclear Positioning

88. IDENTIFICATION AND ANALYSES OF A NOVEL CHLAMYDOMONAS MUTANT FOR RTTN, A CENTRIOLE PROTEIN ASSOCIATED WITH MICROCEPHALY

89. Coordination of Zika Virus Infection and Viroplasm Organization by Microtubules and Microtubule-Organizing Centers

91. Microtubules in Cell Migration.

92. Functional replacement of fission yeast c-tubulin small complex proteins Alp4 and Alp6 by human GCP2 and GCP3.

93. The Reorientation of Cell Nucleus Promotes the Establishment of Front–Rear Polarity in Migrating Fibroblasts.

94. Sporogenesis in Bryophytes: Patterns and Diversity in Meiosis.

95. In and out of the bull's eye: protein kinase Cs in the immunological synapse

98. The Distribution and Possible Role of ERK8 in Mouse Oocyte Meiotic Maturation and Early Embryo Cleavage.

100. The where, when and how of microtubule nucleation - one ring to rule them all.

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